Showing posts with label Canada. Show all posts
Showing posts with label Canada. Show all posts

05 August 2011

Japan’s Fukushima catastrophe brings big radiation spikes to B.C.


Gordon Edwards, president of the Canadian Coalition for Nuclear Responsibility, says that while radiation coming from Fukushima will lead to higher cancer rates among Canadians, the risk posed to individuals is very small.
By Alex Roslin
After Japan’s Fukushima catastrophe, Canadian government officials reassured jittery Canadians that the radioactive plume billowing from the destroyed nuclear reactors posed zero health risks in this country.
In fact, there was reason to worry. Health Canada detected massive amounts of radioactive material from Fukushima in Canadian air in March and April at monitoring stations across the country.
The level of radioactive iodine spiked above the federal maximum allowed limit in the air at four of the five sites where Health Canada monitors levels of specific radioisotopes.
On March 18, seven days after an earthquake and tsunami triggered eventual nuclear meltdowns at the Fukushima Daiichi plant in Japan, the first radioactive material wafted over the Victoria suburb of Sidney on Vancouver Island.
For 22 days, a Health Canada monitoring station in Sidney detected iodine-131 levels in the air that were 61 percent above the government’s allowable limit. In Resolute Bay, Nunavut, the levels were 3.5 times the limit.
Meanwhile, government officials claimed there was nothing to worry about. “The quantities of radioactive materials reaching Canada as a result of the Japanese nuclear incident are very small and do not pose any health risk to Canadians,” Health Canada says on its website. “The very slight increases in radiation across the country have been smaller than the normal day-to-day fluctuations from background radiation.”
In fact, Health Canada’s own data shows this isn’t true. The iodine-131 level in the air in Sidney peaked at 3.6 millibecquerels per cubic metre on March 20. That’s more than 300 times higher than the background level, which is 0.01 or fewer millibecquerels per cubic metre.
“There have been massive radiation spikes in Canada because of Fukushima,” said Gordon Edwards, president of the Canadian Coalition for Nuclear Responsibility.
“The authorities don’t want people to have an understanding of this. The government of Canada tends to pooh-pooh the dangers of nuclear power because it is a promoter of nuclear energy and uranium sales.”
Edwards has advised the federal auditor-general’s office and the Ontario government on nuclear-power issues and is a math professor at Montreal’s Vanier College.
In a phone interview from his Montreal home, he said radiation from Fukushima will lead to higher rates of cancer and other diseases among Canadians. But don’t panic. Edwards cautioned that the risk is very small for any particular individual.
“It’s not the risk to an individual that’s the problem but how much society is at risk. When you are exposing millions of people to an insult, even if the average dose is quite small, we are going to see fatal health effects,” he said.
Some impacts may have already occurred in North America. Infant mortality in eight cities in the U.S. Northwest jumped 35 percent after Fukushima, according to an article by internist and toxicologist Janette Sherman and epidemiologist Joseph Mangano on the Counterpunch website in June. The number of infant deaths rose from 9.25 per week in the four weeks prior to March 19 to 12.5 per week in the following 10 weeks, according to U.S. Centers for Disease Control data.
“There has been a dismissiveness about the long-term hazards of nuclear power,” said Dr. Curren Warf, adolescent-medicine division head at B.C. Children’s Hospital.
Warf was on the board of the Nobel Peace Prize–winning U.S. antinuclear group Physicians for Social Responsibility before he moved to B.C. in 2009.
“These were some of the most advanced nuclear power plants in the world. But a natural earthquake and tsunami rendered their safety measures completely meaningless,” he said in a phone interview while on vacation in Tofino on Vancouver Island.
It’s not clear what health impacts British Columbians will face from the fallout from Fukushima, Warf said. But he added, “It should be a warning to Canada, the U.S., and the rest of the world about the vulnerability of nuclear power plants to natural catastrophes. These things have typically been dismissed in much of the planning.”
Dr. Erica Frank agrees. “The main concern I’ve had is we are not paying attention to Fukushima as a warning sign. Given the catastrophic long-term issues and what to do about nuclear waste, I had hoped it would be more of a wake-up [call] than it was,” said Frank, a professor of population and public health in UBC’s faculty of medicine and a past president of Physicians for Social Responsibility.
She called on Canada to follow Germany’s lead, which, in response to Fukushima, decided in May to phase out all of its nuclear power plants by 2022. “If Germany can do it, we can too,” she said in a phone interview from her Vancouver home.
With 450,000 people homeless, fallout across much of Japan, and a damages bill estimated at $300 billion, Fukushima is the “biggest industrial catastrophe in the history of mankind”, said U.S. nuclear-industry whistle blower Arnold Gundersen in a June 10 Al Jazeera story.
Even the Tokyo Electric Power Company, which owns the Fukushima plant, has acknowledged that the disaster may surpass the 1986 Chernobyl catastrophe. “The radiation leak has not stopped completely, and our concern is that the amount of leakage could eventually reach that of Chernobyl or exceed it,” a TEPCO official said in an April media release.
In the case of Chernobyl, radiation caused 985,000 deaths worldwide—including almost 170,000 in North America—between 1986 and 2004, according to a Russian study published by the New York Academy of Sciences in 2009. Fallout contaminated about 100,000 square kilometres of land. And 25 years later, five to seven percent of government spending in Ukraine is still devoted to dealing with the disaster’s health, environmental, and other after-effects.
The impacts of Fukushima are still in the earliest stages of being determined, especially since the nuclear plant is still spewing huge amounts of radiation. On Monday, TEPCO reported detecting record-high radiation levels at the plant—double the previous record set in early June. The new level—at least 10 sieverts (10,000 millisieverts) per hour—could cause death or incapacitation within a few seconds’ exposure.
Japan’s prime minister, Naoto Kan, said in July that decommissioning the plant would take “several decades”.
Fallout has contaminated food and water across Japan. In July, officials reported that Japanese consumers had eaten meat contaminated with radioactive material. Cattle feed at one farm had levels of radioactive cesium 57 times higher than the government ceiling.
Japanese investigators later determined that almost 3,000 cattle had eaten radioactive feed before being shipped to market. Prices of Japanese beef collapsed after 23 out of 274 beef samples exceeded government radiation limits.
In Tokyo, radioactive iodine in tap water reached double the government ceiling in March. Meanwhile, TEPCO reported in April that a seawater sample near the Fukushima plant contained 7.5 million times what was described as the legal amount of iodine-131.
TEPCO released 11,500 tons of radioactive water from its storage tanks into the Pacific Ocean on April 4.
One aspect of the fallout and seawater contamination that remains unclear is how it might affect fish stocks, especially migratory species like salmon that could pass through poisoned areas of the ocean, eat irradiated prey, or have radioactive water dumped in their home ranges by Pacific currents.
Of the five species of Pacific salmon that are native to western North America, the sockeye is the most commercially prized. It also has the most wide-ranging migration route through the North Pacific, swimming for two to three years—as far as just northeast of the top of Japan—before coming back to its natal streams in Alaska, B.C., and the U.S. Northwest.
This year’s returning sockeye are just starting to be caught off Vancouver Island’s west coast. So far, there is no word as to whether or not these fish will be tested. According to an April 17 story in the Anchorage Daily News, U.S. federal officials have already stated that there is no need to even test Alaskan salmon.
Across the Pacific Ocean, it took only a few days after the disaster for radioactive fallout to start showing up in drinking water and milk across North America. Governments in both Canada and the U.S. monitored the radioactivity, but their data is reported in such a confusing and irregular way that it’s extremely difficult to determine if maximum contamination levels have been exceeded and how public health is being impacted.
“It’s very, very difficult to interpret radiation levels detected from Fukushima and translate them into standards. It’s a nightmare,” said Arjun Makhijani, an electrical and nuclear engineer and president of the Takoma Park, Maryland–based Institute for Energy and Environmental Research, in a phone interview.
And that’s not a coincidence, said Vanier College’s Gordon Edwards. “To me, it’s a way of obscuring the impacts. It’s a smoke screen.”
Dale Dewar agrees. “The government always downgrades the results. They want to soft-pedal the extent of the accident because it will threaten our own nuclear industry,” said Dewar, a family physician and the executive director of Canadian antinuclear group Physicians for Global Survival, in a phone interview from her home near Wynyard, Saskatchewan.
One of the highest post-Fukushima radiation readings in North America came on March 27 in rainwater in Boise, Idaho. It contained 14.4 becquerels of iodine-131 per litre—130 times the U.S. Environmental Protection Agency’s maximum contamination level of 0.11 millibecquerels per litre.
EPA officials said in media reports that the high levels didn’t pose a health threat. For the agency to sound an alarm, it says, a person would have to exceed its maximum level for an entire year, drinking two litres of the contaminated water each day.
But nobody seemed to investigate how long the rainwater in Boise remained radioactive. Inexplicably, the EPA stopped monitoring Boise’s rainwater after the extremely high reading on March 27. The agency’s only other reading for the city was on March 22.
That day, the iodine-131 level hit nine becquerels per litre.
In fact, if the two readings are averaged out and stayed just as elevated over the entire six-day period from March 22 to 27, a person drinking the Boise rainwater during this time would have exceeded the EPA’s annual ceiling by 75 percent.
In B.C.’s Lower Mainland, iodine-131 in the rainwater hit almost the same level as in Boise. It also seems to have exceeded the EPA’s ceiling.
On March 19, the iodine-131 level in rainwater in Burnaby suddenly spiked from zero to nine becquerels per litre. The next day, it rose even further, to 13, according to data collected and released by Krzysztof Starosta, an associate professor of chemistry at SFU, and others.
The iodine-131 levels remained well above the background level (which is close to zero) for 12 days.
The average level of radioactive iodine was seven becquerels per litre over the 12 days. That means a person drinking two litres of the rainwater per day would have consumed 166 becquerels of iodine-131 during that period.
That’s more than double the maximum amount that the EPA says a person can drink in an entire year, which is 81 becquerels.
Starosta did not respond to phone and email messages seeking comment.
Starosta issued a statement on March 28 saying the levels were safe because they were lower than levels detected after the Chernobyl disaster.
“As of now, the levels we’re seeing are not harmful to humans. We’re basing this on Japanese studies following the Chernobyl incident in 1986 where levels of iodine-131 were four times higher than what we’ve detected in our rainwater so far,” the statement said.
The contaminated rainwater also didn’t spark concern from Canadian public-health officials. That’s in large part because Canadian standards are far more lenient on radioactive contamination than those of the EPA.
Canada allows six becquerels per litre of iodine-131 in drinking water—or 54 times more than the EPA. By the much higher Canadian ceiling, the rainwater in Burnaby was fine to drink.
At the B.C. Ministry of Health Services, spokeswoman Laura Neufeld referred questions about radiation monitoring to Health Canada. A Health Canada spokesperson, Stéphane Shank, didn’t return the Straight’s call. (Shank is the same Health Canada employee who did not return calls regarding a recent Straight story on nanoparticles.)
“It shows you these standards are not scientifically based,” Edwards said. “They’re arbitrary and really based on political considerations. We have a government strongly committed to the export of uranium and promotion of nuclear energy.”
And even if the radiation level in Burnaby didn’t hit the far higher Canadian ceiling, Edwards said, any amount of radiation can cause cancer and other illness. “To suggest that a certain level of radiation exposure is safe is untrue. It verges on misrepresentation. There is no evidence that there is any safe level of radiation exposure. It means you should operate as far below that level as you can,” he said.
Either way, without adequate monitoring, we may never know the impacts on Canadians.

From comments:
Ionizing radiation can break molecules, at a cellular level, causing unpredictable chemical reactions.

Think of vibrations breaking glass, that is what happens at a cellular level, in your body, from ionizing radiation.

Ionizing radiation is insidious, these large subatomic particles travel until they are stopped.

Your skin can easily stop them.

Once they are ingested, inhaled, or enter your body through a cut, their grotesque potent force cuts through your body like knife through butter, into the cells, blood or other organs, impacting other organs and leaving behind hideous, shocking damage.

A single alpha particle from Plutonium, Uranium, Americium or Radon can deliver a huge blast of radiation inside your body. This radiation energy can destroy your genetic material at a cellular level.

Once radionuclides are released into the environment they circulate and are carried with the winds until they become part of the soil and food chain. They land in our drinking water, are on the pastures that our livestock graze on, are on our vegetables and in our fruit trees.

This is particularly dangerous for humans because we are at the top of the food chain, where the higher concentrations of radionuclides are.

Most Common Diseases From Ionizing Radiation:

* leukemia
* lymphoma
* solid tumors or any organ
* bone & blood disorders
* lung cancer
* breast cancer
* endocrine disruption
* reproductive abnormalities
* accelerated aging process
* birth defects
* congenital malformations
* kidney, liver damage

These diseases and mutations don't stop with us. If ionizing radiation enters our genes, not only does it cause irreversible damage to this generation, but to future generations, as evidenced by children being born years after Chernobyl.

In Washington state, we've been detoxing and taking other precautions for ourselves, our animals and our soils since March 14. 

Because of the 31 radioactive elements spewing for almost 5 months, these precautions will continue for the rest of our lives.

Are you waiting for government permission to protect yourself?



Another comment:


a few things to note. 
1/ To Douglas Gray, the Hanford I know about is in south central Washington State and is the site of a huge nuclear waste and processing facility. It presents a danger to everyone in the area including southern BC. EPA radiation monitoring after Fukishima began at Richland Wa. next to Hanford on March 3 and ended March 31 after the levels went from 81 CPM(counts-per-minute) on the 30th to 277 CPM on the 31st.
2/ Health Canada operates(ed?) The Canadian Radiological Monitoring Network (CRMN) managed by the Radiation Surveillance and Health Assessment Division, Radiation Protection Bureau (RPB). Their online Monitoring Data stopped being posted for the only mainland BC station (Vancouver) three years ago or more. 
3/ There is no safe level of radiation exposure. If the normal background is increased by 20% that will likely cause 20% more radiation induced cancers in the population exposed. The idea of safe limits comes from the kind of thinking that brought us pesticide regulation. Pesticides are tested for toxicity on a given animal and the mortality is expressed as an LD50 number. This disregards the long term effects, mutagenic and more subtle nervous system damage. So with radiation dose they look at deaths from radiation poisoning: an extreme effect caused by massive exposure. Ionizing radiation can cause cell damage at any level, it just becomes more likely the higher the exposure.
I have been monitoring background radiation in the BC interior since Fukishima (with a couple of breaks) and you can see my data at http://lumbywatch.ca

01 June 2011

Who Will Take the Radioactive Rods from Fukushima?

By Yoichi Shimatsu
The inability of Tepco or the government to pay for nuclear waste disposal puts the financial liability squarely on its partner companies and suppliers, including GE, Toshiba, Hitachi, Kajima Construction and especially the sources of the uranium, CAMECO and Rio Tinto and the governments of Canada and Australia. A fundamental rule of both capitalism and civil law is that somebody has to pay.

URL of this article: www.globalresearch.ca/index.php?context=va&aid=25064


The decommissioning of the Fukushima 1 nuclear plant is delayed by a single problem: Where to dispose of the uranium fuel rods? Many of those rods are extremely radioactive and partially melted, and some contain highly lethal plutonium.
Besides the fissile fuel inside the plant's six reactors, more than 7 tons of spent rods have to be removed to a permanent storage site before workers can bury the  Fukushima facility under concrete. The rods cannot be permanently stored in Japan because the country's new waste  storage centers on the northeast tip of Honshu are built on unsuitable land. The floors of the Rokkasho reprocessing facility and Mutsu storage unit are cracked from uneven sinking into the boggy soil.

Entombment of the rods inside the Fukushima 1 reactors carries enormous risks because the footing of landfill  cannot support the weight of the fuel rods in addition to the reactors and cooling water inside the planned concrete containment walls. The less reactive spent fuel would have to be kept inside air-cooled dry casks. The powerful earthquakes that frequently strike the Tohoku region will eventually undermine the foundations, causing radioactive wastewater to pour unstoppably into the Pacific Ocean. The rods must therefore go to another country.

American Bad Faith
Under the Non-Proliferation Treaty (NPT), signed by Japan in 1970, Washington's negotiators stipulated that used nuclear fuel from Japanese reactors must by law be shipped to the United States for storage or reprocessing to prevent the development of an atomic bomb. Washington has been unable to fulfill its treaty obligations to Tokyo due to the public outcry against the proposed Yucca Mountain storage facility near Las Vegas.

A panel convened by the Obama administration has just recommended the set up of a network of storage sites across the United States, a controversy certain to revive the anti-nuclear sentiments during the upcoming election campaign. The American nuclear industry has its own stockpile of more than 60,000 tons of spent fuel - not counting waste from reactors used for military and research purposes - leaving no space for Fukushima's rods inside the Nevada disposal site, if indeed it is ever opened.

To Continental Asia
The Tokyo Electric Power Company (Tepco) has allocated 1 trillion yen ($12 billion) in funds for nuclear waste disposal. Areva, the French nuclear monopoly, has teamed up with Tepco to find an overseas storage site. So far, the Tepco-Areva team have quietly contacted three Asian countries - Kazakhstan, China and Mongolia -- to set up a center for "reprocessing", a euphemism for nuclear dump site.

Among the threesome, China was the top choice for the Japanese nuclear establishment, which has confidence in Beijing's ability to safeguard nuclear secrets from its citizenry and even from the top leaders. Japan's space agency, which keeps 24-hour satellite observation over every nuclear-related facility in China, possesses the entire record of radiation leaks there. Since Beijing withholds this sort of data from the public, the Japanese side felt it had the necessary leverage in talks with Chinese nuclear officials.

Though the nuclear-sector bureaucrats were initially eager to receive bundles of yen, the proposal was blown away by the salt craze that swept over China. Within a couple of weeks of the Fukushima meltdowns, millions of shoppers emptied supermarket shelves on rumors that iodized salt could prevent radiation-caused thyroid cancer. The Chinese public is rightfully fearful of health-related scandals after discoveries of melamine in milk, growth hormones in pork, pesticides in vegetables, antibiotics in fish and now radioactive fallout over farmland.

A nuclear disposal deal would require trucks loaded with radioactive cargo to roll through a densely populated port, perhaps Tianjin or Ningbo, in the dead of night. There is no way that secret shipments wouldn't be spotted by locals with smart phones, triggering a mass exodus from every city, town and village along the route to the dumping grounds in China's far west. Thus, the skittishness of the ordinary Chinese citizen knocked out the easiest of nefarious plans.

Principle of Industrial Recovery
A more logical choice for overseas storage is in the sparsely populated countries that supply uranium ore to Japan, particularly Australia and Canada. As exporters of uranium, Canberra and Ottawa are ultimately responsible for storage of the nuclear waste  under the legal principle of industrial recovery.

The practice of industrial recovery is already well-established in the consumer electronics and household appliances sectors where manufacturers are required by an increasing number of countries to take back and recycle used television sets, computers and refrigerators.

Under the principle, uranium mining giants like Rio Tinto and CAMECO would be required to take back depleted uranium. The cost of waste storage would then be factored into the export price for uranium ore. The added cost is passed along to utility companies and ultimately the consumer through a higher electricity rate. If the market refuses to bear the higher price for uranium as compared with other fuels, then nuclear power will go the way of the steam engine.

Australian and Canadian politicians are bound to opportunistically oppose the return of depleted uranium since any shipments from Fukushima would be met by a massive turnout of "not-in-my-backyard" protesters. The only way for Tokyo to convince  the local politicos to go along quietly is by threatening to publish an online list of the bribe-takers in parliament who had earlier backed uranium mining on behalf of the Japanese interests.

Nuclear's Cost-Efficiency
The question then arise whether nuclear power, when long-term storage fees are included, is competitive with investment in renewable energy such as wind, solar, hydro and tidal resources. Renewable energy probably has the edge since they don't create waste. Natural gas remains the undisputed price beater wherever it is available in abundance. In a free market without hidden subsidies, nuclear is probably doomed.

In a lapse of professionalism, the International Atomic Energy Commission (IAEA) has never seriously addressed nuclear-waste disposal as an industrywide issue. Based on the ration of spent rods to reactor fuel inside U.S. nuclear facilities, there are close to 200,000 metric tons of high-level nuclear waste at the 453 civilian nuclear-energy plants worldwide. Yet not a single permanent storage site has ever been opened anywhere.

The Fukushima 1 dilemma shows that the issues of cost-efficiency and technological viability can no longer be deferred or ignored. Ratings agencies report that Tepco's outstanding debt has soared beyond $90 billion, meaning that it cannot cover future costs of storing spent rods from its Kashiwazaki and Fukushima 2 nuclear plants. The Japanese government's debt has soared to 200 percent of GDP. Neither entity can afford the rising cost of nuclear power.

The inability of Tepco or the government to pay for nuclear waste disposal puts the financial liability squarely on its partner companies and suppliers, including GE, Toshiba, Hitachi, Kajima Construction and especially the sources of the uranium, CAMECO and Rio Tinto and the governments of Canada and Australia. A fundamental rule of both capitalism and civil law is that somebody has to pay.

Last Stop
Since Australia and Canada aren't in any hurry to take back the radioactive leftovers, that leaves Japan and treaty-partner United States with only one option for quick disposal- Mongolia.

Ulan Bator accepts open-pit mining for coal and copper, which are nothing but gigantic toxic sites, so why not take the melted-down nuclear rods? Its GDP, ranked 136 among the world's economies, is estimated to be $5.8 billion in 2010. Thus, $12 billion is an unimaginable sum for one more hole in the ground.

Not that Mongolia would get the entirety of the budget, since the nuclear cargo would have to transit through the Russian Far East. Unlike the health-conscious Chinese, the population of Nakhodka or Vladivostok are used to playing fast-and-loose with radioactive materials and vodka.

Even if the mafia that runs the Russian transport industry were to demand a disproportionate cut, Mongolia's 3 million inhabitants would be overjoyed at gaining about $2,000 each, more than the average annual income, that is if the money is divided evenly after the costs of building the dump.

Realistically, the Mongolian people are unlikely to receive a penny, since the money will go into a trust fund for maintenance costs. That's because $12 billion spread over the half-life of uranium - 700 million years - is equivalent to $17 in annual rent. That doesn't even cover kibble bits for the watchdog on duty, much less the cooling system. Not that anyone will be counting since by the time uranium decays to a safe level, fossils will be the sole remnant of human life on Earth.

Illusory, shortsighted greed will surely triumph in Mongolia, and that leaves a question of moral accountability for the rest of us. Will the world community feel remorse for dumping its nuclear mess onto an ancient culture that invented boiled mutton, fermented mare's milk and Genghis Khan? For guilt-ridden diplomats from Tokyo and Washington wheedling the dirty deal in Ulan Bator, here's the rebuttal: Did the national hero, the Great Khan, ever shed any tears or feel pangs of guilt? There's no need for soul-searching. A solution is at hand.

Yoichi Shimatsu, former editor of the Japan Times Weekly, is a Hong Kong-based environmental writer and also Editor-at-large at the 4th Media, China.

15 May 2011

The Fukushima Nuclear Disaster in Perspective by Dr. Helen Caldicott

http://dandelionsalad.wordpress.com/
by Dr. Helen Caldicott
Global Research
May 12, 2011
4.24 エネルギーシフトパレードin渋谷/Energy Shift Parade i...
Image by SandoCap via Flickr
Dr. Helen Caldicott’s March 18th press conference in 
Montreal, sponsored by the Centre for Research 
non Globalization (CRG) 

Our thanks to Felton Davis for the transcription from the GRTV Video recording and for the annotations.
This press conference organized by Global Research was held in the context of Helen Caldicott’s public lecture to Montreal on March 18, 2011.

First I want to present this report, produced by the New York Academy of Sciences, a report on Chernobyl. It can be downloaded.(2) They translated 5,000 articles from Russian for the first time into English. It seems that nearly a million people have already died as a result of Chernobyl, despite what the WH0(3) says and the IAEA.(4) This is one of the most monstrous cover-ups in the history of medicine. Because everybody should know about this.
Then we extrapolate through to Japan. Japan is by orders of magnitude many times worse than Chernobyl. Never in my life did I think that six nuclear reactors would be at risk.(5) I knew that three GE engineers who helped design these Mark I GE reactors, resigned because they knew they were dangerous.(6)
So Japan built them on an earthquake fault. The reactors partially withstood the earthquake, but the external electricity supply was cut off, and the electricity supplies the cooling water, a million gallons a minute, to each of those six reactors. Without the cooling water, the water [level] falls, and the rods are so hot they melt, like at Three Mile Island, and at Chernobyl.
So the emergency diesel generators, which are as large as a house, got destroyed by the tsunami, so there is no way to keep the water circulating in the reactors.(7) Also, on the roofs of the reactors, not within the containment vessel, are cooling pools. Every year they remove about thirty tons of the most radioactive rods that you can possibly imagine.(8) Each one is twelve feet long and half an inch thick. It gives out so much radiation, that if you stand next to it for a couple of minutes, you’ll die. Not drop dead. Remember Litvinenko, the Russian, who got poisoned by polonium?(9) You’ll die like that, with your hair falling out, and bleeding with massive infection, like AIDS patients die.
And [the spent fuel rods] are thermally hot, so they have to be put in a big pool, and continually cooled. The pool has really no roof.
There have been three hydrogen explosions, blowing off the roof of the building, not the containment vessel of the core, but the roof. And exposing the cooling pool.(10) Two of the cooling pools are dry. They have no water in them. Meaning that the nuclear fuel rods are covered with a material called zirconium. When zirconium is exposed to air, it burns, it ignites. Two of the cooling pools at this moment are burning. In the cooling pools are many times, like 10 to 20 times more radiation than in each reactor core. In each reactor core is as much long-lived radiation as would be produced by a thousand Hiroshima-sized bombs. We are dealing with diabolical energy.
E=MC2 is the energy that blows up nuclear bombs. Einstein said nuclear power is a hell of a way to boil water.(11) Because that is all nuclear power is used for, to boil water through the massive heat, turn it into steam, and turn a turbine which generates electricity.
Now when you fission uranium, 200 new elements are formed, all of which are much more poisonous to the body than the original uranium.(12) Although uranium is pretty poisonous. America used it in Fallujah, and in Baghdad. And in Fallujah, 80 per cent of the babies being born are grossly deformed.(13) They’re being born without brains, single eyes, no arms… The doctors have told the women to stop having babies. The incidence of childhood cancer has gone up about twelve times. This is genocide — it’s a nuclear war being conducted in Iraq. The uranium that they’re using lasts more than 4.5 billion years. So we’re contaminating the cradle of civilization. “The coalition of the willing!”
In the nuclear power plants, however, there is a huge amount of radiation: two hundred elements. Some last seconds, some last millions of years. Radioactive iodine lasts six weeks, causes thyroid cancer. That’s why people are saying, “Better take potassium iodide,” because that blocks the thyroid uptake of radioactive iodine, which later can cause thyroid cancer.
In Chernobyl, over 20,000 people have developed thyroid cancer.(14) They have their thyroids out, and they will die unless they take thyroid replacement every day, like a diabetic has to take insulin.
Strontium-90 will get out, it lasts for 600 years. It goes to the bone, where it causes bone cancer or leukemia. Cesium lasts for 600 years — it’s all over Europe. 40 per cent of Europe is still radioactive. Turkish food is extremely radioactive. Do not buy Turkish dried apricots, or Turkish hazelnuts. The Turks were so cross with the Russians, they sent all their radioactive tea over to Russia after Chernobyl.(15)
Forty per cent of Europe is still radioactive. Farms in Britain, their lambs are so full of cesium they can’t sell them. Don’t eat European food.
But that’s nothing compared to what’s happening now. One of the most deadly [nuclear byproducts] is plutonium, named after Pluto, god of the underworld. One millionth of a gram, if you inhale it, would give you cancer. Hypothetically, one pound of plutonium if evenly distributed could give everyone on earth cancer. Each reactor has 250 kilograms of plutonium in it. You only need 2.5 kilograms to make an atomic bomb, because plutonium is what they make bombs with.
So any country that has a reactor, works with your uranium. You [Canada] are the biggest exporter of uranium in the world.(16) Canada sells two things: it sells wheat for life, and uranium for death. Plutonium is going to get out and spread all over the northern hemisphere. It’s already heading towards North America now.
Radioactive iodine, plus strontium, plus cesium, plus tritium, and I could go on and* on and on. When it rains, downs come fallout, and it concentrates in food. If it gets into the sea, the algae concentrate it, hundreds of times. And the crustaceans concentrate it, hundreds of times. And then the little fish, then the big fish, then us.(17)
Because we stand on the apex of the food chain. You can’t taste these radioactive food elements, you can’t see them, you can’t smell them. They’re silent. When you get them inside your body, you don’t suddenly drop dead of cancer, it takes five to sixty years to get your cancer, and when you feel a lump in your breast, it doesn’t say, “I was made by some strontium-90 in a piece of fish you ate twenty years ago.”
All radiation is damaging. It’s cumulative — each dose you get adds to your risk of getting cancer. The americium is more dangerous than plutonium — I could go on and on. Depends if it rains if you’re going to get it or not. If it rains and the radiation comes down, don’t grow food, and don’t eat the food, and I mean don’t eat it for 600 years.
Radioactive waste from nuclear power is going to be buried, I hear, next to Lake Ontario. It’s going to leak, last for millions of years, it’s going to get into the water, and into the food chains. Radioactive waste will induce epidemics of cancer, leukemia, and genetic disease for the rest of time. This is the greatest public health hazard the world has ever witnessed, apart from the threat every day of nuclear war.
Einstein said “the splitting of the atom changed everything, save man’s mode of thinking” — very profound — “and thus we drift toward unparalleled catastrophe.” We are arrogant, we have a lot of hubris, and I think the reptilian mid-brain of some men’s brains is pathological.(18)
We are in a situation where we have harnessed the energy of the sun. It is totally out of control. And there’s simply nothing we can do about it.

NOTES
[These notes are not part of Dr. Caldicott's presentation. They were added by Felton Davis]
1) Helen Caldicott is the founder of Physicians for Social Responsibility, and is the author of “The New Nuclear Danger” (The New Press, 2002).
2) “Chernobyl: Consequences of the Catastrophe For the People and the Environment,” Annals of the New York Academy of Sciences
http://www.nyas.org/publications/annals/Detail.aspx?cid=f3f3bd16-51ba-4d7b-a086-753f44b3bfc1
3) “Health Effects of the Chernobyl Accident,” World Health Organization. http://www-ns.iaea.org/appraisals/chernobyl.asp
4) “Consequences of the Chernobyl Nuclear Accident,” International Atomic Energy Agency. http://www-ns.iaea.org/appraisals/chernobyl.asp
5) For a general description of the complex, including cross-sections of the six reactors, see http://en.wikipedia.org/wiki/Fukushima_I_nuclear_accidents
6) http://en.wikipedia.org/wiki/GE_Three
Excerpt: On February 2, 1976, Gregory C. Minor, Richard B. Hubbard, and Dale G. Bridenbaugh “blew the whistle” on safety problems at nuclear power plants. The three engineers gained the attention of journalists and their disclosures about the threats of nuclear power had a significant impact. They timed their statements to coincide with their resignations from responsible positions in General Electric’s nuclear energy division, and later established themselves as consultants on the nuclear power industry for state governments, federal agencies, and overseas governments.
7) “Japanese Scramble to Avert Meltdowns as Nuclear Crisis Deepens After Quake,” New York Times, March 12, 2011, By HIROKO TABUCHI and MATTHEW L. WALD
8) The design manual for General Electric boiling water reactors was posted as a PDF document on the “What Really Happened” website, and can be downloaded at: http://whatreallyhappened.com/content/ge-manual-bwr6-reactor-design-and-operation
9) http://en.wikipedia.org/wiki/Poisoning_of_Alexander_Litvinenko
Excerpt: Alexander Litvinenko was a former officer of the Russian Federal Security Service, FSB and KGB, who escaped prosecution in Russia and received political asylum in the United Kingdom. He wrote two books, “Blowing up Russia: Terror from within” and “Lubyanka Criminal Group”, where he accused the Russian secret services of staging Russian apartment bombings and other terrorism acts to bring Vladimir Putin to power. On 1 November 2006, Litvinenko suddenly fell ill and was hospitalized. He died three weeks later, becoming the first confirmed victim of lethal polonium-210-induced acute radiation syndrome. According to doctors, “Litvinenko’s murder represents an ominous landmark: the beginning of an era of nuclear terrorism”. Litvinenko’s allegations about the misdeeds of the FSB and his public deathbed accusations that Russian president Vladimir Putin were behind his unusual malady resulted in worldwide media coverage.
10) “Greater Danger Lies in Spent Fuel Than in Reactors,” Keith Bradsher & Hiroko Tabuchi, NY Times, March 17, 2011
www.nytimes.com/2011/03/18/world/asia/18spent.html
“Radiation Spread Seen; Frantic Repairs Go On,” David Sanger & William J. Broad, NY Times, March 17, 2011
www.nytimes.com/2011/03/18/world/asia/18intel.html
“U.S. Sees Array of New Threats at Japan’s Nuclear Plant,” James Glanz & William J. Broad, NY Times, April 6, 2011
www.nytimes.com/2011/04/06/world/asia/06nuclear.html
“Focus on preventing explosions at Japan nuke plant,” Mari Yamaguchi, Associated Press, April 6, 2011
http://news.yahoo.com/s/ap/20110406/ap_on_bi_ge/as_japan_earthquake_654
11) http://wisequotes.org/nuclear-power-is-one-hell-of-a-way-to-boil-water
12) http://en.wikipedia.org/wiki/Decay_product
13) “US Accused of Using Poison Gases in Fallujah,” Democracy Now, Monday, November 29th, 2004
http://www.democracynow.org/2004/11/29/u_s_accused_of_using_poison
“Evidence of Extensive War Crimes, Unprecedented in the annals of legal history,” Niloufer Bhagwat, Global Research, December 11, 2004
http://globalresearch.ca/articles/BHA412A.html
“Depleted Uranium Weapons: Dead Babies in Iraq and Afghanistan Are No Joke,” by Dave Lindorff, Global Research, October 20, 2009
http://www.globalresearch.ca/index.php?context=va&aid=15744
“The consequences of a US war crime: Cancer rate in Fallujah worse than Hiroshima,” Tom Eley, World Socialist, July 23, 2010
http://www.wsws.org/articles/2010/jul2010/fall-j23.shtml
“Research Links Rise in Fallujah Birth Defects and Cancers to US Assault,” Martin Chulov, The Guardian/UK, December 31, 2010
http://www.commondreams.org/headline/2010/12/31
14) “Chernobyl’s Continuing Thyroid Impact,”By Mary Shomon, December 15, 2003
http://thyroid.about.com/cs/nuclearexposure/a/chernob.htm
15) “Authorities lied on impact of Chernobyl in Turkey,”Greenpeace Report
http://www.blackraiser.com/cherno.htm
16) WISE Report on the Worldwide Uranium Market http://www.wise-uranium.org/umkt.html
“Why is Uranium Important to Canada?” Canadian Nuclear Association,
http://www.cna.ca/english/pdf/nuclearfacts/04-NuclearFacts-uranium.pdf
17) http://en.wikipedia.org/wiki/Bioaccumulation
18) http://www.crystalinks.com/reptilianbrain.html
Copyright © Helen Caldicott, Global Research, 2011

see
Press conference on Fukushima with Helen Caldicott
Helen Caldicott vs George Monbiot: “Prescription for Survival”
Obama’s March Madness by Ralph Nader + Nader Questions Government Honesty When It Comes To Japan’s Nuclear Crisis
The Nuclear Nightmare Continues – Helen Caldicott interviewed by Alex Smith
Nuclear Nightmare by Ralph Nader + Caldicott: UN lies about nuclear threat

http://vodpod.com/dandelionsalad/tag/japan+3.11.11+earthquake+tsunami+disaster
http://vodpod.com/dandelionsalad/tag/chernobyl

30 March 2011

URGENT APPEAL TO ALL CANADIAN GROUPS



Subject: AN URGENT APPEAL TO ALL CANADIAN GROUPS IN
 ALL

PARTS OF CANADA.

THE CANADIAN COALITION FOR NUCLEAR RESPONSIBILITY
AND LE MOUVEMENT SORTONS LE QUEBEC DU NUCLEAIRE 
IN CONCERT WITH DOZENS OF OTHER GROUPS WILL BE
ISSUING A PRESS RELEASE ON THURSDAY MORNING
CALLING FOR A ROYAL COMMISSION OF INQUIRY INTO
THE FUTURE OF NUCLEAR POWER IN CANADA, WITH A
CESSATION OF ALL LICENSING ACTIVITY RELATED TO 
NEW BUILD OR REFURBISHMENT PROJECTS, AS WELL AS
OFF-SITE TRANSPORTATION OF NUCLEAR WASTES 
PRODUCED BY NUCLEAR REACTORS IN THE MEANTIME.

PLEASE CONTACT AS MANY GROUPS AS POSSIBLE IN YOUR
NECK OF THE WOODS WHO CAN ENDORSE THIS CALL FOR
A NATIONAL INQUIRY ALONG THE LINES LAID OUT BELOW.

ANY SUGGESTIONS WILL BE GLADLY ACCEPTED AND
INCORPORATED IF POSSIBLE.

GORDON EDWARDS. CCNR-RSN
MICHEL DUGUAY MSQN

============================

The Press Release will incorporate some or all of these ideas:

A DRAFT WILL BE SENT TO ALL OF YOU TOMORROW
AFTERNOON FOR FINAL APPROVAL.

Media Release:

All federal political parties are being challenged to declare 
their support for a far-reaching non-partisan Royal Commission
of Inquiry into the Future of Nuclear Power in Canada, to be 
launched at the earliest possible date.  As part of that inquiry 
process, no new licenses for nuclear power plants in Canada, 
whether new build projects or refurbishment projects , as well 
as off-site transportation  of nuclear wastes produced by nuclear 
reactors, would be granted until the Royal Commission has 
concluded its work.

Groups from across Canada are joining together in this appeal
to ensure that the people of Canada are adequately consulted 
on the future of this inherently dangerous industry.  The basic
question is this: do Canadians wish nuclear power production 
to be expanded or to be phased out?

These groups are unanimous in their view that the Canadian
Nuclear Industry, the Canadian Regulatory Regime and the 
Canadian and Provincial governments have failed to disseminate
objective scientific information about the hazards of nuclear
reactors, the health dangers of radioactive exposures, and the 
potential ecological consequences of major reactor malfunctions.

These groups are also unanimous in their view that political
accountability and transparency has been woefully lacking
in the nuclear field, as governments have routinely abdicated 
responsibility to the Canadian nuclear establishment, of which
Canadian Nuclear Safety Commission is an integral part.

These groups demand that the risks of nuclear power be
delineated not only from the point of view of the physicists 
and engineers who dominate the Canadian nuclear industry 
and its licensing agency, the CNSC, but also by independent 
bio-medical experts and people trained in the fields of biology 
and ecology, as well as experts drawn from the social sciences.

Most importantly, however, these groups demand the right for
ordinary Canadian citizens to voice their views on nuclear power
and to explore the risks and benefits of alternative energy tech-
nologies.  Before proceeding any further down the nuclear path,
Canadians will finally have a chance to debate the risks and
benefits of nuclear power in relation to its alternatives.