16 January 2012

Hell’s Boilers : It’s time to banish the belief that N-power is clean, green and safe

Fissile Argument
  • The N-industry calls nuclear energy “clean and green”
  • Being taken in by this poses a global danger—to ecology, health, and economies
  • Money would be better spent on R&D in renewable energy
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The nuclear power industry has been resurrected over the past decade by a lobbying campaign that has left many people believing it to be a clean, green, emission-free alternative to fossil fuels. These beliefs pose an extraordinary threat to global public health and encourage a major financial drain on national economies and taxpayers. The commitment to nuclear power as an environmentally safe energy source has also stifled the mass development of alternative technologies that are far cheaper, safer and almost emission-free—the future for global energy.

When the Fukushima Daiichi reactors suffered meltdowns in March, literally in the backyard of an unsuspecting public, the stark reality that the risks of nuclear power far outweigh any benefits should have become clear to the world. As the old quip goes, “Nuclear power is one hell of a way to boil water.”
Instead, the nuclear industry has used the disaster to increase its already extensive lobbying efforts. A few nations vowed to phase out nuclear energy after the disaster. But many others have remained steadfast in their commitment to using nuclear power.

That has left millions of innocent people unaware that they—all of us—may face a medical catastrophe beyond all proportions in the wake of Fukushima through the continued widespread use of nuclear energy.

The world was warned of the dangers of nuclear accidents 25 years ago, when Chernobyl exploded and lofted radioactive poisons into the atmosphere. Those poisons “rained out”, creating hot spots over the northern hemisphere. Research by scientists in eastern Europe, collected and published by the New York Academy of Sciences, estimates that 40 per cent of the European landmass is now contaminated with caesium-137 and other radioactive poisons that will concentrate in food for hundreds to thousands of years.

Wide areas of Asia—from Turkey to China—the United Arab Emirates, north Africa and north America are also contaminated. Nearly 200 million people remain exposed.

That research estimated that by now close to a million people have died of causes linked to the Chernobyl disaster. They perished from cancers, congenital deformities, immune deficiencies, infections, cardiovascular diseases, endocrine abnormalities and radiation-induced factors that increased infant mortality. Studies in Belarus found that in 2000, 14 years after the Chernobyl disaster, fewer than 20 per cent of the children were considered “practically healthy”, compared to 90 per cent before Chernobyl.

Now, Fukushima has been called the second-worst nuclear disaster after Chernobyl. Much is still uncertain about the long-term consequences of this disaster. Fukushima may well be on par with or even far exceed Chernobyl in terms of the effects on public health, as new information becomes available. The crisis is ongoing; the plant remains unstable and radiation emissions continue into the air and water.

Recent monitoring by citizens’ groups, international organisations and the US government have found dangerous hotspots in Tokyo and other areas. The Japanese government, meanwhile, in late September lifted evacuation advisories for some areas near the damaged plant—even though high levels of radiation remained. The government estimated that it will spend at least $13 billion to clean up contamination.

 
Illustration by Leandro Lima
Many thousands of people continue to inhabit areas that are highly contaminated, particularly northwest of Fukushima. Radioactive elements have been deposited throughout northern Japan, found in tap water in Tokyo and concentrated in tea, beef, rice and other food. In one of the few studies on human contamination in the months following the accident, over half the more than 1,000 children whose thyroids were monitored in Fukushima city were found to be contaminated with iodine-131—this means many of them are condemned to thyroid cancer years from now. Children are innately sensitive to the carcinogenic effects of radiation, foetuses even more so.

Like the Chernobyl meltdown, the accident at Fukushima, too, is of global proportions.



True green and clean solutions for providing energy do exist. They lie in a combination of conservation and using renewable sources through smart-grids.

Unusual levels of radiation have been discovered in British Columbia, along the west and east coasts of the US and in Europe, and heavy contamination has been found in oceanic waters.

Fukushima is classified as a Grade-7 accident on the International Atomic Energy Agency scale, denoting “widespread health and environmental effects”. That is the same severity as Chernobyl, the only other Grade-7 accident in history, but such disaster measurement is hazy: there is no higher number on the agency’s scale.

After the accident, lobbying groups touted improved safety at nuclear installations globally. In Japan, the Tokyo Electric Power Co, which operates the Fukushima Daiichi reactors, and the government have sought to control the reporting of negative stories via telecom companies and internet service providers.

In Britain, The Guardian reported that days after the tsunami, companies with interests in nuclear power—Areva, EDF Energy and Westinghouse—worked with the government to downplay the accident, fearing setbacks on plans for new nuclear power plants.

Nuclear power has always been the nefarious Trojan horse for the weapons industry, and effective publicity campaigns are a hallmark of both industries. The concept of nuclear electricity was conceived in the early 1950s as a way to make the public more comfortable with the US development of nuclear weapons. “The atomic bomb will be accepted far more readily if at the same time atomic energy is being used for constructive ends,” a consultant to the Defense Department Psychological Strategy Board, Stefan Possony, suggested.

The phrase ‘Atoms for Peace’ was popularised by President Dwight Eisenhower in the early 1950s.

Nuclear power and nuclear weapons are one and the same technology. A 1,000-MW nuclear reactor generates 600 pounds or so of plutonium per year: an atomic bomb requires a fraction of that amount for fuel, and plutonium remains radioactive for 2,50,000 years. Therefore, every country with a nuclear power plant also has a bomb factory with unlimited potential.

The nuclear power industry sets an unforgivable precedent by exporting nuclear technology—bomb factories—to dozens of non-nuclear nations.

Why is nuclear power still viable, after we’ve witnessed catastrophic accidents, enormous financial outlays, weapons proliferation and nuclear-waste-induced epidemics of cancers and genetic disease for generations to come? Simply put, many government and other officials believe the nuclear industry mantra: safe, clean and green. And the public is not educated on the issue.

There are some signs of change. Germany will phase out nuclear power by 2022. Italy and Switzerland have decided against it, and anti-nuclear advocates in Japan have gained traction. China remains cautious on nuclear power. Yet the nuclear enthusiasm of the United States, Britain, Russia and Canada continues unabated. The industry, meanwhile, has promoted new modular and ‘advanced’ reactors as better alternatives to traditional reactors. They are, however, subject to the very same risks—accidents, terrorist attacks, human error—as the traditional reactors. Many also create fissile material for bombs as well as the legacy of radioactive waste.

True green, clean, nearly emission-free solutions exist for providing energy. They lie in a combination of conservation and renewable energy sources—mainly wind, solar and geothermal, hydropower plants and biomass from algae. A smart-grid could make possible the integration of consuming and producing devices, allowing flexible operation of household appliances. The problem of intermittent power can be solved by storing energy using available technologies.

Millions of jobs can be created by replacing nuclear power with nationally integrated, renewable energy systems. In the United States alone, this project could be paid for by the $180 billion currently allocated for nuclear weapons programmes over the next decade. In fact, there would be no need for new weapons if the Russian and American nuclear arsenals—95 per cent of the estimated 20,500 nuclear weapons globally—are abolished.

Advocates of nuclear energy often paint those who oppose them as Luddites who are afraid of, or do not understand, modern technology, or as hysterics who disproportionately exaggerate the dangers of nuclear power. One might recall the sustained attack over many decades by the tobacco industry upon the medical profession—a profession that revealed the grave health dangers induced by smoking. Smoking, broadly speaking, only kills the smoker, active or passive. Nuclear power bequeaths morbidity and mortality—epidemics of disease—to all future generations. The millions of lives lost to smoking in the era before the health risks of cigarettes were widely exposed will be minuscule compared to the medical catastrophe we face through the continued use of nuclear power.

Let’s use this extraordinary moment to convince governments and others to move toward a nuclear-free world. Let’s prove that informed democracies will behave in a responsible fashion.

-Dr. Helen Caldicott

(Helen Caldicott, Paediatrician, founder-president, Physicians for Social Responsibility, anti-nuclear activist)

Courtesy: Outlook Magazine, Jan 02, 2012

14 January 2012

Deaths confirm cancer risk near (Kalpakkam) N-reactors - DNA investigations

After being in denial for years, the department of atomic energy (DAE) has for the first time admitted that the deaths of its employees at the Kalpakkam nuclear site and their dependents were because of multiple myeloma, a rare form of bone marrow cancer linked to nuclear radiation.

In response to a Right to Information (RTI) query in October last year, the DAE said nine people, including three employees working at the Kalpakkam atomic reactor, about 70km from Chennai, died of multiple myeloma and bone cancer between 1995 and 2011. The department had earlier refused to divulge information despite an RTI query in 2010.

The risk to the lives of people working at the nuclear facilities at Kalpakkam came to the fore in 2003 when two of its employees — Mohandas and Ponniah — working at the reactor died of multiple myeloma after being exposed to nuclear radiation. DAE officials then denied that the deaths were because of overexposure to radiation.

While two people were detected with multiple myeloma when they were working at the reactor, another was found to have the rare form of bone marrow cancer after retirement. The RTI query revealed that 14 people, including 11 family members of employees at Kalpakkam nuclear facilities, have been detected with multiple myeloma and bone cancer between 1995 and 2011.

Bhabha Atomic Research Centre (BARC) officials, however, claim that there have been no deaths due to exposure to radiation at Kalpakkam. They even said the figure of people affected by radiation at the nuclear facilities was lesser than the national average of 1-4 per 1 lakh people.

“The figure of three employees at Kalpakkam having multiple myeloma during 16-17 years is not higher than the normal prevalence of such form of cancer among others, in India or abroad,” BARC said in its response.
Experts, however, said it was a faulty comparison and that it was not possible to compare such sensitive data to the national average. As per international standards, cancer cases because of radiation are computed by comparing people living in proximate villages to those living in villages far away from the nuclear facilities, said Dr V Pugazhenthi, a physician who has been practising in Kalpakkam for 20 years.

Going by international standards, a DAE-funded study by Dr Manjula Datta shows that the number of people in proximity to Kalpakkam nuclear facilities suffering from cancer is a cause of concern. DNA is in possession of the report that was never made public.

The report states that cancer cases in villages close to Kalpakkam are seven times higher (210 per 1 lakh people) compared to just (30 per 1 lakh people) in distant villages. Morbidity levels in areas near the nuclear reactor are 2-3 times higher than normal. The study covered 22 proximate villages (within 8km radius) and three distant villages (50km from the reactor site).

“Several cases of cancer due to nuclear radiation have come up in the vicinity of the Kalpakkam nuclear reactor, but they were never reported. Even when they were reported, the government refused to acknowledge them,” said VT Padmanabhan a researcher in health effects of radiation and member of the European Commission on Radiation Risk.

“Dr Datta’s report is one of the best independent surveys carried out to date. Going by its data, it is clear that radiation causes cancer.”

Data sought from the DAE under a separate RTI reveals as many as 244 Kalpakkam employees and their dependents were detected with various types of cancer between 1999 and 2009. Most people affected were in the 41-60 age group and included men as well as women. During 2000-2010, 19 cases of thyroid diseases were detected. Experts said thyroid diseases are common among people living in and around nuclear reactor sites.

BARC officials, however, said the 244 cancer cases and mortality rates among Kalpakkam employees were not different from those seen among the general population.

Nuclear Power Corporation of India Ltd officials did not respond to questions mailed by DNA to their official ids despite several reminders.

- Gangadhar S Patil