Michele Kearney's Nuclear Wire

Major Energy and Environmental News and Commentary affecting the Nuclear Industry.

Monday, November 29, 2010

The arithmetic adds up to nuclear

Yesterday, The Australian newspaper published an Op Ed piece by Nicholson, Biegler & Brook, entitled Emission reductions are not blowin’ in the wind, which discusses our recent paper in Energy. The print (dead tree) version of the article even had the graph shown here included! However, the editor had to cut down our original version to <1,000 words due to space constraints. As such, I thought BNC readers might be interested in reading the original 1,211 word submitted version, which I reproduce below.
In the next post, I’ll look at some other media reactions to our paper and press release.
——————————–
The Arithmetic adds up to Nuclear
By Martin Nicholson, Tom Biegler and Barry Brook
The ‘carbon price’ debate rages. The Australian Government, seems genuinely committed to putting a price on carbon. It seems likely, that one of the first industries to be impacted will be electricity generation. This sector is the largest single contributor to anthropogenic greenhouse gas emissions – mainly carbon dioxide. So, the big questions are: what does the carbon price need to be, where will our future electricity come from, and how much will it cost?
Levelised cost of electricity (LCOE) for baseload electricity generating technologies. Error bars represent 90% confidence intervals for the mean (bar height).
Most of our current electricity generators will be impacted. Less than seven per cent of our electricity comes from carbon-free sources. Reducing the emissions from the generators that burn fossil fuels (the source of the carbon dioxide) means that electricity will be more expensive than in the past – whatever technology is used.
So how will the electric power makers react to a carbon price? If the price is too low they will do nothing; pay the carbon price and just pass the cost onto the consumer, with negligible effect on emissions. On the other hand, if they can replace or improve the technology for less than it costs to pay for the carbon, they will change the technology.
This brings us to the next couple of questions. What is the carbon price that will cause a widespread change to technology and actually reduce emissions? And what technology will the power makers select? These are both questions that are much more difficult to answer, and will depend on whether they take a short-term view to say 2030 or a longer-term perspective to 2050 and beyond.
To help answer these questions, we have conducted a meta-review of 25 authoritative peer-reviewed studies of electricity generating technologies. This review was recently published in the international peer-reviewed scientific journal Energy. We looked at cost and life-cycle emission studies to arrive at the most likely costs and emissions of these technologies. In Australia, over 75 per cent of our electricity is generated by what are called ‘baseload’ generators that operate almost continuously. Our paper focuses on this majority part of the energy demand.
It turns out that technology options for replacing fossil fuels, based on proven performance and reliable cost projections, are much more limited than is popularly perceived. We identified only five proven low-emission technologies that met a set of objective fit-for-service criteria to supply baseload power. These technologies were: pulverised fuel (PF) with carbon capture and storage (CCS); integrated (coal) gasification combined cycle (IGCC) with CCS; combined cycle gas turbine (CCGT) with CCS; nuclear; and solar thermal with heat storage and gas turbines. IGCC is relatively new technology not yet in operation in Australia. CCS is still only in pilot stage anywhere in the world.
Some may wonder why wind, solar photovoltaic and engineered geothermal systems (EGS), also known as hot rocks, did not qualify to be fit-for-service for baseload. Wind and solar PV need either extensive gas backup or large-scale energy storage for baseload operation. The associated extra costs will depend on plant location and are difficult to assess accurately. One technical study we covered assessed wind with storage against IGCC with CCS. The wind/storage solution could only compete at a carbon price above $350 per tonne of carbon dioxide, well above anything being contemplated. EGS is a possible future baseload technology, but it is still too early to estimate performance and costs with the degree of reliability we required.

Impact of carbon pricing on levelised cost of electricity (LCOE) for fit-for-service low emission baseload technologies.
Most of Australia’s electricity comes from PF coal and this will be the primary target for emissions reduction. The illustration below (taken from the report) shows how the median costs per megawatt-hour (MWh) of electricity vary with the emissions (carbon) price. The technologies included are the five fit-for-service replacement technologies plus, for comparison, new PF coal plants without CCS. With no carbon price (as now), new PF coal is the cheapest technology, but as the carbon price increases so does the cost of electricity from such plants. LCOE in the illustration means the levelised cost of electricity. The LCOE is a good indicator of the average wholesale price the power station owner would need to break even.
The points where the cost line for PF coal crosses the others represents the minimum carbon price needed to make the technology switch worthwhile. Leaving aside nuclear for the moment (it is currently banned in Australia), the cheapest solution is CCGT (natural gas) with CCS, which needs a carbon price of just over $30. To justify building either of the coal technologies (PF or IGCC) with CCS would require a carbon price over $40. Remember these costs are for new plants. Retrofitting existing coal plants with CCS might have different costs.
The problem is, CCS may only make sense if you take a short-term view of emission reductions. Whereas CCS can deliver the probable reduction targets up till 2030, current CCS technology will not deliver the tougher emission targets recommended for 2050. Coal plants often have a 40 year life, so new coal plants with CCS built over the next few decades may still be operating by 2050 and holding us back from meeting those targets, unless they can be modified later.
So what about renewable energy options?
The only renewable technology that met our fit-for-service criteria was solar thermal with heat storage and gas backup for cloudy days. As you can see from the illustration, using solar thermal power to replace coal would require a carbon price over $150. The solar industry is ever hopeful that future costs will fall, but current costs are about twice other low-carbon alternatives so they have a long way to go. Future cost reductions for any technology are inherently uncertain and should not be relied on.
The stand-out technology, from a cost perspective, is nuclear power. From the eight nuclear cost studies we reviewed (all published in the last decade, and adjusted to 2009 dollars), the median cost of electricity from current technology nuclear plants was just above new coal plants with no carbon price. Having the lowest carbon emissions of all the fit-for-service technologies, nuclear remains the cheapest solution at any carbon price. Importantly, it is the only fit-for-service baseload technology that can deliver the 2050 emission reduction targets.
The low cost for nuclear electricity may surprise some. Nuclear plants are renowned for being very expensive to build. But electricity costs are a function of construction costs, running costs (operations, maintenance and fuel) and the total energy generated over the plant’s lifetime. Nuclear fuel costs are relatively low compared to coal or gas (very little fuel is used in a nuclear plant) and these plants typically have a long life and high availability. These factors lead to a low electricity cost over the nuclear plant’s lifetime.
The results of this survey represent the scientific/engineering/economic consensus of the world-wide, authoritative, peer-reviewed energy literature. Given the importance of reducing electricity generator emission, and the economic imperative to keep electricity costs at a minimum, it seems essential that the Australian government rethink its nuclear power strategy – as much of the rest of the world has already done. All the arithmetic adds up to nuclear.

http://bravenewclimate.com/2010/11/30/the-arithmetic-adds-up-to-nuclear/#more-3476
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China Huaneng to Buy Stake in Power Company BY SATISH SARANGARAJAN

MUMBAI—China Huaneng Group agreed to buy India-based GMR Group's 50% stake in a U.S.-based power-generation company for $1.23 billion, expanding Chinese investment in overseas energy assets.
State-run China Huaneng Group is a major Chinese power producer with generation projects in China and abroad.
The deal for the stake in InterGen, announced Sunday, was one of several energy transactions in recent months involving Chinese ...http://online.wsj.com/article/SB10001424052748704700204575643672807661734.html?mod=WSJ_business_whatsNews
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Larsen Aims to Cash in on India Nuclear Boom

SINGAPORE -- Larsen & Toubro Ltd., India's biggest engineering company by sales, aims to attract up to $2 billion of orders a year for nuclear power equipment from India's ambitious plans to increase atomic energy capacity 15-fold over 20 years.
The company, which announced a slew of nuclear energy partnerships after India's three decades of nuclear isolation ended in 2008, expects orders to accelerate in 2012 when overseas companies start building plants, Chairman Anil Manibhai Naik told Dow Jones Newswires in a recent interview.
Larsen & Toubro expects new orders worth at least 25 billion rupees ($547 million) each year,
http://online.wsj.com/article/SB10001424052748704700204575643821879459744.html

Special Report - Nuclear's lost generation By Sylvia Westall


 OLKILUOTO, Finland (Reuters) - On a flat, low-lying island nestled in crisp waters off the west coast of Finland, the first nuclear power plant ordered in Western Europe since 1986 is inching towards start-up.

Over 4,000 builders and engineers are at work on the sprawling Olkiluoto 3 project, whose turbine hall is so cavernous it could house two Boeing 747 jets stacked on top of each other. When it is dark, which in winter is most of the day, enormous spotlights throw into focus scores of scaffolding towers and the red hauling equipment that encircle the grey, unfinished reactor building. The heavy reactor vessel, made to withstand temperatures over 350 degrees Celsius, has been gingerly lifted into place by two cranes. Inside the building, a dozen workers carrying a single pipe across their shoulders create a human caterpillar that carefully wends its way through tarpaulin-covered tunnels lit by lamps and chinks of daylight.

Walking through the expansive complex, still missing a domed cover on the reactor building, it takes a while to make out a peculiar but important detail: many of the engineers and building experts working here are in their late 50s and early 60s; some are in their 30s, but few are in between.

There's a hole in the nuclear workforce, not just in Finland but across the Western world. For the moment, the operator of the Olkiluoto 3 plant, power utility Teollisuuden Voima Oyj (TVO), is getting by with its most experienced staff. As those workers retire, though, the skills shortage could become a crisis.

"The nuclear industry has been in the desert for years and years and the question is how to revamp it and how to revamp human resources," says Colette Lewiner from Cap Gemini, a consultancy firm which raised concerns about the ageing nuclear workforce in a report in 2008 and has warned "there will be no nuclear power renaissance" without efforts to tackle the problem. "The industry needs to ramp up and it needs to do it quickly."
http://www.swissinfo.ch/eng/news/international/Special_Report_-_Nuclears_lost_generation.html?cid=28905400
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Playing the Nuclear Card

As China looks to wean itself off coal, CLP Holdings sees a big opportunity

The question: should nuclear energy power our future?

THE SCIENTIST: Barry Brook
Yes. Nuclear power uses atomic fission (splitting heavy atoms like uranium and plutonium) to generate vast amounts of heat energy.
This can be converted to electricity, or used to synthesise liquid fuels to replace oil. As an energy source, it is more than a million times more concentrated than chemical fuels like coal.
Today, nuclear power provides about 15 per cent of the world's electricity, but some countries get far more.
France, for instance, sources 80 per cent of its electricity from nuclear fission, and South Korea gets 45 per cent.
The US has more than 100 nuclear plants, supplying 20 per cent of its needs.
Nuclear energy produces no carbon dioxide emissions when operating. Indeed, if all the world's nuclear power stations were replaced by brown-coal power, an additional 3.5 billion tonnes of CO2 would enter the atmosphere each year.
Of course, nuclear electricity, like any other activity in the modern world, has some ''carbon footprint'', because we use fossil fuels to generate a large fraction of our electricity and to power our vehicles, industrial equipment, steel smelters, concrete factories and so on. But in a future world powered largely by nuclear energy, its footprint would be reduced to virtually zero.
Nuclear energy also has the great advantages of cheap, abundant fuel and incredibly reliable operation. It is not dependent on the fickleness of natural energy flows (such as wind and solar) and so does not require expensive energy storage.
This energy source is a proven economic way to replace coal. This is why rapidly developing countries such as China are pursuing nuclear energy so vigorously.
Currently, 25 new nuclear power plants are under construction in China, and the target there is for 112 gigawatts online by 2020.
This is the equivalent of four times Australia's average electricity generation, all built in 10 years and without a price on carbon.
A type of nuclear technology nowbeing commercialised in India, Russia and China, called ''fast reactors'', can be used to repeatedly recycle its fuel and consume old nuclear waste. Because of the incredible efficiency of this next-generation technology, we have already mined enough uranium to power the global economy for more than 500 years. This is truly a sustainable energy option.
Nuclear power offers our best chance – indeed, probably the only realistic hope – of curing our addiction to fossil fuels and eliminating carbon emissions, in time, on budget, and at sufficient scale.
ProfessorBarry Brook is director of climate science at the University of Adelaide's Environment Institute and coauthor of Why vsWhy: Nuclear Power (PanteraPress,2010).

http://www.smh.com.au/opinion/society-and-culture/the-question-should-nuclear-energy-power-our-future-20101129-18cro.html

Tritium cleanup finished at VY

BRATTLEBORO -- Groundwater remediation at Vermont Yankee nuclear power plant wrapped up on Nov. 18, according to the Vermont Department of Health's website.
The water, contaminated by tritium, is being shipped to a treatment facility in Tennessee.
Also on Nov. 18, the Nuclear Regulatory Commission held a non-public exit meeting for its groundwater contamination inspection
"At this point, however, the inspection results remain preliminary and therefore we would not provide details," said Neil Sheehan, spokesman for the NRC. "The inspection report is due out within 45 days. That report will contain our formal findings for the inspection." http://www.reformer.com/localnews/ci_16697538

EPA recertifies nuclear waste dump in NM

CARLSBAD, N.M. (AP) - The U.S. Environmental Protection Agency has recertified the federal government's underground nuclear waste repository in southeastern New Mexico.
The U.S. Department of Energy says the EPA recertified the Waste Isolation Pilot Plant east of Carlsbad on Nov. 18.
Officials say that verifies the plant remains in compliance with federal regulations.
The recertification was based on independent technical analyses, public comments and a review of information submitted by the Energy Department.
The repository, known as WIPP, opened in 1999. It buries defense-related radioactive waste in rooms mined from an ancient salt formation 2,150 feet below the desert floor.
http://www.newswest9.com/Global/story.asp?S=13561674

Westinghouse Expects Additional AP1000 Nuclear Reactor Orders From China

Westinghouse Electric Company logoImage via WikipediaWestinghouse Electric Co., owned by Toshiba Corp., expects additional orders for its third- generation AP1000 reactors from China after selling four units three years ago to the world’s fastest-growing nuclear market.
“There are going to be more AP1000s and the success of the current ones will determine that,” Jack Allen, Westinghouse’s president for Asia, said in an interview in Beijing today, adding talks haven’t formally begun. “There are no guarantees. Westinghouse is working very hard with customers here.”
China and India are leading the biggest atomic expansion since the decade after the 1970s oil crisis to cut pollution and power economies. Under a 2007 accord, Westinghouse is jointly building four AP1000 reactors with companies led by China National Nuclear Corp., and has transferred nuclear technology as it seeks to forge a lasting partnership with future rivals.
http://www.bloomberg.com/news/2010-11-25/westinghouse-expects-more-reactor-orders-from-china-on-clean-energy-demand.html
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Energy Secretary Chu at National Press Club

http://www.energy.gov/media/Chu_NationalPressClub112910.pdf

Energy Infrastructure Security: Pipelines by William (Tim) Shaw, PhD, CISSP, Senior Consultant - Cyber SECurity Consulting (author bio)

Pipelines are an essential component of our national infrastructure.Because pipelines are used to transport both volatile and hazardous materials, and because of their proximity to population centers, pipelines are recognized as presenting a potential safety and environmental hazard.
As Josef Stalin is purported to have said: “The purpose of terrorism is to terrorize.” As a target for terrorists, major pipelines offer the possibility of inflicting death and destruction as well as creating related economic repercussions.
The US, British, and Canadian governments all have active programs and policies for protecting these vital transportation infrastructure resources. In the US, the assignment for security of
pipelines has been assigned to the Transportation Safety Administration under the Department of Homeland Security. The TSA has set forth a series of guidelines and recommendations for
securing pipelines, including the SCADA systems used to monitor and control them.

Under these guidelines, a vulnerability assessment is recommended in order to identify potentialpoints of weakness that could be exploited, followed by the establishment of a security
management program that addresses these weaknesses and maintains a periodic review of the overall security status. Part of such a program will be the implementation of technical, physical, and administrative/procedural “countermeasures” that address the identified vulnerabilities.

Another key factor in such a program is employee education and training. This report amplifies these basic points and is intended to aid pipeline owners and operators in making a SCADA
vulnerability assessment and identifying and implementing appropriate countermeasures.

Written at a fairly nontechnical level this report serves as the go-to resource for protecting your pipelines.

Some of the report highlights and features:
  • Pipeline Industry and Infrastructure Overview
  • Threats, Risk, Vulnerabilities and Consequences
  • Cyber Threats and Attack Methods
  • Approaches for System reconaissance
  • Countermeasures
  • DOE’S “21 STEPS TO SECURE A SCADA SYSTEM 
Purchase required.
http://www.pennenergy.com/index/research-and_data/oil-and_gas/product-display/7452962202/products/pennenergy/research/Petroleum/HSSE/reports/Energy-Infrastructure-Security-Pipelines.html

The World Onshore Pipelines Report 2009-2013

This presents a comprehensive view of the historic market from 2004-2008 and forecast period from 2009-2013. The report also reviews all aspects of onshore oil & gas pipelines from design, materials, techniques and components through to construction, operations and maintenance and transportation. 
http://www.pennenergy.com/index/research-and_data/oil-and_gas/product-display/7480147788/products/pennenergy/research/Petroleum/PipeLines-Transportation-Storage/reports/the-world-onshore-pipelines-report-2009-2013.html

US Pipeline Study

OGJ's annual Pipeline Economics Report is the source for this survey. The report includes data on pipeline and compressor station construction costs over several years. Also includes operating and fiscal data for US oil and natural gas pipelines. Data supplied in Microsoft® Excel® Spreadsheets.

Pipeline Construction Costs: Includes data on estimated pipeline costs as presented in applications to FERC since 1980 for hundreds of onshore and offshore pipeline projects.
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India nuclear plant with French reactors gets green go-ahead



Ramesh said nuclear energy accounted for about 2.9 percent of India's energy generation, and the government wanted to increase the figure to six percent by 2020 and possibly 13 percent by 2030.
http://www.nuclearpowerdaily.com/reports/India_nuclear_plant_with_French_reactors_gets_green_go-ahead_999.html New Delhi (AFP) Nov 28, 2010 India on Sunday gave environmental clearance for a nuclear power plant to be built in collaboration with French firm Areva, days ahead of President Nicolas Sarkozy's scheduled visit to New Delhi. Environment minister Jairam Ramesh said the go-ahead for the Jaitapur plant in Maharashtra state, which will use nuclear reactors supplied by Areva, was granted with 35 conditions and safeguards.
"From an environmental point of view, nuclear energy is a cleaner option than coal," Ramesh said in a press release, adding that he has called for further studies into the power station's potential environmental impact.
A 34-year-old embargo on civilian nuclear exchanges with India, imposed in 1974 following a series of Indian nuclear tests, was lifted in 2008 after years of negotiations between India and the United States.
France has since signed an agreement with India covering nuclear energy cooperation, while Russia has also signed a similar accord.
The power station will be situated in the coastal region of Maharashtra, home to India's financial capital of Mumbai, and has faced protests from locals and anti-nuclear activists.
Ramesh said nuclear energy accounted for about 2.9 percent of India's energy generation, and the government wanted to increase the figure to six percent by 2020 and possibly 13 percent by 2030.
Some local media reported that Areva and the Indian state-run Nuclear Power Corporation (NPC) would sign the agreement during Sarkozy's trip to Delhi.
The French president's itinerary has yet to be confirmed but he is expected to arrive in India at the end of next week.
The NPC predicts the first reactor, costing an estimated four to six billion euros (5.3-7.9 billion dollars) will be commissioned in 2017-18.
The proposed project will eventually have six reactors generating 1,650 megawatts each. It has several more government regulatory hurdles to overcome before being given the final go-ahead.
India is dependent on oil imports for 70 percent of its fast-expanding energy needs, and is on the hunt for new sources to fuel its rapid growth.
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Sunday, November 28, 2010

US considers military options against Iran




http://www.spacewar.com/reports/US_considers_military_options_against_Iran_999.html Washington (AFP) Nov 28, 2010 Suspicious of Iran's nuclear capacity, the United States is weighing military options in the face of Tehran's announcement it had a nuclear power plant up and running, the top US military officer said Sunday. "We've actually been thinking about military options for a significant period of time," Admiral Mike Mullen, chairman of the US joint chiefs of staff said in an interview with CNN.
Mullen said he doesn't believe that Iran's nuclear plant is for civilian use "for a second."
"In fact, the information and intelligence that I've seen speak very specifically to the contrary. Iran is still very much on a path to be able to develop nuclear weapons, including weaponizing them, putting them on a missile and being able to use them," he said.
Mullen said the United States was focused on dialogue and engagement about Iran's nuclear ambitions, but "in a realistic way."
"They've got a history of gamesmanship that certainly doesn't include closing on significant steps to indicate to the international community that they're not doing this," he said.
On Saturday, Iran said its first atomic power plant built by Russia in Bushehr had begun operations, ahead of a new round of talks with Western powers over the country's controversial nuclear drive.
"Without any propaganda and fuss we sealed the cover of the reactor and all the fuel rods are in the core of the reactor," atomic chief Ali Akbar Salehi was quoted as saying by Fars news agency, without specifying when.
But Salehi said the authorities in the Islamic republic "hope that electricity produced at the Bushehr plant will be connected to the national grid in a month or two."
Iran says it needs the plant, which had been under construction since the 1970s in the southern port city of Bushehr before it was completed by Russia, to meet growing demand for electricity.
But Western governments suspect Iran's nuclear program masks a drive for an atomic weapons capability, an ambition Tehran has steadfastly denied.

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Key US senator resolute on Russia nuclear pact from Military Space News, Nuclear Weapons, Missile Defense

http://www.spacewar.com/reports/Key_US_senator_resolute_on_Russia_nuclear_pact_999.htmlWashington (AFP) Nov 28, 2010
A key US senator reiterated Sunday his position that a new nuclear arms treaty with Russia could not be ratified this year, rejecting calls from President Barack Obama for quick action. "It is more a view of reality rather than policy," senator John Kyl told NBC's "Meet the Press," calling for weeks of debate on the details of the new START arms reduction treaty.
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Iran obtained missiles from North Korea : leaked US documents




Washington (AFP) Nov 28, 2010 US intelligence believes Iran has obtained advanced missiles from North Korea capable of striking Europe, according to US documents leaked by WikiLeaks and cited by the New York Times on Sunday. The newspaper, in a diplomatic cable dated February 24, said "secret American intelligence assessments have concluded that Iran has obtained a cache of advanced missiles, based on a Russian design."
Iran obtained 19 of the North Korean missiles, an improved version of Russia's R-27, from North Korea, the cable said, and was "taking pains to master the technology in an attempt to build a new generation of missiles."
At the request of US President Barack Obama's administration, the New York Times said it had agreed not to publish the text of that cable.
"The North Korean version of the advanced missile, known as the BM-25, could carry a nuclear warhead," said the newspaper, adding it had a range of up to 2,000 miles (more than 3,000 kilometres).
"If fired from Iran, that range, in theory, would let its warheads reach targets as far away as Western Europe, including Berlin. If fired northwestward, the warheads could reach Moscow," it said, referring to other dispatches.
"The cables say that Iran not only obtained the BM-25, but also saw the advanced technology as a way to learn how to design and build a new class of more powerful engines," said the Times.
http://www.spacewar.com/reportshttp://www.spacewar.com/reports/Iran_obtained_missiles_from_North_Korea_leaked_US_documents_999.html/Iran_obtained_missiles_from_North_Korea_leaked_US_documents_999.html
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China Builds Nuclear Reactor for 40% Less Than Cost in France, Areva Says


http://nextbigfuture.com/2010/11/china-builds-nuclear-reactor-for-40.html

Areva SA said the EPR (1700MWe) nuclear reactor costs 3 billion euros ($4 billion) to build in China, 40 percent less than the price tag Electricite de France SA has put on building one in Normandy.

Chinese nuclear builders’ grasp of the technology is “very worrying” for European companies, Areva Chief Executive Officer Anne Lauvergeon told a hearing at the French Senate today in Paris. She also said Chinese companies are more efficient.

I translate "very worrying" by the CEO of the French nuclear company as "Areva will be toast when China starts exporting". China 40% price advantage is for Areva most advance 1700 MWe version. China has even more price advantage for the 1000MWe version of the 900MWe french reactor.

Talks on developing two more of the reactors in China in addition to two already under construction are “near completion,” Lauvergeon said. Areva is also in the final stages of negotiating the sale of two EPRs in India, plus a nuclear fuel contract, she said.

Nuclear Townhall talks about China nuclear advantage and Russian plans.
China and Russia have agreed to drop the U.S. dollar in their bi-lateral trade, and China has revealed ambitious plans to start exporting reactors by 2013 and develop an integral fast breeder program that will complete its nuclear fuel cycle.

All this has extraordinarily implications for America’s economic future. Approximately 40 percent of the dollar’s value comes from its use as the world’s international currency. Yet inflation and U.S. debt have eroded that value and China and Russia are catching on. If the world follows their lead in dropping the dollar, every American will lose 40 percent of his or her net worth overnight.

Chinese technicians have already reversed-engineered Areva 900-MW reactors built at Daya Bay into the CPR-1000 and have 16 under construction, the first scheduled to open next September. Zhang said that once certain intellectual property issues are cleared up with Areva, Guangdong would begin exporting, probably by 2013. Chinese engineers are already doing the same thing with the Westinghouse AP1000 as well.



State-run EDF has a 30 percent stake in Taishan Nuclear Power Joint Venture Co. to develop and operate two 1,700- megawatt EPRs with China Guangdong Nuclear Power Group. Areva, also run by the government, is supplying components.

Construction of Taishan 1 began in November 2009 while Taishan 2 started in April. The reactors are expected to start at the end of 2013 and 2014, according to EDF.

The EPR being developed in Finland will take 86 months to complete due to the country’s “very demanding regulator and a complicated” client, Lauvergeon said. The Flamanville reactor in Normandy will take 71 months while Taishan 1 and 2 are targeting 46 months, she said.

Taishan 1 is on schedule and Taishan 2 is ahead, according to Lauvergeon. Progress at Taishan is being kept six months behind Flamanville deliberately in order to benefits from experience

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India nuclear plant with French reactors gets green go-ahead

http://www.nuclearpowerdaily.com/reports/India_nuclear_plant_with_French_reactors_gets_green_go-ahead_999.html


New Delhi (AFP) Nov 28, 2010 India on Sunday gave environmental clearance for a nuclear power plant to be built in collaboration with French firm Areva, days ahead of President Nicolas Sarkozy's scheduled visit to New Delhi. Environment minister Jairam Ramesh said the go-ahead for the Jaitapur plant in Maharashtra state, which will use nuclear reactors supplied by Areva, was granted with 35 conditions and safeguards.
"From an environmental point of view, nuclear energy is a cleaner option than coal," Ramesh said in a press release, adding that he has called for further studies into the power station's potential environmental impact.
A 34-year-old embargo on civilian nuclear exchanges with India, imposed in 1974 following a series of Indian nuclear tests, was lifted in 2008 after years of negotiations between India and the United States.
France has since signed an agreement with India covering nuclear energy cooperation, while Russia has also signed a similar accord.
The power station will be situated in the coastal region of Maharashtra, home to India's financial capital of Mumbai, and has faced protests from locals and anti-nuclear activists.
Ramesh said nuclear energy accounted for about 2.9 percent of India's energy generation, and the government wanted to increase the figure to six percent by 2020 and possibly 13 percent by 2030.
Some local media reported that Areva and the Indian state-run Nuclear Power Corporation (NPC) would sign the agreement during Sarkozy's trip to Delhi.
The French president's itinerary has yet to be confirmed but he is expected to arrive in India at the end of next week.
The NPC predicts the first reactor, costing an estimated four to six billion euros (5.3-7.9 billion dollars) will be commissioned in 2017-18.
The proposed project will eventually have six reactors generating 1,650 megawatts each. It has several more government regulatory hurdles to overcome before being given the final go-ahead.
India is dependent on oil imports for 70 percent of its fast-expanding energy needs, and is on the hunt for new sources to fuel its rapid growth.
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Russia sells Su-35s to China



http://www.spacewar.com/reports/Russia_sells_Su-35s_to_China_999.html



Beijing (UPI) Nov 23, 2010 Defying its tradition of keeping China at a distance of its advanced weapons, Russia has signaled its intent to sell its latest model of Su-35 jet fighter to China. "We are ready to work with the Chinese partners in this direction," said Alexander Mikheyev, the deputy director of the Russian government export agency Rosoboronexport. Mikheyev made the statement to Moscow's RIA-Novosti news agency.
His remarks came on the sidelines of China's ambitious Zhuhai Airshow 2010, staged at the Guangdong province and featuring a record number of companies exhibiting aircraft and aviation technology.
Powered by two 117S engines with thrust vectoring, the Su-35 Flanker E mixes high maneuverability with the capability of engaging several air targets at once, using both guided and unguided missiles and weapons systems.
The multirole fighter is expected to roll off assembly lines by the end of the year, with the first batch set for China between 2010 and 2015. Local media have indicated that the order includes 48 aircraft.
Mikheyev told RIA-Novosti that Russia and China were engaged in the initial stages of talks and would discuss the "features of the export variant of the Su-35 and how to integrate it with previously supplied Su-30 fighters and the locally assembled Su-27."
Variants of the model have been offered to India, Malaysia, Algeria, Brazil and Venezuela since 2008. No deals though, have been signed.
Defense News quotes a Rosoboronexport official saying that the contract would "mark a departure from recent stagnation in Russian arms sales to China." Throughout this period China eyed advanced Russian weapons, but bar a few samples, Moscow refused to deliver fearing that China would copy the technologies.
China's orders for jets are expected to soar over the next decade. The biggest demands recorded at the air show included small passenger aircraft, with orders for an estimated 505 planes anticipated in the next 20 years.
Reaping much of the gain is Brazil's Embraer, the world's largest maker of regional aircraft.
"China's booming economy fosters the development of its regional aviation market, which generates great opportunities for players in the aviation industry, said Guan Dongyuan, president of Embraer China.
Still, at the air show, military drones drew the lion's share of the attention. As many as 25 different types were featured in the show, with one of them inducing rain as a shield.
China International Aviation & Aerospace Exhibition is the only international aerospace trade show in China that is endorsed by the Chinese central government. The biannual arms exhibition has been held in Zhuhai since 1996.

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US-S.Korea naval exercises begin after Pyongyang warning

The United States and South Korea Sunday mounted a major show of naval strength to deter North Korea following its deadly shelling attack, despite Pyongyang's warning of unpredictable consequences. The four-day exercise involving around a dozen warships including a US aircraft carrier began at 8:00 am (2300 GMT Saturday), Seoul's Joint Chiefs of Staff (JCS) said.
It started five days after the North stunned the world by launching a barrage of shells and rockets at a South Korean border island, killing two marines and two civilians and setting homes and forests ablaze.
Washington insists that the drill -- which has been criticised by Beijing -- is defensive in nature and was planned long before last week's attack, but says it is intended to send a message of deterrence to the North.
The drill involving at least 11 major warships and thousands of service personnel was taking place off South Korea's southwest coast, far from the flashpoint inter-Korean border, according to coordinates given by Seoul officials.
"If the US brings its carrier to the West Sea of Korea (Yellow Sea) at last, no one can predict the ensuing consequences," the North's official news agency said Saturday, in the latest of a series of warnings following Tuesday's bombardment.
The drill is one of a series announced in May, after a Seoul-led multinational investigation found overwhelming evidence that a North Korean torpedo sank a South Korean warship earlier in the year.
That incident, which cost 46 lives, sparked anger in the South. But Tuesday's bombardment -- the first time the South's civilian areas have been shelled since the 1950-53 war -- was seen as more shocking.
The North claims it acted in retaliation to a South Korean firing drill in what it regards as its own waters around the contested border.
On Saturday it said the two civilian deaths were "if true... very regrettable".
But it also charged that civilians on Yeonpyeong island -- which is home to a marine base -- had been used as "human shields" by being placed near artillery positions.
Pyongyang has warned that the new war games mean the peninsula "is inching closer to the brink of war". It regularly uses such rhetoric and it was unclear whether it would try to disrupt the drill in any way.
South Korean President Lee Myung-Bak warned Saturday "there is a possibility that North Korea might commit wayward acts during the exercise," according to his spokesman.
Lee has come under pressure to take a tougher line against the North after the military's counter-fire last week was seen as feeble. His defence minister quit last Thursday to take responsibility.
"The intensity of the (naval) exercise will be greater than had been planned," Yonhap news agency quoted a Seoul military source as saying.
"Participating forces will carry out firing and bombing drills."
The 97,000-ton carrier George Washington can carry about 75 aircraft on its 1.8 hectare (4.5 acre) flight deck and has a crew of 5,500.
Also taking part on the US side was an embarked carrier air wing and vessels the USS Cowpens, Lassen, Stethem and Fitzgerald, according to information provided earlier.
Six South Korean warships, including a 7,600-ton Aegis-class destroyer, two 4,500-ton destroyers and frigates, as well as anti-submarine aircraft were joining the drill, a JSC spokesman said.
The drill will also involve a high-flying US J-STARS (joint surveillance and target attack system) surveillance aircraft to monitor the North's military moves, Yonhap reported.
"J-STARS has been deployed to the drill today... the aircraft will monitor (potential) ground targets of the North Korean military," it quoted a senior government official as saying. The JCS declined to confirm the report.
The exercise has raised tensions between Washington and Beijing, which regards the Yellow Sea as its backyard and has refrained from condemning its ally Pyongyang over Tuesday's attack.
Washington has stressed that the manoeuvres are not aimed against China, which hosts stalled six-party talks seeking an end to Pyongyang's nuclear weapons programme.
China's state councillor Dai Bingguo travelled to Seoul on Saturday and held talks with Foreign Minister Kim Sung-Hwan.
He will meet President Lee later Sunday, a presidential spokeswoman said without giving details.
Chinese Foreign Minister Yang Jiechi held phone talks on Saturday with his Japanese and Russian counterparts.http://www.spacewar.com/reports/US-SKorea_naval_exercises_begin_after_Pyongyang_warning_999.html

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Russia's nuclear concern 'out of control': watchdog



http://www.nuclearpowerdaily.com/reports/Russias_nuclear_concern_out_of_control_watchdog_999.html Moscow (AFP) Nov 26, 2010 Russia's Rosatom state nuclear energy enterprise is out of government control and facing a heightened risk of corruption, Transparency International said in a report released Friday. The corruption watchdog called Rosatom "a state within a state" that conducted rigged auctions and overpaid for contracts that could have been struck at a lower and more competitive price.
"Rosatom, like the other public firms, is a state within a state and cannot be controlled by the the anti-monopoly service or the audit court," said Elena Panfilova, head of Transparency International Russia.
The group said it analysed 200 orders made by Rosatom for construction materials, and Panfilova said that firms often complained they were not allowed to take part in Rosatom tenders.
"Rosatom only allows chosen firms to take part in its offers, which are made at high prices in violation of its own norms," added deputy head of Transparency in Russia Ivan Ninenko.
Led by former prime minister Viktor Kiriyenko, Rosatom succeeded the Soviet Union's Ministry of Nuclear Energy and Industry in 1992. It was transformed into a state corporation in 2004.
Rosatom also controls nuclear weapons companies and oversees the country's construction of the first nuclear power plant in Iran.
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Iran says first nuclear plant begins operating




http://www.nuclearpowerdaily.com/reports/Iran_says_first_nuclear_plant_begins_operating_999.html Tehran (AFP) Nov 27, 2010 Iran said Saturday its first atomic power plant built by Russia in Bushehr has begun operations, ahead of a new round of talks with Western powers over the country's controversial nuclear drive. "Without any propaganda and fuss we sealed the cover of the reactor and all the fuel rods are in the core of the reactor," atomic chief Ali Akbar Salehi was quoted as saying by Fars news agency, without specifying when.
But Salehi said the authorities in the Islamic republic "hope that electricity produced at the Bushehr plant will be connected to the national grid in a month or two."
Iran says it needs the plant, which had been under construction since the 1970s in the southern port city of Bushehr before it was completed by Russia, to meet growing demand for electricity.
But Western governments suspect Iran's nuclear programme masks a drive for an atomic weapons capability, an ambition Tehran has steadfastly denied.
Salehi's announcement come ahead of the likely resumption of stalled negotiations between world powers and Iran on Tehran's controversial nuclear programme in Geneva on December 5.
EU foreign policy chief Catherine Ashton said this week she had received "informal confirmations" from Iran about the date and location for the talks, "but I want a formal confirmation."
Iran and six world powers -- the United States, Russia, China, France, Britain and Germany -- have agreed to return to the negotiating table for the first time since October 2009, but two sides diverge on what issues should be on the table.
The world powers want the talks to focus on Iran's uranium enrichment programme but Tehran wants a wider discussion that includes regional security issues.
Iran is under four sets of UN sanctions over its refusal to suspend uranium enrichment, the sensitive process which can be used to make nuclear fuel or, in highly extended form, the fissile core of an atom bomb.
Last month Iran said it has begun loading fuel -- provided by Moscow which also recovers the spent fuel-- into the reactor core of Bushehr plant, a move which brings the facility closer to generating electricity after decades of delay.
Iran had begun transferring the fuel to the facility on August 21, a process which was described as the "physical launch" of the power plant.
On October 4, Salehi said the power plant would be ready to generate electricity by January -- two months later than previously announced.
The process of loading the fuel has suffered some hiccups, which Salehi has previously blamed on "severe hot weather" in Bushehr.
Early October, Salehi said a small leak in a pool beside the Bushehr reactor has delayed the start-up of the nuclear plant and four days ago, he also repeated previous denials by Iranian officials that an extraordinary computer worm, Stuxnet, had in any way harmed Iran's nuclea
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Iran: Bushehr Nuclear Reactor Fully Loaded -- Voice of America

Iran: Bushehr Nuclear Reactor Fully Loaded -- Voice of America
http://www.voanews.com/english/news/Iran-Bushehr-Nuclear-Reactor-Fully-Loaded-110905769.html
Iran's nuclear chief says the country's first nuclear reactor is fully loaded and could be operational within months.

Ali Akbar Salehi told state-run television Saturday workers had finished loading fuel rods into the core of the Bushehr nuclear plant, and that it could start generating electricity by February.

Salehi said officials are just waiting for the water in the reactor to heat to the right temperature before moving ahead.

Read more ....

More News On Iran's Nuclear Program

Iran Says Its First Nuclear Power Reactor Will Start Operating by January -- Bloomberg
Iranian nuclear plant nears national electricity production -- CNN
Iran's Bushehr nuclear power plant to join national power grid in two months -- Xinhuanet
Iran says first nuclear plant begins operating -- AFP
Reactor started at Bushehr nuclear power plant -- ITAR-TASS
Iranian Nuclear Plant is Powering Up -- Arutz Sheva
Iran Nuclear Power Plant Completes Fueling -- CRIEnglish
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