Saturday, 9 July 2022

My Friend, Abe San: PM Modi pens emotional tribute to late Shinzo Abe

 

My Friend, Abe San: PM Modi pens emotional tribute to late Shinzo Abe

Shinzo Abe - an outstanding leader of Japan, a towering global statesman, and a great champion of India-Japan friendship - is not among us anymore. Japan and the world have lost a great visionary. And, I have lost a dear friend.

I first met him in 2007, during my visit to Japan as the Chief Minister of Gujarat. Right from that first meeting, our friendship went beyond the trappings of office and the shackles of official protocol.

Our visit to Toji temple in Kyoto, our train journey on the Shinkansen, our visit to the Sabarmati Ashram in Ahmedabad, the Ganga Aarati in Kashi, the elaborate tea ceremony in Tokyo, the list of our memorable interactions is indeed long.

And, I will always cherish the singular honour of having been invited to his family home in Yamanashi prefecture, nestled among the foothills of Mt. Fuji.

Even when he was not the Prime Minister of Japan between 2007 and 2012, and more recently after 2020, our personal bond remained as strong as ever.

Every meeting with Abe San was intellectually stimulating. He was always full of new ideas and invaluable insights on governance, economy, culture, foreign policy, and various other subjects.

His counsel inspired me in my economic choices for Gujarat. And, his support was instrumental in building Gujarat’s vibrant partnership with Japan.

Later on, it was my privilege to work with him to bring about an unprecedented transformation of the strategic partnership between India and Japan. From a largely narrow, bilateral economic relationship, Abe San helped turn it into a broad, comprehensive one, which not only covered every field of national endeavour, but became pivotal for our two countries’ and the region’s security. For him, this was one of the most consequential relationships for the people of our two countries and the world. He was resolute in pursuing the civil nuclear agreement with India – a most difficult one for his country – and decisive in offering the most generous terms for the High Speed Rail in India. As in most important milestones in independent India’s journey, he ensured that Japan is there side by side as New India accelerates its growth.

His contribution to India-Japan relations was richly recognised by the conferment upon him of the prestigious Padma Vibhushan in 2021.

Abe San had a deep insight into the complex and multiple transitions taking place in the world, the vision to be ahead of his time to see its impact on politics, society, economy and international relations, the wisdom to know the choices that were to be made, the capacity to make clear and bold decisions even in the face of conventions and the rare ability to carry his people and the world with him. His far-reaching policies - Abenomics - reinvigorated the Japanese economy and re-ignited the spirit of innovation and entrepreneurship of his people.

Among his greatest gifts to us and his most enduring legacy, and one for which the world will always be indebted, is his foresight in recognising the changing tides and gathering storm of our time and his leadership in responding to it. Long before others, he, in his seminal speech to the Indian Parliament in 2007, laid the ground for the emergence of the Indo Pacific region as a contemporary political, strategic and economic reality - a region that will also shape the world in this century.

And, he led from the front in building a framework and architecture for its stable and secure, peaceful and prosperous future, based on values that he deeply cherished – respect for sovereignty and territorial integrity, adherence to international law and rules, peaceful conduct of international relations in a spirit of equality and shared prosperity through deeper economic engagement.

The Quad, the ASEAN-led forums, the Indo Pacific Oceans Initiative, the India-Japan Development Cooperation in the Indo-Pacific, including Africa and the Coalition for Disaster Resilient Infrastructure all benefited from his contributions. Quietly and without fanfare, and overcoming hesitation at home and scepticism abroad, he transformed Japan’s strategic engagement, including in defence, connectivity, infrastructure and sustainability, across the Indo Pacific region. For that, the region is more optimistic about its destiny and the world more confident about its future.

During my Japan visit in May this year, I had the opportunity to meet Abe San, who had just taken over as the Chair of the Japan-India Association. He was his usual self - energetic, captivating, charismatic and very witty. He had innovative ideas on how to further strengthen the India-Japan friendship. When I said goodbye to him that day, little did I imagine that it would be our final meeting.

I will always be indebted for his warmth and wisdom, grace and generosity, friendship and guidance, and I will miss him dearly.

We in India mourn his passing as one of our own, just as he embraced us with an open heart. He died doing what he loved the most – inspiring his people. His life may have been cut short tragically, but his legacy will endure forever.

I extend heart-felt condolences on behalf of the people of India and on my own behalf to the people of Japan, especially to Mrs. Akie Abe and his family. Om Shanti.






Monday, 19 July 2021

Europe seeing surges at many places but 15 least vaccinated countries don‘t seem to face any problem


Thread by @holmenkollin 


151,639 views

Corona Realism 🟢 Profile picture

Something really odd is going on:

In Europe we are seeing surges at many places where most of the population has already been vaccinated.

At the same time, the 15 least vaccinated countries don‘t seem to face any problem.

At some point, denying this problem will get painful. Image

Also take a look at what went on in the 15 most vaccinated countries worldwide

(SPOILER: doesn‘t look to good)

⬇️

I did not include tiny Gibraltar, which claims to have double-jabbed all (!) of its citizens.

So why do cases suddenly rise through the roof? (yes it‘s residents, not tourists)

Cyprus: majority of people vaccinated.

Highest case count in the world.

Malta: highest vaccination rate in the western world.

Also currently one of the steepest inclines in cases you may ever have seen. Image

What‘s special about small kingdom of Bhutan is that they jabbed 64% of their population within one week, starting 27/3.

Just a few days after the start of the rollout, cases went up. ImageImage

Seems like we have a pretty solid correlation here.

(h/t @DaFeidImage

Emirates: highest vaccination rate in the whole world.

They just experienced their second highest peak since pandemic began. Image

At this point, some of the early-bird lockdowners take notice:

Why is my fully masked and vacced state not keeping cases down?

You see how dangerous delta is??

+1

„But what about 100% vaccination rate?“

Here you go: 1600 double-jabbed british soldiers on HMS Queen Elizabeth. They even had hygiene rules, distancing etc

Wait 2 months…

1 in 16 (= higher case rate than any country!) turns out to be infected.

m.dw.com/de/corona-ausb…

„But the vaccine also makes people less transmissible?“

That’s what some studies claimed, yes.

But at what point in time did they measure this effect?

The jabs initially trigger your immune system.

But what if the effect fades and you walk around bar any mucosal protection?

2 points being made:

„High-vacced countries opened up“

That’s a funny one. It‘s rather the opposite. In the low vacced countries of europe you see hardly any restrictions, they just care less and people don‘t comply anyway.

Surging countries still have masks, clubs closed etc.

„arbitrary selection“

No. Comparing extreme groups is scientifically reasonable. See thread: 15 MOST vacced countries.
15 least vacced countries in world would mean mostly africa (noone trusts their data) so I stick to europe here.

And for the picture i used 3 counter-examples

There are a lot more examples for high-vacced, surging countries in europe now.

Actually almost every high-vacced state is surging (despite restrictions!), every low-vacced state is NOT!

Now also germany starts worrying about rising numbers.

Look at the map! Image

„But cases are also flat in hungary, poland or sweden“.

If your point is that it doesn‘t happen in EVERY country (yet), that‘s fine.

Anyway I am not claming causality here.

But those 3 are also supposed to have the highest share of NATURAL immunity in population.

Last point but that‘s just for beginners:

Testing is NOT an issue here. If cases go up, you will see it, regardless the level of testing

Friday, 14 May 2021

Supplying oxygen to a nation that is at war simultaneously in 30 states

The current oxygen crisis is further explained by the manufacturer 

India has increased its oxygen manufacturing capacity by 30% within a month. This is unfathomable. I don’t think it has happened globally. It’s a world record in itself.

qz.com /india/2006925/indias-largest-oxygen-maker-inox-explains-why-theres-a-shortage/
“Nobody is understanding the challenges of supplying oxygen to a nation that is at war” 
Niharika Sharma7-9 minutes


The second wave of Covid-19 in India quickly went from being a healthcare crisis to a humanitarian crisis. Thousands of patients gasped for breath in the absence of enough high-flow oxygen, which is an effective treatment for the disease.

For more than a month now, the oxygen crisis in the country has been a tug-of-war between the Narendra Modi government, state governments, hospitals, and oxygen manufacturers. In several areas, individuals have been left to run from pillar to post in search of oxygen cylinders for their family and friends.

All stakeholders have their own reasons for why Indian doctors still don’t have enough supply of the essential gas to treat their patients.

Quartz spoke to Siddharth Jain, director of INOX Air Products, the largest manufacturer of liquid oxygen in India, to understand the perspective of the producers. Jain believes that it is wrong to put the onus on oxygen makers as they are doing their best. “We are trying, nobody is understanding the logistical challenges in supplying oxygen to a nation that is at war simultaneously in 30 states. It’s a Herculean task,” he said.

Below are edited excerpts from the conversation:

By when will India have enough oxygen for its Covid-19 patients?

Oxygen consumption is directly proportional to the number of cases. The pre-pandemic requirement for medical oxygen in India was about 700 tons a day. In wave one, the demand went up about 3,000 tons a day and in wave two, it’s now 8,000 tons a day.

At present, we have enough oxygen to maintain the current number of cases. All I can hope is that enough states announce lockdowns and the number of cases starts coming down. But if we start witnessing cases around 600,000-800,000 a day, we will be in a tough spot.

Do you think India could not have anticipated this spike in Covid-19 cases and no preparation would have been enough?

Absolutely… Why cases spike in this manner is beyond me. I don’t think any country would have been prepared for this kind of acceleration (in Covid-19 cases), which is currently the world’s highest.

All I can say is from an infrastructure perspective, we are scaling up. India has increased its oxygen manufacturing capacity by 30% within a month. This is unfathomable. I don’t think it has happened globally. It’s a world record in itself. The effort has been so enormous, however, increasing the capacity of manufacturing is not the same as getting it to the patient.



Siddharth Jain, director at INOX Air Products.

What logistical challenges are you facing?

When you manufacture oxygen in a liquid form, it looks like water. But it’s at minus 183 degrees centigrade and it’s stored in specialised containers. There are only 1,170 cryogenic transportation tankers available in India to move liquid oxygen. Out of those INOX has 320.

India has only 70 oxygen plants and these 1,170 containers were moving the entire production of oxygen. Earlier, out of 100 tankers that we would manufacture only 15 were going to medical, and 85 were going to industry. So all our plants are located in areas very close to industry, and not in the most densely populated areas where there are hospitals.

But now, there is a requirement for oxygen everywhere. So we needed to transport these tankers to the entire country.

Tell us more about the recent production ramp-up at your plants.

We have set up a new plant and also made investments in technological innovation inside our existing plants to increase their capacities. We have also reduced the capacity of some other gases that we make, such as nitrogen and argon, and are using those capacities to increase oxygen production.

Which states are you now supplying oxygen to? What are the key challenges in the process?

The three largest consumers of oxygen right now are Maharashtra, Gujarat, and Uttar Pradesh. We are not facing many challenges in Maharashtra and Gujarat because not only are they the largest consumers but they’re the largest manufacturers as well.

However, we are facing problems in the northern states of Uttar Pradesh, Delhi, and Himachal Pradesh. Since there’s no industrial activity in north India, the region manufactures only 10% of India’s oxygen. So the production is very small but the demand right now is huge given the number of Covid-19 cases.

There are similar issues with the eastern and southern parts of the country, too, because most of the oxygen production capacity is in central India.

You have earlier said that the Delhi government is the only one complaining about supply issues. What happened with them?

There are only 70 plants that manufacture oxygen in India. Now, what is the job of the union government? It is to tell manufacturers to produce a certain amount of oxygen and then they formed a committee to approve the oxygen demand by the states. There was a chart that was made for each state with a name and an allocation volume.

However, it is not the union government’s job to pick up the oxygen and deliver it to end locations. It is not their job to go to Odisha, pick up the oxygen and come to Mumbai and pour it in a tank. What do the states exist for? What is their job? It is the job of the state to go and organise the logistics and go and get the allocated product.

Are you suggesting that Delhi wasn’t organising the logistics and was just complaining?

Yes, absolutely. It was only later, after a lot of pressure was put on them, they started moving it.

What could have been done to avoid the current situation?

Maybe the question is, why did we need that oxygen? Could we have done something to not require that oxygen at all?

I think it’s a bit unfair to the oxygen manufacturers…Are you aware in Delhi, they’re refusing patients into hospitals? Why are hospitals not taking patients? Does the hospital have no duty to organise the oxygen themselves? Are they allowed to shut gates for their patients?

But what can a hospital do if it has a shortage of essential medical supplies?

So where does the oxygen guy get it instantly? How do you create a supply chain with 10 times more than the normal demand in a two-week period?

Let us assume petrol is available in only 70 places in India. But cars are all over India. Now, tell me if the number of cars has increased 10 times overnight and they all want petrol, how would you get the petrol there?

Tell me, does a hospital today have the ability to bring more doctors overnight if the patients double? Take any hospital, and overnight, a 200-bed hospital cannot become an 800-bed hospital. But if the need arises, will it say no, we don’t have the doctors. We don’t have nurses and doctors. No. You will have to do it. It’s your duty.

We are trying, nobody is understanding the logistical challenges in supplying oxygen to a nation that is at war simultaneously in 30 states (India has 28 states and eight union territories). It’s a herculean task.

You are suggesting that it is wrong to blame the oxygen manufacturers?

Yes.

Some experts have said that India should implement a nationwide lockdown. Do you think that will help the oxygen manufacturers?

I certainly think it will help…I think most states are already under lockdown… At this point what we really need is to break the transmission chain. Come what may.

Thursday, 13 May 2021

Blaming Modi vs Facts. Excellent Gulf News article

Narendra Modi gets blamed for everything that happens in India. If he locks down for Covid, he will be attacked for doing it, if he does not impose a lock down, he will accused of being a murder. The leftist ecosystem will cry at the top of the voices from across the world with supporting articles in American publications which are supposed authenticate it. 

The current covid surge in India is the direct result of the incompetence of a few state governments that this very ecosystem supports. But of course, Modi is responsible. Here is an article giving out the facts -

COVID-19 second wave and India — the questions and answers

Akhilesh Mishra, Special to Gulf News11-14 minutes 5/12/2021


A medical worker in personal protective equipment (PPE) plays with a child of a woman recovering inside a quarantine centre for the coronavirus disease (COVID-19) patients amidst the spread of the disease at an indoor sports complex in New Delhi, India. Image Credit: Reuters

As the second wave of COVID-19 pandemic rages through India, several questions have been asked of the Indian government and the way it has handled the upsurge. In an admittedly difficult situation, has the government been found wanting or has it mobilised all the resources available at its disposal to deal with situation? Let’s explore some of the issues.

Did India fail to anticipate second wave?

The basis of this question lies in the fact that between January 1, 2021 and March 10, 2021, India was averaging less than 20,000 new cases a day and for a significant period, this number had dropped to around just 10,000. Almost every other country had faced a second wave between October and December 2020 while India, after the first wave peak, seemed to have escaped the second wave. So much so, that many domestic ‘experts’ now castigating the government had written multiple articles during the first part of this year on why India will not have a second wave and thus India should let go off the remaining restrictions it had — like mask mandate and reopen schools and colleges. In the international media, the BBC ran an article on 15 February 2021, titled “Is the epidemic finally coming to an end in India?” The New York Times, Wall Street Journal and many others were similarly part befuddled and part reporting on India’s seeming escape from a second wave.

But the Indian government led by Prime Minister Narendra Modi was not complacent. Between January and February, when the numbers were at the lowest, the central government issued 17 advisories to various state governments to not let their guard down, to continue to test aggressively, to ramp up health infrastructure and to be prepared for all eventualities. On 17 March, when the daily cases were still in the 20,000 range, Prime Minister Modi himself held a detailed meeting with all Chief Ministers were he explicitly advised them to be on constant vigil, to strictly enforce social distancing and mask mandate, to retrain health officials and reinvigorate administration protocols in case they had become jaded.

So, what happened? It would seem that many of the state administrations did go lax, especially the states where the second wave seems to have originated — Maharashtra, Kerala, Delhi, Chhattisgarh, Punjab and Karnataka. By the time they started putting their acts together, the second wave was in full steam!

But why hold elections in the middle of pandemic?

Holding elections on due time is a constitutional requirement as assemblies are mandated to meet once every six months. Amending the constitution to have kept the assemblies of these five states — Kerala, West Bengal, Tamil Nadu, Assam and Puducherry — in suspended animation and under central rule, would have been a recipe of disaster and completely undemocratic. World over, elections have been held during the pandemic. India too held the Bihar elections in November 2020 without much ado.

The real question is, could big electoral rallies have been avoided? The BJP had made this exact proposal to the Election Commission of India before Bihar elections — that put off physical rallies and let there be only virtual campaigning. Every other political party strongly opposed this move. Their plea was the BJP is better organised hence they will have advantage in virtual world and therefore level playing field will not be there. In absence of consensus, the Election Commission could obviously not force a decision and the existing systems continued.

Every political party thus carried on with physical rallies in the five states that went to polls. Massive road shows were organised in Kerala by Rahul Gandhi. Mamata Banerjee held her mega rallies in West Bengal. The BJP did the rallies where it was contesting.

But there were no elections in Maharashtra or Chhattisgarh or Delhi or Punjab where the numbers started rising dramatically by end March. Therefore, the argument that election rallies are the culprit is not backed by data.

What about Kumbh in Haridwar?

Kumbh is very revered religious gathering in India. Its date and time are decided by saints and not governments. As the COVID cases had dropped in January and February, a conditional go-ahead, on the dates proposed, was given. Very strict protocols for entry, testing, quarantine, and other medical protocols were enforced during the gathering. When the Kumbh began on 1 April, India was reporting 72,000 cases. Out of this, six states alone — Maharashtra, Chhattisgarh, Kerala, Karnataka, Delhi and Punjab — contributed over 76% of the cases. None of these had anything to with the Kumbh. Uttarakhand on 1 April had 293 cases, on 8 April had 1,100 cases. However, as the pandemic surged all over the country, Prime Minister Modi himself intervened and requested the seers to end the gathering before due date and which they did.

India’s vaccination strategy — is it right?

India has given emergency use approval to two domestically manufactured vaccines — Covidshield and Covaxin. Out of this, Covaxin is totally indigenous, under a special programme sanctioned by Prime Minister Modi, where the government medical body ICMR partnered with Bharat Biotech to develop and deploy the vaccine in record time. Despite a malicious campaign launched against Covaxin, unfortunately by very responsible politicians, India formally launched the vaccination drive on 16 January 2021.

It was designed in conformity with medical opinion and WHO recommendations — to reduce mortality among the most vulnerable and then progressively move forward. Accordingly, vaccination of health care workers started on 16 January; on 2 February front-line workers became eligible; from 1st Mach all above 60 years and those above 45 years with comorbidities became eligible; from 1 April everyone above 45 became eligible and from 1 May all above 18 are eligible. So far India, has vaccinated 173 million people, the fastest pace in the world. It is available free of cost to all above 45 and to even those between the age group of 18-44 through the central government channel.

Other vaccines, which have been approved by drug regulators in USA, UK and Europe and the Russian Sputnik vaccine have also been given authorisation and many of them are in the process of arriving in India.

A question is asked as to why did India export vaccines before it vaccinated the domestic population? As on 11 May 2021, India has exported a total of 66.3698 million vaccine doses to foreign countries. At the same time, about three times as many vaccine doses have been administered within India.

There were contractual obligations for the manufacturers to supply vaccines to many countries, especially from where raw materials were sourced. In addition, it has been the time-tested tradition of India to stand up for the entire humanity in times of need. As US President and the French President both recently affirmed, when the world was in need last year, India helped the world with medicines and other supplies. When India is now in need of help, the world is returning the gesture of goodwill.

But why Build Central Vista during a pandemic?

After the great depression, US President Roosevelt was asked why was he investing so much in building new infrastructure, including a complete revamp of Washington DC, when the money could be used elsewhere? His answer is classical governance speak. Infrastructure investment sparks a virtuous cycle of economic recovery — jobs for semi-skilled and unskilled labour, demand generation for the entire manufacturing and core sector and a surge in allied services and hospitality sector. After a year of lockdown and depressed economic activity, the government of India is rightly spending money on productive economic activity, generating jobs, renewing urban landscape, spurring allied sectors and ensuring that those at the bottom of the pyramid are not further stressed by shutting down the only sector that can gainfully employ them. The central vista project is an already sanctioned project and it would make no sense to stop it and depress economic activity.

Has medical infrastructure shortage been fixed?

On 25 March 2020, India had 10,180 isolation beds. Today this number is more than 1.6 million. In the same period, ICU beds have increased from 2,168 to over 92,000.

India’s average daily medical oxygen requirement before the current peak was around 700MT. The requirement surged to almost 9,000 MT in a few days — a jump of almost 1,200%. The manufacturing challenge was immense. But even greater challenge was to meet the logistics of such surge in cylinders, and supply chain. Although there have been very painful days, but the worst phase is perhaps over as both the supply and logistics of delivery have started falling in place.

Production of drugs like Remdesivir have been ramped up from about 4 million a month to almost 10 million a month.

To augment manpower, the government has allowed, on expert advice, medical interns to be deployed with full safety protocol and payment of internship.

Prime Minister Modi has personally monitored the mobilisation of the armed forces for securing supplies and in setting up dedicated emergency medical facilities in multiple cities.

PM CARES fund has been deployed to install in situ oxygen generating plants in the biggest hospitals. Simultaneously, 551 new generating units, in addition to 162 already approved, have been sanctioned. DRDO is also using PM CARES fund to set up additional 500 medical oxygen plants. Thus, a total of more than 1,200 plants will come up. This will ensure each district in the country will shortly have medical oxygen generating facility. PM CARES fund has also been used to procure state of the art ventilators and over 150,000 DRDO developed SpO2 sensing based oxygen control system.

The free food and ration scheme, covering 800 million Indians, has been extended for another three months.

A new anti-COVID oral drug developed by DRDO — 2-deoxy-D-glucose (2-DG) has just been approved. It has proved very efficacious in fighting the infection.

What next?

India is battling the second wave with full dedication and resolve. The seven-day moving average of new cases has shown a dip after for the first time in weeks. As medical infrastructure is able to meet the demand, and new aggressive protocols of containment being put in place like Uttar Pradesh and Maharashtra, the expectation is that India shall get over this difficult period in the very near future. The unquestionable heroes of the battle that India has been waging against the second wave have been the medical professionals and the front-line workers. Their dedication and service shall hopefully soon bear fruits.

Sunday, 9 May 2021

POLITICS OF THE PARLIAMENT BUILDING OF INDIA

  POLITICS OF THE PARLIAMENT BUILDING OF INDIA


Nowhere else in the world will someone try to trend the necessary work being done on the country's parliament building, as a home for Narendra Modi . Do they take the people of India to be such fools? Here is a thread explaining the issue

post by Sreevidya Balasubramaniam  @BaluSreevidya

https://twitter.com/BaluSreevidya/status/1339457464316489728?s=20


The political culture of our country is becoming increasingly toxic. Never before have we seen such a binary situation where the opposition parties believe their only job is to oppose everything the government does. This thread exposes them.

It does not matter if the issue is:

~ for the common good ~ something they themselves had planned ~ affecting security and safety of our country or people Latest in this hall of shame is the opposition to the new Parliament building which @narendramodi   did bhumi puja this week.











I am analysing this issue from three major angles. 1. Why a new Parliament building? 2. What is the politics around this? 3. What does this mean to Indian polity? For my first and second angles, I will share excerpts from three stalwarts in their discussion in Kolahala TV.

They are, Padmashri TK Vishwanathan (Retd Gen Secretary of Parliamentary A), Sri K. Srinivasan , Retd Director (Reporting), and Sri R Rajagopalan, senior journalist who has reported from the Parliament for over 40 years. Why the new building? See the shocking reasons below.

1. Health & Safety: The current building is very old, unsafe and used a. IIT Roorkee's study reveals that the building will not withstand an earthquake magnitude of just 6 RS b. The building does not have a fire clearance certificate. The fire department refused to certify.

During UPA, the kitchen was moved to adjacent building as the 50 gas bottles were ticking time bombs in the building c. When it rains outside, slabs keep falling inside. Dust fell from the roof on Late PV Narasimha Rao when he was replying to a member when Rajiv Gandhi was PM.

A net was placed below the ceiling to stop big pieces of slab from falling. On the II floor, slabs fall often. Few years ago, big part of the ceiling fell near Room 62 d. There is dangerous gas emanating from the sewage under RS and in other places, and that gives a foul smell.

Poisonous gases circulate in the chambers and at least two leaders have swooned due to this. You will be shocked to know that one was Sonia Gandhi, who is now opposing the new building. The other was Najma Heptulla

e. There are wires hanging everywhere (II floor especially) - short circuit risk is very high especially in hot summer when the temperature hits 52 degrees C. The entire wiring is a century old and it poses serious risk of fire from short circuit any time

f. Third floor has very narrow pathways. Once

's clothes got caught in one of the cupboards on the way and the cupboard fell. She could have been seriously harmed. g. Kitchen is full of cockroaches, spiders, and rats. Cats and dogs roam many parts of the building

Monkeys visit the third floor often. Once a cat bit DMK MP Vetriselvan. It's like a zoo. h. Mulayam S Yadav once fell in the building tripping on a fallen brick i. Toilets in very unhygienic conditions j. Speaker's chamber smells foul

k. When Bush visited, his security quoted IIT Roorkee's report to advise that Indian Parliament building was unsafe - a reason why India does not invite foreign delegates there. We help other countries build their Parliament houses, but our own is in very shabby condition.

2. Space - People in the parliament - MPs, staff, and visitors have increased significantly in the last 100 years. a. Staff are bout 6500, incl security. MPs, their staff will be another 1500 b. MPs sit cramped up, and no new MPs could walk in without tripping on the other

d. The building was not designed to withstand so much stress for 93 years from the increased footfalls e. Parliament is growing with more MPs by 2026, and the space is just not enough f. All MPs don't have their own rooms let alone a meeting place for visitors

3. Preservation of information and knowledge a. Parliament is a paper-less office now. So, all information is stored in computers. A short circuit or electrical outage could cause loss of data and information. This is a risk for the country

4. Maintenance a. We spend a lot of money - crores - on maintaining the current building. Despite that, the risks remain b. In order to refurbish this building, the contractors need it vacant for 2 full years - this is not a remote possibility

What is the politics about this? We see how Congress goes 180 degrees on their own promises. Parliament building debate is another such shame for them. Why? I quote Sri @RAJAGOPALAN1951  

Congress initiated, participated in, and approved a new building during their tenure.

1. Chintamani Panigrahi, a CONGRESS leader and MoS Home Affairs in 1985, wrote to the Sel. Comm on the need to have a new building, quoting the 'scars' on the building 2. Meira Kumar, Congress Speaker continuously sought reports on the condition of the building

K Srinivasan, the then Director (Reporting) had sent 56 such reports after personal inspection of the building. Meira Kumar refused the use of kitchen, for fear of fire. Her successor, Sumitra Mahajan had also progressed the cause of new building

3. In 2012 July, Radhey Shyam, Officer on Special Duty had written a detailed letter to Union Minister of Housing and Urban affairs on behalf of Meira Kumar asking permission for CPWD to undertake feasibility studies for the new building

4. Another letter was written to PM Manmohan Singh by Meria Kumar stating the same. 5. It was during this time, that Congress requested environmental clearance for a new building. The CONGRESS minister who gave a green signal to this was none other than Jairam Ramesh.

6. This issue was discussed and debated in the Parliament in 2019. Congress actively participated and agreed to a new building. Together, they approved 971cr towards this. This is not a huge amount due to the economies of scale - this building is part of the Rs 20,000-crore...

...Central Vista project, which aims to build and refurbish the government buildings on the 13.4-km Rajpath. Congress heartily agreed to all this. Now the same Congress has gone 180 degree on this and is opposing this move. Tamil media has picked it up as an issue.

The MSM which is largely owned by the DMK should not be opposing this as MK built another assembly building without such risks to the existing building. I understand that many in TN media may not even have seen the Parliamentary building.

But then they should at least ask senior journalists like before raising squabbles. Most interesting float in TN today is Kamal Haasan. He is someone with an unbridled tongue with no scruples. He is just asking questions in the air, without checking facts.

Seriously TN, do you want to have such politicians representing you? Pandemic has not been a deterrent to major activities that boost economic growth. A lot of govt projects keep going. I don't think Earthquakes, Fires, or Short Circuits wait for Corona to be over.

If Congress started this idea of new building, then why are they opposing this? This is the toxic culture I spoke about. Opposing anything because it's done by BJP. Don’t bother about facts. They are doing this in the hope that in time, people will slowly start feeling that BJP is onto a few wrong things.
A communist social conditioning by repetition technique. What does this mean to the Indian polity? If a society or system goes binary, the mightier force will eat away the weaker one. Congress is hoping that they can eat away the pro-nationalistic and transparent new culture of governance by constantly attacking it.
Congress is under delusion that the GOP of India is still mighty. This is where they are going wrong. With the information and factchecking on finger tips, more and more people adopt a position today. The fence sitters, the agnostics, the atheists, the hermits will all be compelled to take sides in this age of social media and alternative truth. This collective mind will decide in an organic process which is a mightier force and will isolate and weaken the other ones. I don't need to say which is which.

Friday, 1 January 2021

THE REAL FASCISTS IN INDIA

THE REAL FASCISTS IN INDIA

The very people who define fascism call Narendra Modi a fascist. The communists who perfected fascism in almost all the places they ruled, the family dynasts who run most of the parties in India, all of them call BJP a fascist party and Narendra Modi a fascist and dictator. 

Do they think that the public of India are dumb? BJP is the only party in India without a dynasty controlling it. Although communists have democracy within their set up, they have replaced a dynasty with their politburo and nothing more and indulge in only violent forms of suppressing opponents.

Here is an article about Sonia Gandhi and Rahul Gandhi and their actual background.

Sonia’s Rahul: Grandson of a Fascist - Ravi Kant - Medium

Rahul Gandhi is known in India for many things. He is the son of former Prime Minister Rajiv Gandhi and grandson of another Prime Minister Indira Gandhi and great-grandson of India’s first Prime Minister Nehru.

A core identity that drives the image of Rahul Gandhi is being the scion of this famed/notorious Gandhi family.


Rahul Gandhi’s mother Sonia was practically running the nation for a decade until 2014. Rahul Gandhi is a member of Parliament for over a decade but he never held a government office in his entire political career.

As expected, he took over the post of Congress Party President from his mother last year (Sonia Gandhi herself climbed to the top post of Congress President within 62 days of her joining the party as a primary member).

His comments on Prime Minister Modi and RSS make regular headlines and his tweets on social media are debated by Indian media every evening. Rahul Gandhi has regularly declared BJP and RSS as “Fascist forces” that threaten Indian democracy. Despite being regularly ridiculed for his lack of political acumen, rampant foreign holidays and ability to grasp street politics in India, Rahul Gandhi is projected as the only natural challenger to PM Modi in 2019.


But how much do Indians really know about Rahul Gandhi and his background?

Interestingly, the mainstream Indian media effectively conceals the other side of Rahul’s family. Those in public life are often met with strict and grating media scrutiny. PM Modi’s marital affairs were debated for months after his historic electoral win in 2014. Indians were made well aware of his family, relatives and the path to the leadership of India. This is done violating any consideration for their privacy. Surprisingly none of that was even done to Rahul. So lets’ talk about that.

Besides having three Prime Ministers in his family, Rahul Gandhi also had a World War II prisoner from Mussolini’s Fascist army in his family who was fighting under the flag of Nazi-Fascist forces.

Stefano Maino who is the maternal grandfather of Rahul Gandhi is an unheard name for Indians. In 1998, Outlook Magazine published a rare interview with Stefano Maino –Father of Sonia Gandhi.




Stefano Maino and Paola Maino — Parents of Sonia Gandhi

In this interview, the father of Sonia Gandhi declared his “unwavering loyalty to Mussolini and Italy’s ‘admirable’ fascist past.” Stefano Maino was later captured as Prisoner of War during WWII. He was kept in a Soviet Prison and where Sonia Gandhi regularly visited him in Russian cities of Vladimir and Suzdal.




A screenshot from the WikiLeaks cable No.06NEWDELHI5495_a (accessible at https://wikileaks.org/plusd/cables/06NEWDELHI5495_a.html)

Rahul Gandhi who does not mince words when hitting against BJP and RSS for their “fascist ideology”, is yet to utter one word on family’s deep Fascist connection. Perhaps this was a major reason why Sonia Gandhi has avoided open media interactions in her political life. But the issue also puts lights on the sheer hypocrisy of Congress leadership when they use terms like Fascism without acknowledging its role and influence in their own family circles.

The issue gets more interesting if one has to link the association between Russia and Sonia Gandhi. Sonia is a fluent Russian speaker who is always welcomed by the Russian government. Her two sisters — Nadia and Anushka were given Russian names. As UPA chairman, she made frequent “secret” trips (including her first foreign trip) to Russia on private jets of Indian corporate houses.

Even recently Sonia Gandhi battling health problems made a trip to Russia that was hardly covered by the Indian media. Soviet authorities and KGB wielded much influence on Congress party during Indira regime. It has been claimed that 40% of Indira Gandhi’s parliamentarians receiving political contributions from Moscow. None in the Indian media ever inquired how come daughter of an Italian World War II PoW made up to the inner circle of Indian PM’s son in London and ended up dating and later marrying him. Could this be possible unless she was gained from a powerful backing?

So perhaps, next time Congress President Rahul Gandhi decides to label another Indian political party as Fascist, he should first search the library of his grandfather Maino to find a copy of “Fascist Manifesto” and get himself a lesson on his family’s own Fascist past.

Thursday, 3 December 2020

The complete honeytrap, honeygate and the inevitable Chinese connection.

The complete honeytrap, honeygate and the inevitable Chinese connection.

A Down To Earth & CSE expose on the adultration in the honey available in the markets in India, including big brands like Dabur, Himalaya, Apis, Patanjali

Only 2 brands have passed the adulteration tests - Saffola and Markfed Sona

Source-https://www.downtoearth.org.in/


The biggest brands producing honey in India have been exposed — so has the food product many consumed for its health benefits.































































































































































A study conducted by the New Delhi-based Centre for Science and Environment (CSE) tested 22 samples of honey from 13 Indian brands. It found that brands such as Dabur, Patanjali, Zandu, Baidyanath and Hitkari were selling honey adulterated with either sugar / rice syrups.

These brands had been using rice and sugar syrups to adulterate honey, which went undetected under testing protocols mandated by the Food Safety and Standards Authority of India (FSSAI), the CSE study found.

While some brands such as Apis, Dadev, Indigenous Honey and Societe Naturalle failed to clear the tests conducted in India, other popular brands that cleared them were found to be circumventing the norms in Germany.

Honey testing in Germany was carried using Nuclear Magnetic Resonance Spectroscopy (NMR) in one of the most reputed laboratories in the world. The results were astonishing: Only 3 of the13 brands, including Saffola and Markfed Sona, passed both the Indian and NMR tests.

Only five samples out of a batch of 22 were found to be unadulterated.

The CSE study found that sweet syrups made from sugars of different kinds could easily pass the Indian testing protocols, but not the ones that used a more advanced framework. No wonder popular brands such as Dabur, Patanjali, Baidyanath, Zandu, Hitkari, and a few smaller brands such as Natures Nectar and Indigenous Honey, could pass the tests for Indian standards but not the ones that used NMR.

The study also showed that these brands were using sugar and rice syrups modified in a manner that could fool all the Indian testing protocols set by FSSAI. What also became apparent was that smaller brands such as Dadev, Hi Honey and Societte Naturelle were not using these modified sugar syrups: They adulterated the honey using simple sugar solutions.

So the big question is: What are these syrups that beat all honey testing protocols in India?
The CSE investigation found that manufacturers in China were openly selling high fructose syrups, which they claimed could pass C3 and C4 tests mandated by India’s FSSAI.

And these syrups are openly sold on websites such as alibaba.com and tradeindia.com. CSE contacted syrup manufacturers and exporters in China to see if these syrups could be brought into India for testing.

Two Chinese companies — Wuhu Deli foods and CNNfoods — were contacted if they could provide us with syrups that could beat the Indian tests. These companies — based in Anhui province of China — got back saying that they could supply us with the “magic syrup that beats all Indian tests”.

Both CNNfoods and WUHU Deli sent us the samples, but we could get only the ones from CNNfoods because of logistical issues. The samples sent by CNNFoods proved to be a goldmine of information, especially when it came to bypassing the Indian standards. But more on this later in the video.

Meanwhile, beekeepers in Uttar Pradesh and Haryana had told CSE researchers that the ‘magic syrup’ was being manufactured in India and was called ‘all pass’ syrup, meaning it could pass all testing protocols of India.

They also directed us to Jaspur in Uttarakhand’s Udham Singh Nagar district; CSE then contacted a seller there, who agreed to give us a sample of the ‘all pass’ syrup. The syrup could pass all tests to check for C3 and C4 adulterants in India, but would not stand the scrutiny of NMR tests, the seller claimed.

One lesson that we learned from our interaction with the Chinese and Indian sellers was that these syrups cost simply a fraction of real honey. While a beekeeper spends Rs 100 to produce one kilogram of honey, these sugar adulterants could cost as little as Rs 48-Rs 70 per kg.

With the Chinese and Indian syrups in hand it was time to check whether these samples would pass the tests mandated by Food Safety and Standards Authority of India. Was this the syrup that the big brands were using to cheat the Indian honey tests? CSE spiked six samples of raw and processed honey with this fake honey/sugary syrups from China and India.

The mixing combinations were as follows:
  1. The first sample contained 75 per cent raw honey mixed with 25 per cent Indian ‘all pass’ syrup
  2. The second sample contained 50 per cent raw honey mixed with 50 per cent Indian ‘all pass’ syrup
  3. The third sample contained 75 per cent raw honey mixed with 25 per cent Chinese syrup
  4. The fourth sample contained 25 per cent raw honey mixed with 75 per cent Chinese syrup
  5. The fifth sample contained 75 per cent processed and branded honey mixed with 25 per cent Chinese syrup
  6. The sixth sample contained 50 per cent processed and branded honey mixed with 50 per cent Chinese syrup

The processed brand of honey that we used had already passed all testing protocols in India and examination using NMR.

The results astonished us. All the spiked honey samples, except one, passed the Indian testing protocols for C3 and C4 sugars. The one that failed was the sample that contained 25 per cent raw honey spiked with 75 per cent Chinese syrup.

We now know that companies can mix at least 50 per cent sugar in their honey — and it would go undetected under the Indian testing guidelines. Could this be the reason why nine out of the 13 brands passed the Indian testing protocols but failed during the NMR tests. Only two Indian brands passed NMR standard for testing adulterants.

At least 77 per cent of the Indian honey samples that we tested were adulterated.


www.downtoearth.org.in /news/health/the-honey-trap-74476

The Honey Trap

69-88 minutes

Health

Investigation into the business of adulteration of honey

This story begins in the mustard fields of north India where beekeepers are getting ready for the next honey season. When the yellow flowers are in bloom, the bees suck the nectar and bring us goodness in the form of honey, which we then consume because of its many beneficial properties. We were alerted that beekeepers from this region and other parts of the country were in deep distress — they had reached the point where their business had turned unprofitable in the past few years. Prices of raw honey had crashed like never before.
But why? We asked. After all, the sale of honey is booming — the threat of COVID-19 infection has made people consume more because of its anti-microbial and anti-inflammatory properties. Drinking a glass of water with honey and lime has become the practice for millions of households.


Also, we know the Union government has a massive programme for beekeepers — some Rs 500 crore is being spent to build their livelihoods; giving money in the hands of honey producers. What then is making beekeepers lose heart in their business?


When Down To Earth travelled to these states, we heard a grim story repetitively. “We were getting good rates for our honey till 2014-15 and then they started to fall. From Rs 150 per kg, now the rate is close to Rs 60-70 per kg,” beekeeper after beekeeper told us. Ram Gopal, a beekeeper from Bharatpur, a major region for raw honey production in Rajasthan, said, “I have doubled my hives, but today my income is less than what I used to get five years ago. I am planning to give it up.” Amarnath Bhanwar Singh from Gango village in Saharanpur, Uttar Pradesh (UP), said: “I have abandoned beekeeping because of low profit margins.” Sanjay Negi, who is both a beekeeper and trader based in Rampur, UP, said, “Beekeepers could survive only if they got a minimum price of Rs 120 per kg. But the current price is simply not remunerative”.

SOME CLUES

What are we missing? We wondered. We then approached small and large traders to understand what was happening with the market. They confirmed the price crash, but they were less open about the reasons. “We have heard that honey is mixed with sugar syrup, and this syrup made from rice and other crops can pass all laboratory tests. Companies are mixing this sugar syrup with a little honey and making huge profits.” But we don’t know who does this. 

We have heard Chinese companies have helped set up sugar syrup factories in India. One prominent trader from Saharanpur, speaking on condition of anonymity, divulged that he heard Chinese companies had come with their technology and had set up factories in Jaspur in Uttarakhand, Dhampur in Bijnor, UP, and Batala in Punjab. Another trader from Rampur confirmed this, but would not divulge anything more. There was something going on; but what? 

These businesses, even if they could be tracked down, would say they were producing sugar syrup for selling to confectionary and other industries. All these are legitimate businesses and all above board. This was where our trail hit a block. The story almost ended here...

Adulteration business

As tests became more advanced and could detect adulteration, the industry has evolved and found new adulterants

  • Honey is the most adulterated food in the world
  • The business of adulteration has constantly evolved to beat laboratory tests
  • Honey fraud is a big concern across the world
  • In India, government knows (but is not telling) that something is seriously wrong
  • Standards for honey purity have been revised again and again
  • Government has mandated additional and advanced tests for honey that will be exported

THE GLOBALLY accepted definition of honey given by the Food and Agriculture Organization’s (FAO’s) Codex Alimentarius Commission is “(it) is the natural sweet substance produced by honeybees from the nectar of plants or from the secretions of living parts of the plants or excretions of plant sucking insects on the living parts of the plants, that bees collect, transform by combining with specific substances of their own, deposit, dehydrate, store and leave in the honey comb to ripen and mature”. If honey is adulterated with sugar it is not honey. So, is the honey we consume adulterated with sugar?

The Food Safety and Standards Authority of India (FSSAI), our food regulator, seems to know something is amiss. In the past few years, it has amended its standards for quality of honey twice and has issued directives to the industry. And each time, the amendment was to “catch” adulteration by one kind of sugar or another. FSSAI even ordered for regulation on the import of sugar syrup as it suspected it was used for adulteration. So, either FSSAI knows what is going on, and is not telling us — the consumers — or, it is fishing around to see if it can find the honey fraud and stop it.

Honey is the most adulterated sub-stance in the world — this is well-known in food circles. What is also known is that every time food regulators get close to checking the cause of adulteration, new ways are found to circumvent and work around this. Honey fraud is a well heeled enterprise. Honeygate is a global story (see map "Honeygate",).

MANY STEPS FORWARD AND A GIANT LEAP BACKWARD

For a good 60 years, quality standards for honey remained static. Nothing changed till December, 2014 when FSSAI added antibiotic limits to standards for honey. This happened after Centre for Science and Environment (CSE), a New Delhi-based non-profit, published its 2010 report on antibiotic residues in honey. This report was based on CSE’s laboratory tests of popular honey brands that found residues of antibiotics in honey bottles. CSE also pointed out that there were no standards for antibiotic limits in honey that would be sold for domestic consumption — unlike what existed for export.

In 2010, FSSAI issued an advisory to clarify that pesticide and antibiotic residues were not allowed in honey. In 2014, the honey standard was amended to include tolerance limits for antibiotics — how much or how little the residue must be in honey to pass quality standard. Now beekeepers and honey producers were forced to ensure they did not use antibiotics for disease control. Or would do so, with careful management. These limits were brought in as there is growing concern about how bacteria-causing infections in our bodies are becoming resistant to antibiotics.

The 2014 standards seem to have spooked the honey processing industry. It needed to find ways to work around these limits — and what better than to add some sugar syrup into the product to “dilute” it. It could be “simple and effective”.

We don’t know if this happened. But we do know that in 2017, FSSAI issued a draft notification with substantial changes in the honey standard for public comments. In this draft notification, the food regulator, for the first time, included tests to detect sugar made from cane, rice, and other crops like beetroot. The tests were to check adulteration by “foreign” sugars in honey. This draft was issued to catch up with the business of adulteration that had grown and was being detected across the world.

Globally, the first test that was added was for C4 sugar syrups — this comes from plants like corn and sugarcane, which use a photosynthetic pathway called C4. This analytical method was developed by scientists to differentiate the “sugar” in honey from the “sugar” that would come from C4 plants. The 2017 draft included this test.

 



But globally adulteration business evolved with the sole objective to beat laboratory tests — this meant replacing the type of sugar that could be used for adulteration. To this end, another category of plants was used, this time that used photosynthetic pathway called C3. These plants are rice or beetroot. So, then laboratories came up with isotope tests to detect this adulteration and also Special Marker for Rice Syrup (SMR), Trace Marker for Rice Syrup (TMR), and foreign oligosaccharides, which help detect adulteration from starch-based sugars, like rice syrup.

The 2017 draft notification included isotope tests and SMR, TMR and foreign oligosaccharides.

The 2018 final standards notified these parameters. It could be said that India had adopted complex testing protocols to ensure that honey — the product we love to consume — would remain healthy and wholesome.

Then in October 2019 — with no apparent reasoning — FSSAI issued a directive for revision of the parameter of pollen count and deletion of SMR, TMR and foreign oligosaccharides. Given that these parameters had been included specifically to check adulteration from rice syrup, it is still not clear what prompted FSSAI to dilute its own standard. And by July 1 2020, the standard was revised again and certain parameters were restored (see “Fast changing standards”).

BUT TWO BIG CHANGES WERE MADE IN THE 2018 STANDARD

First, the TMR test was dropped; this when combined with SMR, has a better chance to catch adulteration by rice syrups. It is not clear why this was left out. Second, pollen count was reduced from the original 50,000 in the 2017 draft notification to 25,000 in 2018 to 5,000 in 2020. The issue of counting pollen in honey and to use this as a determinant for quality and adulteration remains controversial (see “Counting pollen”,).

The tug and pull on the standards — between 2017 and 2020 — reveal how FSSAI is struggling to agree on the quality standard that will check adulteration. What is also clear is that certain parameters are being fiddled with, without publicly available reasoning as to why this is being done.

FAST CHANGING STANDARDS

Honey standards have seen quick revisions suggesting that there is more than what meets the eye

2010

CSE lab found antibiotic residues in honey

2014

FSSAI amends honey standards to include antibiotic residue limits

2017

FSSAI drafts standards for honey, which includes tests to detect cane and rice sugar (C3 and C4 sugars)

2018

FSSAI notifies standards with some minor changes

2019

FSSAI reverses decision to test key parameters such as SMR, TMR and Foreign oligosaccharides that would have allowed detection of rice sugar and other adulteration in honey

December 2019 & June 2020

FSSAI informs state food commissioners that sugar syrups are being used for adulteration. Asks for regular inspections

February 2020

Ministry of Commerce makes it mandatory for honey exports to be screened using NMR technology to detect sugar syrups. EIC sets up laboratory for this check

May 2020

FSSAI says it has been informed about adulteration of honey using golden syrup, invert sugar syrup and rice syrup. It asks importers to register with it and to inform of the usage of imported products

July 2020

FSSAI reinstates key parameters, but not TMR to detect rice syrup. Issues 2020 Standard.

GOLDEN SYRUP TO NMR



This clearly is not the end of the adulteration story. We say this because India’s food regulator has been sending signals that suggest that new kinds of adulteration is happening.

In December 2019, and then again in June 2020, FSSAI wrote to state food safety commissioners about the need to step up surveillance, sampling and inspection to check misuse of Golden Syrup/Invert sugar syrup/rice syrup in honey.

On May 20, 2020, FSSAI issued an order on the import of golden syrup, invert sugar syrup and rice syrup. This order says that FSSAI has been informed that “sometimes these syrups are used in the production of honey because it is cheaper in cost and due to similar properties and easy availability”. It directed that all importers/food business operators, who are importing golden syrup, invert sugar syrup, rice syrup into India to submit necessary documents with details of the manufacturer with end use to whom the syrups will be supplied.

On September 1, Down To Earth filed an application under the Right To Information Act (RTI) with the Imports Division of FSSAI asking for information received from industry to this order and to understand what further steps are being taken to check the source of adulteration by imported sugar syrup. FSSAI has said it has sent the RTI application to another division, but has not cared to say which one. Clearly, these are diversionary tactics.

That’s not all. On February 26, 2020, the Export Inspection Council (EIC) told all honey exporters that Nuclear Magnetic Resonance Spectroscopy (NMR) testing shall be mandatory for honey meant for export to USA for detection of adulteration and geographical origin/authenticity with effect from August 1, 2020. It has directed that Export Inspection Agency (EIA) officials shall draw samples as per the laid down protocol for inspection and these will be tested in its laboratory in Mumbai, where NMR tests are possible.

Why was this done? And what is NMR? NMR is seen as the gold-standard for testing for adulteration in honey, designed specifically to redflag samples that use modified sugar syrups. Think of NMR as the difference between X-ray and blood test and Magnetic Resonance Imaging (MRI) to detect serious ailments in our body. The technology, similar to MRI, uses imaging to get a full picture of the honey and its constituents. It is then able to identify both the origin of the honey and its authenticity.

In India, brands like Dabur honey and Saffola are now advertising that they use NMR to ensure that their products are pure.

The NMR technology was developed by a German company and now governments are using it to check origin and adulteration in honey. It is also clear that very soon even this technology will get obsolete as the adulteration business will find new ways of breaking this code as well.

Indian government’s direction to exporters to do NMR tests shows that they suspect or know that Indian honey has some adulteration, but is not being detected using tests for C3 and C4 sugars. Additional tests are required to be done, which in this case is NMR, to ensure that honey is not adulterated.

So, what is this adulterant that can pass the test for sugar syrup? That was our next question.

COUNTING POLLEN

FORMER EXECUTIVE Director of National Bee Board Yogeshwar Singh told Down To Earth that he had written a letter last November to the Economic Advisory Council's Beekeeping Development Committee, saying that “by reducing pollen count, FSSAI has legalised the practice of adulterating and selling rice syrup and corn syrup as honey. Thus open cheating of the consumer by honey processors has been legalised”.

But the government did not agree. In a reply to a question in the Lok Sabha in February this year, the Ministry of Health and Family Welfare said: “FSSAI has informed that revision in pollen count requirement has been made based on the inputs received from the experts from Indian Agricultural Research Institute (IARI) and Central Bee Research and Training Institute (CBRTI) representing the true picture of pollen count in Indian honey.”

Laxmi Rao of CBRTI told Down To Earth the institution had recommended 5,000 pollen count per gm based on studies in India and abroad in which it was found that pollen content should be minimum 0.01 per cent of the total content of the honey — 5,000 per gm.

In fact, as per global practice, pollen is not used to determine quality of the honey. Instead, pollen provides countries the clue to find where the honey originates from. One part of the honey fraud in the western world has been the mislabelling of honey — saying it comes from the US, for instance, when it actually comes from another country. Pollen helps to determine origin — it’s like a fingerprint.

Codex Alimentarius Standard recommends that “no pollen or constituent particular to honey may be removed except where this is unavoidable in the removal of foreign inorganic or organic matter. Honey which has been filtered in such a way as to result in the significant removal of pollen shall be designated filtered honey”.

Also, pollen count differs between the honey type: whether it comes from mustard or litchi, for instance; or, if the honey is mono-floral or multi-floral. Also, in some cases, adulteration has been done by adding pollen — to disguise the origin of the honey. So, whereas it could be the case that reducing pollen count may aid adulteration; the increase in pollen count in the honey standard may not work to rectify the situation.

Clearly, even if eating honey is simple; the business is not.

Leads to China

Tracking down the imported syrup being used for honey adulteration

  • FSSAI directive on import of golden syrup, invert sugar syrup and rice syrup used for adulteration is a dead end
  • Chinese trade portals like Alibaba advertise fructose syrup that can bypass tests
  • Same Chinese companies that advertise this fructose syrup that can beat C3 and C4 tests also export to India
ON OUR trail to probe adulteration in honey we had two leads. First, beekeepers not getting a fair price for their honey indicated possible adulteration with sugar syrup thus reducing demand for raw honey. Second, government suspected adulteration as it had not only introduced tests to detect sugar syrup from rice or corn, but had asked for tests that would catch sugar syrup, which is undetected by the laid down standards for exported honey.

So, now the next probing question was: what is this syrup? Who makes it? Where does it come from? Our clue came from the May 2020 FSSAI directive that specified that “golden syrup, invert sugar syrup, rice syrup” coming into India needed to be tracked as these could be used to adulterate honey. So, we started to find out about these syrups and thought this would be easy.

But when we checked the export-import database of the Union Ministry of Commerce and Industry, two of the named syrups — rice syrup and golden syrup — could not be found. Each product imported into the country has what is called the harmonised system (HS) code that describes the type of good that is shipped. There were no codes for these syrups. It seemed we had reached another dead end in our investigation.

We also found that what was called “Invert Sugar Syrup” had an HS code, but when we looked into this, the imports were in small quantity — only about 1,300 metric tonnes (MT) in 2017-18 and 2,500 MT in 2018-19. This was not a significant quantity to indulge in a large-scale adulteration of honey. FSSAI’s clue left us with no leads.



We then looked somewhere else. We decided to scan the websites of Chinese sellers. We found that certain Chinese portals such as Alibaba, OkChem, Tradewheel featured syrups that claimed they could pass the honey adulteration tests such as C3, C4, TMR, SMR, oligosaccharides, and in some cases also NMR. These syrups were put on display for sale commonly as “Fructose syrup (F55/F42)”, “Honey blend syrup”, “Fructose Rice Syrup for Honey”, “Tapioca fructose syrup”, “golden syrup fructose syrup” and “golden fructose glucose syrup”.

Repeated use of the terms fructose and glucose in the names of products on these websites prompted us to look at the imports of these from China. The export-import database of the Ministry of Commerce and Industry, Government of India, suggested that since 2014-15, nine other countries regularly exported fructose syrup to India, but China is the only country from where it is imported to India in bulk. So much so that China is driving the trend of fructose syrup quantity imported in India (See “Indelible link”,). The average quantity is over 10,000 MT every year since 2014-15. Similarly, all glucose syrups imported to India are coming from China since 2016-17. There was a spike in the imported quantity to more than 4,300 MT in 2017-18 (see “Chinese imports”,).



These statistics and trends seemed unusual, but we needed more information about the sellers and if we could make connections between the exporters to India and the companies selling these adulterants on the websites.

We bought a trade database, on the condition of confidentiality, from a company that compiles data by each imported shipment. It not only provided the details of the Chinese sellers, the prices and major ports where shipments landed, but also helped us understand the names under which syrups are imported to India. We also sought data for golden syrup, rice syrup and invert sugar syrup, which could only be identified by entering key words in description due to lack of HS code.

This trail of the probe fetched us definitive leads. Fructose syrup sellers are the same Chinese companies which, on Alibaba and similar portals, openly sold syrups that could pass the honey adulteration tests. In the last four years, more than 11,000 MT of fructose syrup in India had come from these sellers, which was about 70 per cent of the total quantity imported from China and the stated description was “industrial raw material”.

On the face of it, these companies appear to be the legitimate syrup or honey suppliers as they don’t say a word about the amazing capability of their syrups to pass adulteration tests on their websites. On the contrary, they display certificates on food safety and standards on their sites. But the connection is made when you find that the same food company — which is exporting to India — is the same respectable food seller, but on online portals like Alibaba, it says that it makes sugar syrup products that will beat all C3/C4 tests.

The problem is at our end — the importers. Here, there is a real dead end to our investigation. Most of the companies listed in the database as importers of this product from China are either trading companies who will further sell to either honey packing business or to other food businesses. Out of 166 fructose syrup shipments from China, 100 were bought by buyers in Punjab (Faridkot, Patiala and Rajpura); about 30 by buyers in Delhi-NCR; and 15 by two buyers in Jaspur and Kashipur (Uttarakhand).

Chinese companies who exported glucose syrup to India are either honey suppliers or claim that they sell glucose syrup as a substitute to honey (see “A brief bio of sugar”). If they are supplying pure honey under the HS code of glucose syrup to avoid heavy duties, then it’s a different issue. But supplying glucose syrup to blend in honey only increases the gravity of adulteration issue. Major importers are buyers in Nasik, Uttarakhand and Uttar Pradesh.

It is clear that adulterants are not imported as rice syrup, golden syrup or invert sugar syrup. In 2019-20, there were only 10 shipments of rice syrup from the US and only in small quantity (22 MT). Only one seller in China sold it as Golden Syrup under the HS code of fructose — shipped over 2,700 MT in 2017-18 and 2018-19. Golden syrup imported from other countries is either coming for pharmaceutical purposes as reflected by the HS code (in case of Switzerland) or not imported in bulk (in case of the UK).

So, why did FSSAI put out what was clearly an erroneous order as it named products not being imported, but missed the ones that were being imported and from the same Chinese companies that claimed that their products could circumvent the C3 and C4 tests. Was it the lack of knowledge or a deliberate misstep?

A brief bio of sugar

We know that sucrose, glucose and fructose are all sugars that contain more or less the same calorie per gram. But what differentiate these sugars is what else is in each of them — what is the chemical structure and how our bodies digest and metabolise these. Glucose is simple sugar or a monosaccharide — it’s what the body digests fastest. It can be extracted from corn and added to processed foods as dextrose. Fructose is also simple sugar, but it is what is called “fruit sugar” as it is found naturally in fruit, honey, cane and beetroot, to name a few vegetables. It is also easy to digest. Honey has higher fructose, than glucose, but what differentiates it from other “sugars” is that it also has a variety of good enzymes, which break down the sugars — these enzymes come from the plant itself or from the bees. The ratio between fructose and glucose changes based on the origin of the honey — which plant and also if it is multi-floral (many flowers) or mono-floral (one plant/flower). So, one its own, the ratio is not the determinant of adulteration.

How we broke honeygate

An undercover operation to contact Chinese sellers of sugar syrup brought to light the shady business

  • We sent emails to Chinese companies soliciting syrups that could pass tests in India
  • These are the same Chinese companies that export fructose syrup to India
  • We received replies that syrups are available and can be sent to India
  • Chinese companies inform us that even if 50-80 per cent of the honey is adulterated with syrup it would pass all stipulated tests
  • One Chinese company exported syrup as paint pigment to us
  • It routed shipment through Hong Kong to bypass custom clearance
ON OCTOBER 22, 2020, a courier arrived by FedEx at our doorstep. It was from Hong Kong, and the package content said it contained plastic pigment emulsion. You may ask: Why would we be interested in plastic pigment emulsion and that too from Hong Kong? As we had established an import aspect to honey adulteration, we wanted to embed ourselves in the business. We would order samples of syrups from China that the company said with confidence could be added to honey and would pass all the stipulated tests.

We contacted two companies in China through e-mails who claimed to be honey producers (see “The China trail”,).



We posed as an Indian honey collection and trading company that wanted to buy these Chinese syrups that could beat all tests. We sent business enquiries to two Chinese companies. The first one was a big FMCG company called Wuhu Deli Foods based in Wuhu, in the rice-growing belt of An Hui, China. According to its website, it was a producer of four products: natural honey, syrups, dry syrups and vegan protein. Wuhu Deli was also one of the exporters of fructose to India.

The other smaller in size company, called CNNFoods, is also located in An Hui. This company claimed that it only sold natural bee products like honey, comb honey, bee wax and propolis.

Our bait for these companies was a rather attractive one. We offered to buy 10 container loads or about 200 tonnes of syrup or adulterant that could pass all Indian testing protocols.

Our requirements were simple. Could your syrup pass the tests set up by the FSSAI, which includes the tests for C3 and C4 sugars? Apart from these tests, we also wanted to know if the Chinese syrups could pass these additional tests, including a Specific Marker for Rice Syrup (SMR), Trace Marker for Rice Syrup (TMR), and for Foreign oligosaccharides. We also wanted the HMF (5-hydroxymethylfurfural) levels to be low so that it would show that honey has not been heated.

Both the companies got back saying that they could supply us the syrups as per our specified requirements.



Wuhu Deli offered us two syrups one with a fructose content of 48 per cent also called F48, while the other with a fructose level of 55 per cent or F55. Wuhu Deli wrote saying both these syrups could pass our testing requirements. The company wrote that they could ship it to any dry port in India and gave us the rates for inland container deport (ICD) Ludhiana at a CIF (cost insurance and freight) basis. The CIF rates for Ludhiana were quoted as US $805.00/MT for F48 syrups and US $950.00/MT for F55 syrups. In Indian currency, the rate for the F48 syrup was about R60 per kg while rate for the F55 variety was about R71 per kg ($1=R75).

The second Chinese company — CNNFoods, which on paper only sold honey — also offered us F48 and F55 syrups that could pass all testing protocols in India. Unlike Wuhu Deli, CNNFoods could ship the syrups to Inland Container Depot at Tughlakabad in Delhi at a much cheaper rate. Their CIF rate for Tughlakabad was US $710/MT for F48, while for F55 it US $790/MT. All these rates were for 200 MT of syrup. That was an astoundingly low price of about R53 per kg for the F48 syrup and R59 per kg for the F55 variety.

Interestingly, CNN Foods told us that most of their clients mix 50-80 per cent syrup in their honey. We wanted to find out if we could get samples of these two syrups delivered to us in India before we placed the order. Both the companies agreed to ship their samples.

On September 30, 2020, Wuhu Deli confirmed that two samples of 500 ml each has been sent through FedEx bearing Airway Bill number 77166635xxxx. The invoice for the consignment was very secretive of the contents and didn’t mention what kind of syrup had been shipped. It simply said “Syrup” with no hint whether it was made from rice or any other starchy ingredient. The certificate of analysis for F48 sample that was mailed to us by the company had noted that the syrup was light in colour, odourless and sweet to taste, with dextrose plus fructose content of 97.50 per cent with 48 per cent being the fructose content.

While this sample reached Delhi, we were unable to take delivery of the sample because it came as cargo, which required an elaborate process to clear it past customs. FedEx informed us that since the India-China conflict, the government of India does not allow the courier company to clear packages and requires a customs agent to do so. Because we are not a food processing company and we do not have the requisite FSSAI licenses and import certificates, we did not attempt clear the samples on our own. This sample is still in the custody of FedEx to best of our knowledge.

But what about the second company, CNNFoods which only had natural bee products in their portfolio? This company desperate to sell us their product took a different route. They suggested that they would send their product through Hong Kong, as there was greater scrutiny of Indian customs on products coming from China. On October 13, 2020, the CNNFoods shipped the samples from Hong Kong and 10 days later, the packet containing “paint pigment emulsion” arrived at our doorsteps.

The packet, of course, did not contain the item mentioned on the courier label. Instead it contained three plastic vials of F48 and F55. The F48 sample had a claimed fructose-glucose ratio of 0.95 while the F55 had a claimed ratio of 1.20.

The iron curtain of the honeygate had been breached. We now know how the honey fraud operates and we can tell you that these legitimate companies from China — with massive business interests and seemingly all over board — are engaged in selling sugar syrups that they confirm can beat all tests and they even tell you that their clients mix as much as 80 per cent syrup and pass it as honey.

CHINESE WHISPER

What is this Chinese technology that can “modify” sugar so that it is not detected?

CHINESE FIRMS claim that their syrups will make honey circumvent the advanced adulteration tests. How is it done? Industry circles talk about “resin technology” that is used to do this. But what is this technology all about?

Use of resin technology — a separation technique based on ion-exchange and adsorbents — is well-known in fruit juices. But its use in honey sector is relatively a new phenomenon, which is known to be led by the Chinese resin manufacturers. It is typically sold to help remove harmful substances. Sunresin, a pioneer in China, sells Seplite, a resin for bee honey purification and claims to help remove antibiotics, pesticides, fungicides and HMF (hydroxy-methylfurfural), an indicator of honey quality. The company website also claims resin technology will improve colour and extend the shelf life of honey.

But such resin-filtered honey is not considered honey by governments, experts and bee keepers. A 2018 EU Commission report of the technical round table on honey authentication identified resin treatment/ultrafiltration (followed by blending) as one of major types of frauds in the honey sector and noted that “synthetic resins are illegally used to remove substances (antibiotics, pesticides, etc) from honey”. A European Parliament resolution of March 2018 on prospects and challenges for the EU apiculture sector calls on the Commission to ban the distribution of resin-filtered honey as soon as possible, since such honey contains nothing whatsoever of biological value. It goes on to say that the 2002 chloramphenicol problem in honey was resolved by companies exporting honey from China not by complying with the rules but by using resin filters. Apimondia — the International Federation of Beekeepers’ Associations — in its January 2020 statement on honey fraud, noted that use of ion-exchange resins violate the Codex Standard of 1981 and the European Honey Council Directive 2001/110/EC (2001).

Clearly, such ultra-filtration renders the end product ineligible to be called as honey. It masks the geographic and botanical origin of the honey which not only helps in blending with desired honey and syrups but also makes it difficult to spot the problem. But does ultra-filtration also allow for sugar syrup to pass the laboratory test? If so, how? This is still not known. How does technology make plant-based sugars — from rice or sugarcane — hide their characteristics so that they can go undetected? Nobody knows. Or is willing to tell. Not yet.
Indian passage for adulteration

Manufacturing of adulterant syrups has begun closer home

  • We tracked down a factory in Jaspur, Uttarakhand that manufactures syrup to adulterate honey
  • We learnt that the code word for it is 'all pass' syrup
  • We made contact and procured a sample of this 'all pass' syrup
  • It will pass all stipulated tests for honey purity, said the owner

JASPUR IS a small municipality on the foothills of Himalayas in Uttarakhand’s Uddham Singh Nagar district. A handful of agro-processing units had propped up in recent years in this agriculture-dominant region. Nothing out of place about that. But the beekeepers we spoke to earlier to find the root of their problem — dipping honey prices because of adulteration — had mentioned Jaspur in many conversations.

We had also found leads in the import database pointing to Jaspur. There were names of companies and their owners, who had imported fructose syrup from China. These were all legitimate food processing businesses. But were these companies making the modified syrup in India now? So we decided to chase up the leads we got from the database and dialed some numbers.

Beekeepers had already told us that the syrup that is used to adulterate honey is referred to as “all pass” syrup — leaving it to nobody’s imagination that this syrup is one that would pass all Indian tests. We called the owner of one of these companies (Down To Earth has the details of the company and owner) and hit the jackpot.

After some cajoling, he told us that he did indeed make such “all pass” syrups and that we could buy it from him. An appointment was fixed for October 23, 2020.

We travelled to Jaspur. We said we needed low-cost magical syrup that could pass the C3 and C4 sugar tests. We learnt that the factory made syrups from rice and the basket of products was impressive — it included sorbitol, liquid glucose, invert sugar, rice proteins and finally (but not publicly said) high fructose syrups that could pass off as honey. We asked for 50 tonnes of F48 or F55 syrups, but what we wanted first was a sample that we could send to the laboratory and check if it passed the test for C3 and C4 sugars.

We were given a free sample of this “all pass” syrup, and told that when we place our order, we will be billed for honey. This was clever as it would mean that if caught, the company would simply brush off the allegations saying that we were sold honey and not “all pass” syrup — there was nothing like this in the official manifest.

The clincher was the price and, of course, our conversation. We got the syrup for Rs 68 per kg, slightly higher than what we were quoted on the phone (Rs 65 per kg). But we were assured that when we placed bulk orders, this price would be negotiated and brought down substantially.

We returned to Delhi with sample of this syrup. The company assured us that this would pass all tests, but not NMR.

It is said that there are at least half a dozen such factories across Uttar Pradesh, Uttarakhand and Punjab that are making these “all pass” syrups. It is still not clear what technology is used to make these modified syrups — that remains an exclusive Chinese whisper.

But what is clear is that Indian beekeepers will not be able to compete in this syrup business. Their minimum cost of production is over Rs 100 per kg; if even 50 per cent of the honey we consume is substituted with syrup, it will devastate the honey business, forget our health.

When we spiked honey with Chinese and Indian 'all-pass' syrups

If the samples passed the tests for purity, it would show that such syrups worked

  • We adulterated samples of pure honey
  • Mixed Chinese and Indian 'all pass' syrups at 25%, 50% and 75%
  • Sent samples to laboratory
  • Adulterated samples with 25% and 50% sugar syrup passed the test of purity
  • We confirm that sugar syrups exist that can bypass the 2020 FSSAI standard for honey 

  • ” syrups. The question was if the syrups would indeed pass the laboratory tests as claimed by the companies. We took raw honey and also honey that had passed tests in the Indian laboratory and “spiked” these bottles with syrup and sent it to the laboratory.
If the samples with the added sugar syrup passed the test, the experiment would confirm that honey could be adulterated and yet pass the stipulated purity tests for C3, C4 sugar. The toughest job was to procure what would be raw honey, without any adulteration. We wanted to get this directly from the source — so we travelled to Bharatpur in Rajasthan. 

There we met Om Prakash a 42-year-old beekeeper with about 1,400 bee boxes and also a storage facility to keep raw honey. Prakash told us that he knew about the adulteration of honey with sugary syrups and that he was also a victim. Prices had crashed and he was unable to run his business. He then gave us a bottle of raw and unprocessed honey, which he said had come from the nectar of ber plant (Ziziphus mauritania), sucked up by bees in Jaisalmer.



We then brought the sample to Delhi and scientists from CSE’s Environmental Monitoring Lab "mixed" the syrup in the raw honey and branded honey. In this way, raw and unadulterated honey was systematically mixed with Chinese and Indian syrups in different proportion using scientific tools and procedures. In total, we made 6 compositions using the two types of honey and three types of syrup.

We mixed the Indian and Chinese syrup in raw honey in different proportions — 25 and 50 per cent. We wanted to see how much adulteration would pass the test and so we mixed one sample with 75 per cent of the Chinese syrup. In the branded honey, we spiked with 25 and 50 per cent Chinese syrup.

We then sent bottles of these “adulterated” honey samples to Gujarat-based laboratory, Centre for Analysis and Learning in livestock and Food (CALF) of the National Dairy Development Board. We also sent the raw honey as a con trol sample.

The results confirmed our worst fears: All the samples (except one, which we had spiked with 75 per cent) passed. The samples passed the C3 test; they passed the C4 test; and even passed the tests for foreign oligosaccharides.

This showed that Indian and Chinese syrup were effective in hiding foreign sugars. And adulteration as high as 50 per cent went undetected. In other words, there is no longer a mystery here. Chinese companies and now Indian companies have the technology to modify sugar syrups so that they can be masked in the tests. We know also that up to 50 per cent can easily pass. Perhaps even more.

The fact that the 75 per cent adulterated sample failed, told us also that the laboratory had done the analytical tes ting with full care and professional integrity. It was not the laboratory that had passed the sample; but the honey had been passed because the adulterant could not be detected. The mastery has to be marveled. But this sophisticated method of adulteration has massive impact on our health — instead of nature’s wonder, honey, we are consuming sugar — 50 per cent or more of the honey could be sugar. This is bad for our health. No question about it.

Laboratory tests of honey we consume

Honey which passed Indian standards failed when tested using equipment that can detect modified sugar syrup

  • 13 top and smaller honey brands were selected
  • Most of the top brands passed the laboratory tests for Indian standards
  • Laboratory in India didn't find adulteration of C3 and C4 sugar in these brands
  • However, most of the smaller brands failed the laboratory tests for Indian standards
  • Adulteration with C4 sugar is most common
  • But when all samples were sent to a top laboratory in Germany, the picture changed
  • Many samples passed in India failed on the Trace Marker for Rice (TMR) test
  • Almost all samples failed on Nuclear Magnetic Resonance Spectroscopy (NMR) test. Laboratory said, "indicates adulteration/addition of sugar syrup"
  • Of the 13 brands only three brands passed
  • Of the 22 samples only five samples passed test. Rest were adulterated

IT WAS now critical to understand the nature and extent of adulteration of honey sold to us and that we consumed.

So, in August 2020 we collected eight brands of processed honey that are typically available in the retail shops and commonly advertised. These samples were collected from stores in Delhi. These samples were sent for laboratory test to the Centre for Analysis and Learning in Livestock and Food (CALF) at National Dairy Development Board (NDDB) in Gujarat — which has a state of art facility for testing honey for all parameters set by FSSAI. The samples were to be tested as per the 2020 honey quality standards — to check for C4, C3 sugars, foreign oligosaccharides, specific rice marker (SMR).

The testing of honey for its purity is not a simple business. The laboratory uses different methods to check for adulteration. But what is clear is that if the sample fails on any of the parameters then it fails the adulteration test (see “Testing methodology...”,).

THE RESULTS CAME IN

All the samples passed the C4 sugar test; and test for C3 sugar. Only one brand — Apis Himalaya Honey — failed the test on foreign oligosaccharides and SMR — indicating possible adulteration with rice syrup.

As per these tests, which would meet the standards set by FSSAI, it could be said that there is no significant adulteration in the honey we consume.

We decided to get additional brands tested — this time we bought five more brands — smaller and more niche. These were sent to the same lab for testing on the same parameters. This time the results were more varied. In three of the five honey samples there was evidence of adulteration.

Therefore, what was clear that there were stark differences in the honey that we tested.

The big companies with large brand values and market share (except for Apis Himalaya Honey) all passed the tests for C3 and C4 sugar.

Three of the smaller honey brands, namely Dadev, Hi Honey and Societe Naturelle failed on the C4 test and also on the isotope testing. However, they passed on the foreign oligosaccharides and specific marker for rice (SMR). This indicates that the samples were indeed adulterated, but may not be with rice syrup or C3 plant syrups but with simple cane sugar. Dadev and Hi Honey had 20 and 27 per cent C4 sugar — when the limit is 7 per cent.

The samples of Dadev, Indigenous, Hi Honey and Societe Naturelle are labelled as raw (unprocessed) honey, which makes it all the more worrying to see that three of the four were found adulterated with addition of sugar syrup.

NOT THE END (YET)

We were not satisfied that honey sold to us and that we consumed for good health was not adulterated.

Our ongoing investigations were unravelling the following:

  • That Chinese companies had sugar syrups that they said would pass the C3/C4 tests; we had not only found the information as advertised on online trading website, but had even contacted these companies and procured samples of this modified sugar syrup.
  • We had found an Indian link – company that was able to supply the “all-pass” syrup that would be able to beat the FSSAI mandated tests for purity.
  • We had procured samples of the “all-pass” Chinese and Indian syrups and when we “spiked” honey samples with these syrups, these were not detected by the laboratory. So, now we had confirmed that such syrups existed and these could indeed mask the addition of foreign sugar in natural honey.
    Therefore, we could not say anymore that honey that had passed the tests is not-adulterated. We needed to confirm this.

    To check we decided to get the same samples, of the same batch, tested using what is considered the gold-standard for detecting adulteration through Nuclear Magnetic Resonance Spectroscopy (NMR). The Indian government had already mandated this test for honey that would be exported. Also, big companies like Dabur and Saffola were telling consumers that they were getting their products NMR tested and certified. Our research told us that this was one of the technologies governments across the world were using to detect adulteration — particularly if the sugar syrup could pass the C3/C4 tests.

    We looked for laboratories in India that would do this test for us. But there was only one — Export Inspection Council (EIC) near Mumbai that had this equipment and it was not open for us to send samples.

    On further investigation we found a laboratory in Germany, which has specialised in testing for honey adulteration, including through the use of NMR. We decided to send the samples there. We located the Indian counterpart of the renowned German food testing laboratory and they accepted taking samples — these were then sent to Germany for analysis. We sent the samples from the same batch of 13 brands that we had got tested in India.

    We added to this lot two additional samples of different batches from Dabur and Saffola. We did this because these two brands were advertising that each batch of their product was NMR tested. And so it would be important to get two more samples of different batches tested in their case.

    Therefore, we sent 17 samples to Germany in this lot.

    As the results came in (please read on to find out more) we also decided to send additional samples from major companies that had failed NMR in the first round. We wanted to give these companies another chance — call it further reconfirmation. These companies were Patanjali, Baidyanath, Zandu, Nature’s Nectar and Indigenous.

    All in all, we sent 22 samples to the German laboratory.

    The German laboratory was told that the origin of the samples was India and that test would need to check for non-EU compliance — in other words, the honey sample would be tested against the less stringent parameters set outside the EU.

    All honey samples were tested for the following:

THE RESULTS

What we found was shocking.

  • Dabur honey passed tests for C3 and C4 sugar, but failed the NMR tests on all three samples. In one sample it also failed on TMR.
  • Patanjali honey passed tests for C3 and C4 sugar, but failed TMR and NMR tests on both samples.
  • Apis Himalaya failed the foreign oligo-saccharides and SMR (done in India) and also failed the TMR and NMR tests.
  • Baidyanath honey passed tests for C3 and C4 sugar, but failed on NMR. In one sample it also failed on TMR.
  • Zandu honey passed tests for C3 and C4 sugar and for TMR but failed on NMR.
  • Nature’s Nectar passed tests for C3 and C4 sugar. One sample failed NMR and one sample passed NMR.
  • Hitkari passed tests for C3 and C4 sugar but failed on TMR and NMR.
  • Saffola honey passed tests for C3 and C4 sugar and passed on TMR and NMR.
  • Markfed Sohna passed tests for C3 and C4 sugar and passed on TMR and NMR.
  • Dadev forest honey failed tests for C4 sugar and failed on NMR. It passed on TMR.
  • Indigenous honey passed tests for C3 and C4 sugar and for TMR, but failed on NMR.
  • Hi Honey failed tests for C4 and failed on NMR. It passed on TMR.
  • Societe Naturelle honey failed tests for C4 and passed on TMR and NMR.

WHAT HAS EMERGED

  • Three brands out of 13 brands, namely Saffola, Markfed Sohna and Nature’s Nectar (one sample), passed all tests, including NMR.
  • Out of the 22 samples only five bottles passed nmr — 77 per cent of the samples failed the nmr test.
  • Two brands, Dadev and Hi Honey, failed C4 sugar syrup tests indicating that their adulteration was “basic” and not with the use of modified sugar syrup.

(See test results, “Honey is adulterated”,).

TESTING METHODOLOGY FOR SUGARS IN HONEY



ISOTOPE TESTING (all three delta tests — max, p-h, fru-glu) is done to calculate C4 and C3 sugars. The method used is isotope ratio mass spectrometry (IRMS) to determine the sugar — but with small variation. For C4 sugar analysis, laboratories do elemental analysis (EA) and for C3 sugar they use liquid chromatography (LC). But it is the "nature" of the sugar type that only C4 sugar can be quantified as carbon 12,13 ratios of corn is available and used. FSSAI 2020 standard for checking the purity of honey is based on isotope testing.

Test for foreign oligosaccharides check for starch-based sugars (that is, polysaccharides from rice, wheat, corn). This is about starch-based sugar, which can be from corn or rice. Therefore, if a sample fails on foreign oligosaccharides, it would mean adulteration by either C3 or C4 sugar, but starch-based sugar. Therefore, cane sugar or beet sugar, which are not starch-based, would not be detected in this test.

Then there are two markers for identifying rice syrup adulteration. There are tests for Specific Marker for Rice (SMR) i.e. 2-AFGP and Trace Marker for Rice (TMR) conducted to check for the presence of the markers in the sample. If these are found then would mean the sample is adulterated with rice syrup (C3 sugar).

The nature of sugar is complex and there is interaction between the different sugar types so this is why it is important to take the results together. It is accepted that if a sample fails on any of the above tests then it shows it is adulterated by either C3 or C4 sugar. However, if the sample fails on SMR and TMR, then we do know that the source of the sugar is rice syrup.

WHAT DO WE CONCLUDE FROM THESE RESULTS?

With these results, the dots we started joining when we were told of the loss of livelihood of beekeepers because of adulteration of honey with sugar syrup had come full circle.

We can now conclude with certainty that much of the honey we consume is adulterated. Of the 13 brands — and these include all the top sellers — only three have products that can be termed as not adulterated.

The business of adulteration is sophisticated. It uses sugar syrups that are “modified” so that these cannot be detected using the laboratory tests that are mandated and done typically to check this adulteration.

The syrups are imported from China and are now also manufactured in India. The companies claim that even if up to 80 per cent of the honey is adulterated using the syrup will go undetected by the laboratory. The tests we got done have confirmed that up to 50 per cent adulteration is certainly possible and it will pass the laboratory scrutiny. Therefore, the quantum of adulteration with sugar syrup in the honey bottle could be 50 per cent or above.

We also know that the economics works in favour of the adulterant — it is cheaper to use (R60 per kg) as compared to the cost of true honey — R120 per kg is the cost that beekeepers need to meet basic needs. It is also so much easier — the syrup can be bought in bulk and used in this hot-selling item — as against the supply chain that would need to work with beekeepers who would in turn work with the supply of nectar from seasonal flowers. We know that honey is nature’s bounty and that beekeepers go place to place in search for the flowers that the bees then suck and bring us the goodness in the form of honey.

The adulteration business has also evolved, we know. From the addition of simple cane sugar; to more evolved sugars of rice (C3) and now to the modified sugars that can pass tests. The big-brand honey Indians are consuming has already caught up with the modified sugar syrup business. The big brands pass the standards set by FSSAI in 2018 and 2020. The NMR technique is the only way to check for this modified syrup.

And these tests show that 77 per cent of the honey was found adulterated. The German laboratory in its analysis report for the samples that have failed NMR says: “Indicates adulteration/addition of sugar syrup.”

But it is also clear that this is not the end of the honey adulteration story; very soon there will be another adulterant in the market — this time it will even pass the NMR test. Therefore, what we need is to understand the impact on our health of this sugar-laden honey and demand that there is change — this is about our bodies, our health and in the time of COVID-19 it is a double-triple jeopardy. This is not acceptable.

Immunity booster or buster?

What makes honey special and why honey adulterated with sugar is bad

  • Honey is sugar but a special one, full of nature’s goodness
  • We are consuming more honey to build immunity against the COVID-19 infection
  • Overweight people are more at risk to COVID-19
  • So consuming honey that is sugar will make us more vulnerable; more ill
THE QUESTION for us as consumers is simple: does it make a difference if the honey we are consuming is actually sugar? For this, we need to understand the following. What are the honey’s special properties that differentiate it from sugar? What will it do to our health if we have sugar, instead of honey? Does it have implications, particularly in this time of COVID-19?

What we know today also is that honey brands are “selling” their products as immunity boosters, good for us to beat COVID-19. We also know that we are consuming more honey — market analysts Nielsen reported in March 2020, that sales of this goodness product were booming. Honey sales were up by 35 per cent. Since then, it is expected that many more of us are consuming honey because of its goodness, so essential when we know we need protection from the virus.

WHAT MAKES HONEY DIFFERENT



Honey is sugar, but it is special. One tablespoon of honey (21 grams) contains slightly higher calories than sugar. It mainly comprises sugar carbohydrates, which are glucose and fructose.

But the “sugar” of honey is transformed to goodness because of the way the bees collect it from the sweet nectar of plants and how they “manufacture” it in the beehives. Bees consume, digest and regurgitate the nectar and it is this that makes it so beneficial for us. Honey is then not about the “sugar”, but the enzymes, amino acids, phenolic compounds like flavonoids, minerals and other phyto-chemicals. It is these that give honey antioxidant, antimicrobial, anti-inflam-matory properties. Honey is scientifically proven to be good for our immune system and improves our well-being.

This is why starting your day with honey in warm water is well advised. It provides us the ability to manage the oxidative stress that results from life-style, dietary and environmental strain. This oxidative stress is the reason for cellular degeneration that results in several chronic ailments such as metabolic and cardiovascular diseases as well as aging. In addition, honey is also known for gut health.

A SUGAR-COATED HOAX

Now, imagine starting your day with a shot of sugar syrup! Even if the honey you are consuming is adulterated with 50 per cent sugar syrup, it means you are getting empty calories without any benefits. It will do you harm. Not good.

Now let’s consider this during COVID-19. It is sheer poison. We are not getting what will protect us from the virus, by improving our overall health and immunity. But worse, we are consuming honey with sugar syrup, which puts us in the danger of adding weight and will make us more vulnerable to the virus attack.

In the US, the Centers for Disease Control and Prevention (CDC) has said that people with even moderately excess weight may have increased risks of severe COVID-19 infection. This has expanded the risk to larger numbers of people, who may not be declared “obese” but are “over-weight” — weight that is greater than what is considered healthy for certain height.

In the initial months of the COVID-19 pandemic, it was not clear why weight was linked to the risk of the disease and its virulence. But as months have gone by, this connection is now clear. One link is with the adipose tissue — the fat in our bodies — that is now understood to be biologically active and promotes low-intensity chronic inflammation in the body, even without infection. This makes our body more immune suppressed and more vulnerable to coronavirus diseases. Then there is the problem of abdominal obesity, which adds stress to the lungs. Studies are suggesting that the epidemic of obesity and COVID-19 can be viewed as a syndemic, as they negatively interact with one another to exacerbate the course of diseases, leading to greater complications and severe illness. Together they create a simultaneous and significant burden on the health system.

In this way, consuming honey laced with sugar, will make us all more likely to fall into the obesity trap — and this when Indians already have a huge burden of obesity on their hands. We also know that obesity is the primary trigger for hypertension, type-2 diabetes and many chronic ailments. India is on the path of becoming an obesity capital of the world — overweight and obesity levels among 15-49-year-old populations have doubled in a decade. In the urban areas, about one-third of the population is overweight and or obese.

This makes it all the more deadly. We are consuming honey — more of it during in these days to fight the COVID-19 infection. But the honey adulterated with sugar will not make us well. It will make us even more vulnerable to COVID-19. It is a double jeopardy.

BEES ARE NEEDED, NOT JUST FOR HONEY...
... but to produce our daily foods

A WORLD without bees would be much a world without food — literally. The fact is bees are important, not just for the honey they give us, but for their “services” as pollinators. As they move from plant to plant, sucking the nectar of flowers, they also spread pollen. Fertility in the ecosystem is dependent on bees. In addition to increasing crop yield through cross pollination, honeybees also increase the biodiversity through pollination and perpetuation of a whole lot of plants in this world, wild or cultivated, in farm fields or forests.

The Food and Agriculture Organization estimates that pollinators affect 35 per cent of the world’s crop production, increasing outputs of 87 of the leading food crops worldwide, plus many plant-derived medicines.

In this way, the livelihood of the beekeeper is intertwined with the food we eat. If the beekeeper goes out of business because honey is adulterated, then food will be under threat. Without the bee, we lose much more than the goodness of honey; we lose productivity of our ecosystem itself. We lose life.
We need pure honey



It is time we outwitted the business of adulteration. This requires government to act decisively. It needs industry to be made responsible. It needs consumers to be made aware of the purity of the honey they consume. This demands change

IT IS critical that the business of honey adulteration is stopped at the earliest. It will not only benefit the consumer, but also the beekeeper. It will also go a long way in helping restore and regain agriculture productivity and biodiversity. This is because beekeeping is not just about our honey, it’s also about protecting the pollinator bees. But to make this happen, we need aggressive and concerted action — by government, industry and consumers. Nothing less will do.

FIRST: Stop import of syrups and honey from China and do not allow this to come through other countries (syrup laundering)

The much-needed first step is to plug the source and routes of adulteration from China. The Union Ministry of Commerce and Industry should either regulate the imports of all kinds of syrups and honey or stop it completely. Regulation would need end-use declaration by traders; and links with the honey sector. The ministry should also ascertain that all syrups and honey are imported under the appropriate HS codes and updated database is available publicly. If required, new HS codes could be developed.

However, in our experience, government agencies are completely unable to stop this deviant trade. We have seen how FSSAI has fumbled to check import; it has even got the names of the syrups wrong; it has not been able to check the end users. We also know that this business has a legitimate face — the websites of the Chinese companies do not proclaim their side business of modified syrup. The importers of this syrup will also not say that they are buying syrup that can bypass the lab tests. They will simply say that they are importing fructose or glucose syrup, which has many industrial uses, including honey.

Catching the underbelly of this honey business is tough. So, we would argue that the government stops their imports. It begins the clean-up.

However, we recognise that this will not be enough. Already, the Chinese technology has found roots in India — we discovered one factory that can make this “all pass” syrup. There will be many others ready to replace the Chinese imports. So, we need to do more.

SECOND: Strengthen enforcement in India through tightened standards, testing, but also traceability. Every honey selling company must be required to be able to trace back the origins of the honey — from the beekeeper to the hive.

There is no doubt that the honey industry will argue that they are all within the law — most of the honey samples of the big brands cleared the tests as laid down in India. But they are adulterated as advanced laboratory tests revealed.

To check this, there are three ways:

One, to further tighten standards and testing requirements for honey. To do this, FSSAI would need to include testing for Trace Marker for Rice (TMR) syrup — incidentally this is the parameter FSSAI dropped from the standard between the 2018 and 2020 revisions. It would also need to mandate the use of nuclear magnetic resonance (NMR), which is already being done for honey for export.

However, this approach will have limited results over time. We have seen how the industry has evolved methods of adulteration. Already there is news that Chinese companies have “designed” syrups to beat NMR as well. As soon as NMR gets mandated, it is possible NMR-pass syrups will be used.

Two, and in our view a preferred option, is to test and make data available publicly. FSSAI must be required to buy samples from the market and disclose the results in the public domain and take punitive action against companies selling adulterated honey or those making misleading test-related claims. So, even, if TMR and NMR are not made mandatory, it must be made part of the official testing system — which is public and is done to protect consumer health.

Third, and much more critical, is the food-system approach. To do this, we need a system of traceability and transparency across the honey supply chain. Every honey producer must know their bees — the botanical source of all honey produced along with the geographical location of the apiary should be traceable to the stakeholders, including the consumer. Each entity in the supply chain such as the collector, trader, packer or seller should keep a record of required details which should be open for inspection. This can also happen if each beekeeper is registered and each beehive is numbered, coded and its location can be figured out using the technology. While the companies selling honey should be liable for the traceability of honey sold by them, the government, in parallel, should also have its own system to trace all honey produced by beekeepers in the country.

This is where we are the weakest today. We do not even have accurate data on total honey production in the country. This, in spite of the number of governmental agencies that are involved in the bee business (see “Clueless”).

But this will not work to safeguard our health. We need, not just traceability of the honey produced to the bee, but also a national reference database of pure honey. This would allow for documentation of the chemical and biological properties of different honey types and check for adulteration.

THIRD: We consumers must really “know” our honey; we must be able to tell adulteration by the taste, the smell and the colour. We must demand pure; not refined honey that can be any syrup

It is the preference of the consumer which is shaping-up the business of adulteration. We make a choice for a clear looking liquid honey that does not crystallise. This is why adulterated honey thrives. We must know that a honey which does not crystallise is no guarantee of a pure honey. In fact, crystallisation in honey is a natural phenomena, and the occurrence of which is minimised by processing of honey in factories. Our poorly informed choice helps the industry to freely adulterate with filtered colourless syrups. If we demand a different product, then the honey producing companies will have one less reason to adulterate the honey. Else, it is like a self-goal by all of us — ignorance and trust is not bliss in this case.

We have to demand the change; we have to hold government and industry responsible. Remember there is just too much at stake here. It is about our health, but it is also about the health of our food system — without bees, there will be no agricultural productivity.

CLUELESS



The data on honey products is weak and so regulation is weak

THE NATIONAL Bee Board (NBB) is responsible for enhancing honey productivity and livelihood of beekeepers in India. It says that the total honey produced in India was 115,000 Metric Tonnes (MT) in 2018-19. On the other hand, the database of the Food and Agriculture Organization (FAO) of the United Nations shows that India produced about 67,500 MT of honey in the same year. The NBB estimates are 1.7 times of those given by FAO. Such a high difference points towards some fundamental problems in collecting and calculating production data.

A look at the historical numbers of NBB also suggest that the numbers saw a much sharper rise from 2013-14 onwards than before. For example, from 62,000 MT in 2007-08 to 72,300 MT in 2012-13, the yearly growth rate was in the range of 0-4.8 per cent. Whereas, from 76,200 MT in 2013-14 to the latest figures for 2018-19, the yearly figures grew in the range of 5.3-11.1 per cent.

The June 2019 report of the Beekeeping Development Committee, chaired by Bibek Debroy, chairperson of the Prime Minister’s Economic Council had observed that NBB production data is based on estimates obtained from leading beekeepers in various states which are pooled and expressed.

The report noted that data on honey production is not scientifically collected and needs a systematic approach and that the discrepancy in the NBB and FAO data needs to be scientifically verified. The report mentioned that a better way of estimating honey production would be to find out the number of beekeepers, number of managed bee hives and colonies, number of wild honey bee hives, estimates of feral colonies of domesticated hive bees, actual honey extracted, which will help to get a more accurate estimate of honey production in India.

In the event of no actual figures, it becomes almost impossible to ascertain the scale of adulterated honey in the market, something which is a must to fix the entire issue of honey fraud. It also becomes impossible to design systems of traceability — knowing the bee is as important as consuming the honey.