Los Angeles Times - 21 Jan 08

Prof. Robert B. Laughlin
Department of Physics
Stanford University, Stanford, CA 94305

http://articles.latimes.com/2008/jan/21/business/ft-nuclearwaste21
(Copied 25 Aug 09)


Worries Can't Be Buried as Nuclear Waste Piles Up

By Angela Charlton
January 21, 2008

BEAUMONT-HAGUE, FRANCE — Thousands of canisters of highly radioactive waste from the world's most nuclear-energized nation lie, silent and deadly, beneath this jutting tip of Normandy. Above ground, cows graze and Atlantic waves crash into heather-covered hills.

The spent fuel, vitrified into blocks of black glass that will remain dangerous for thousands of years, is in "interim storage." Like nearly all the world's nuclear waste, it is still waiting for the long-term disposal solution that has eluded scientists and governments in the six decades since the atomic era began.

Industry officials hope renewed worldwide interest in nuclear energy will break a long, awkward silence surrounding nuclear waste. They want to revive momentum for scientific and political breakthroughs on waste that stalled after the accidents at Three Mile Island in 1979 and Chernobyl in 1986, which raised worldwide fears about radioactivity's risks to human and planetary health.

So far, though, recent talk of a nuclear renaissance has focused on the "front end," or reactor construction. Engineers are designing the next generation of reactors to be safer than today's -- and they're being billed as a solution to global warming. Nuclear reactors do not emit carbon dioxide, the greenhouse gas blamed for heating the planet.

Few people have been talking about the "back end," industry-speak for the hundreds of thousands of tons of waste that nuclear plants produce each year, and the lucrative, secretive business of storing it away.

Waste "is the main problem with this so-called nuclear rebirth," said Mycle Schneider, an independent expert who co-authored a recent study for the European Parliament casting doubt on a global nuclear resurgence. He says government efforts to revive nuclear energy will stall without a "miracle" solution to waste disposal.

Workers at this waste treatment and storage site on France's Cherbourg peninsula, run by industry giant Areva, don't see a problem.

Though much of the technology here dates from the 1970s and 1980s, they point to a strong safety record and the 26,000 environmental tests conducted every year as evidence that the public has nothing to fear from their activity.

The tests routinely find crabs, cows and humans living nearby to be healthy. One longtime plant employee gestured toward her pregnant abdomen, holding her third child, as proof that there's nothing to worry about. Plant officials say strict security measures, tightened since the Sept. 11 attacks, rule out terrorism risks.

Greenpeace questions state-run Areva's safety figures, and accuses the government of playing down accidents and soil and water contamination. A group called Meres en Colere, or Angry Mothers, was formed in the region after a 1997 study showed higher than usual local rates of child leukemia, a malady linked to radiation exposure.

For now, the best scientific solution for getting rid of the most lethal waste is to shove it deep underground.

Yet no country has built a deep geological repository. Governments meet protests each time one is proposed. Another option is recycling. Countries such as France, Russia and Japan reprocess much nuclear waste into new fuel. That dramatically reduces the volume: Forty years' worth of France's highly radioactive waste is stored under just three floor surfaces, each about the size of a basketball court, at Beaumont-Hague.

Recycling, though, produces plutonium that could be used in nuclear weapons -- so the United States bans it, fearing proliferation.

And not all waste can be reprocessed. The deadliest bits -- such as fuel rod casings and other reactor parts as well as concentrated fuel residue containing plutonium and highly enriched uranium -- must be sealed and stored away.

Among other ideas once floated for disposing of nuclear waste have been shooting it into space (deemed too risky because of the volatile rocket fuel) or injecting it in the ocean floor (stalled because testing its feasibility is too costly), or shipping all the world's waste to a collective nuclear dump.

Current research in industry leader France, which relies on nuclear energy for more than 70% of its electricity, more than any other country, is focusing on new chemical processes that would shrink nuclear waste and cool it faster. It will be at least 2040, though, before these might be put to use, scientists estimate. Areva already makes $2.2 billion in revenue a year on treating and recycling waste. The plant at Beaumont-Hague takes in 22,000 tons of spent nuclear fuel a year, from France, Japan, Germany, Switzerland, Belgium, the Netherlands, Italy and Australia. The foreign fuel by law must be returned to its owners once it has been reprocessed into a more stable form that, through lack of alternatives, is buried or held in storage.

The French fuel stays in Normandy indefinitely, while bulkier, lower-level nuclear waste is piling up in dumps worldwide.

Nuclear scientists' dream is a wasteless reactor, and some sketches for the next crop of reactors, the Generation IV, include those that recycle 100% of their refuse.

Both nuclear fans and foes agree, however, that it will take a few more human generations for that dream to come true.