Michele Kearney's Nuclear Wire

Major Energy and Environmental News and Commentary affecting the Nuclear Industry.
Showing posts with label Greenhouse gas. Show all posts
Showing posts with label Greenhouse gas. Show all posts

Monday, December 27, 2010

EPA Moving Unilaterally to Limit Greenhouse Gases Amid congressional stalemate on global warming, administration seeks to limit greenhouse gases

  • EPA moves to curb greenhouse-gas emissions
    The Environmental Protection Agency said it plans to develop new greenhouse-gas emissions standards for refineries and power plants. The agency is also moving to release Clean Air Act permits directly to industrial facilities in Texas because the state is reluctant to follow new emissions rules. "We are following through on our commitment to proceed in a measured and careful way to reduce GHG pollution that threatens the health and welfare of Americans," said EPA Administrator Lisa Jackson. ABC News/The Associated Press (12/25) , Houston Chronicle
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Thursday, December 2, 2010

Record-High Greenhouse Gas Concentrations

http://www.terradaily.com/reports/Record_High_Greenhouse_Gas_Concentrations_999.html


The concentration of carbon dioxide in the atmosphere, for instance, has risen by about 40 % since pre-industrial times. Within the last few years, the average annual increase has been 0.5 %. http://www.terradaily.com/reports/Record_H...ations_999.html Geneva, Switzerland (SPX) Dec 02, 2010 The increase in carbon dioxide concentrations is also seen in the measurements made by the Finnish Meteorological Institute at the Pallas station, where the annual increase has been 2.0 ppm. The increase continued last year, too. These measurements also reflect the impact of seasonal variation: forests act as effective carbon sinks during the growing season, whereas in the autumn and winter the soil is a source of carbon.
The Finnish Meteorological Institute has participated in the GAW programme since 1994. The GAW measurement station maintained by the Institute is located on the peak of Sammaltunturi mountain in the Yllas-Pallastunturi National Park. At present, corresponding measurements are also made at a station set up in Tiksi, in Siberia.
The GAW programme of the WMO has measurement stations in about 50 countries all over the world. These stations monitor long-term changes that take place in the chemical and physical properties of the atmosphere.
Global Atmosphere Watch (GAW), established by the World Meteorological Organization, is a global programme for monitoring the atmosphere. The programme plays a central role in monitoring greenhouse gases that affect climate change.
The latest observations from GAW stations indicate that the concentrations of atmospheric greenhouse gases have reached new records despite the economic slowdown and the international action taken to reduce them.
The concentration of carbon dioxide in the atmosphere, for instance, has risen by about 40 % since pre-industrial times. Within the last few years, the average annual increase has been 0.5 %.
The amount of methane has also been rising again since 2007. The increase stems from tropical and Arctic regions where temperatures have been warmer than normally.
In fact, the increasing methane emissions from Arctic regions have been listed as a major concern because the melting of northern permafrost areas may release great volumes of methane into the atmosphere.
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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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Monday, November 22, 2010

CO2-Free Energy Can Meet Global Energy Needs In 2050




Danish wind and biomass resources in particular will make it possible to phase out fossil fuels in connection with power generation and heat production before 2040. It will take further 10 years to eliminate fossil fuels within the transport sector.
by Staff Writers Copenhagen, Denmark (SPX) Nov 22, 2010 Riso Energy Report 9 lists a wide range of energy technologies in the market with low or no emissions of greenhouse gases, describing how several of these will be made commercially available in the next decades. However, it is not possible to make the world's energy supply CO2-free as cheaply as possible, using only technology development in the current energy systems.
There must be room for technological leaps and there is a need for an integrated process to optimise the entire energy system, from energy production, through transformation into energy carriers, to energy transportation and distribution and efficient end use.
There is also a need for a smart grid, connecting production and end use at local level. End users should contribute to maintain balance in the future energy system and new technologies should be introduced to the end users, including houses with low and flexible consumption, smart electronic equipment, heat pumps, energy storage and local energy supplies such as solar cells and micro CHP.
Information and communication technology (ICT) will determine how successful the integration of renewables into the grid actually will be.
Considering the security of supply in the short and long term, there is still a need for access to fossil fuels, but they must be continuously replaced with renewable energy sources. If we do not make efforts to promote renewable energy sources, coal and gas might easily be prevailing in the global energy supply for the rest of this century.
For many countries, however, it could be advantageous to switch to renewable energy sources in order to reduce dependence on imported oil and gas. In addition, this transition can help the countries achieve their environmental policy goals.
Seen in isolation, Denmark has a great chance for achieving these goals and for phasing out fossil fuels at a rapid pace and thus reduce emissions of greenhouse gases at the required pace.
Danish wind and biomass resources in particular will make it possible to phase out fossil fuels in connection with power generation and heat production before 2040. It will take further 10 years to eliminate fossil fuels within the transport sector.
A future smart energy system requires that we start investments now. If we do not make these investments, future generations will look back on this period wondering how we could be satisfied with an outdated energy system, without taking advantage of the opportunities which we already were aware of.
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Thursday, November 18, 2010

SPECIAL REPORT RELEASE Updated Capital Cost Estimates for Electricity Generation Plants

SPECIAL REPORT RELEASE
Updated Capital Cost Estimates for Electricity Generation Plants
This paper provides information on the cost of building new electricity power plants.  These cost estimates are critical inputs in the development of energy projections and analyses.  They play an important role in determining the mix of capacity additions that will serve growing loads in the future and the response of electricity generators to the imposition of environmental controls on conventional pollutants or any limitations on greenhouse gas emissions. 

See the full paper at:
http://www.eia.gov/oiaf/beck_plantcosts/
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Sunday, November 14, 2010

EPA Finalizes Greenhouse Gas Reporting Requirements for Petroleum and Natural Gas Industry


 
Reporting targets methane, a potent greenhouse gas and valuable fuel


WASHINGTON - The U.S. Environmental Protection Agency (EPA) has finalized greenhouse gas (GHG) reporting requirements for the petroleum and natural gas industries as part of the mandatory reporting program. The petroleum and natural gas industries emit methane, carbon dioxide and other greenhouse gases, and are one of the largest human related sources of methane in the United States.  Annual methane emissions from intentional venting and equipment leaks from these industries are comparable to annual emissions from more than 40 million passenger cars.   
 
The data collected through the reporting program will provide important information about GHG emissions from petroleum and natural gas facilities. While methane is a potent greenhouse gas, trapping more than 20 times as much heat as carbon dioxide, it is also the primary component of natural gas, a valuable fuel.  The data collected by the companies will help identify cost effective ways to minimize the loss of methane. 
 
Beginning in 2011, petroleum and natural gas facilities that emit more than 25,000 metric tons of carbon dioxide equivalent a year are required to monitor and report all greenhouse gas emissions to EPA. Data collection for petroleum and natural gas sources will begin January 1, 2011, with first annual reports due to EPA March 31, 2012.
 
EPA’s Greenhouse Gas Reporting Program, launched in October 2009, requires the reporting of GHG emissions data from large emission sources and fuel suppliers across a range of industry sectors. The data will help guide the development of programs to reduce greenhouse gas emissions. 
 
For more information on this rulemaking: http://www.epa.gov/climatechange/emissions/subpart/w.html
For more information on the GHG Reporting Program:
 
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Tuesday, November 9, 2010

Biofuel worse for climate than fossil fuel: study


Biofuel worse for climate than fossil fuel: study

European plans to promote biofuels will drive farmers to convert 69,000 square km of wild land into fields and plantatons, depriving the poor of food and accelerating climate change, a report warned on Monday.

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Thursday, November 4, 2010

Obama: Let’s join forces on energy

President Barack Obama vowed today to find middle ground on energy issues with Republicans in the newly transformed Congress.
Although sweeping proposals to tackle global warming are too controversial to pass on Capitol Hill, Obama held out hope that Democrats and Republicans could forge consensus on some smaller plans to advance cleaner-burning natural gas, electric cars and nuclear power.
“When it comes to something like energy, what we’re probably going to have to do is say ‘here are some areas where there’s just too much disagreement . . . but let’s not wait; let’s go ahead and make progress on those things where we do agree.”
A prime candidate, Obama said, could be initiatives designed to promote the use and development of natural gas, which produces fewer carbon dioxide emissions when burned than coal.
“We’ve got, I think, broad agreement that we’ve got terrific natural gas resources in this country,” Obama said. “Are we doing everything we can to develop those?”
Similarly, he noted, Congress can do more to encourage the use and development of electric cars that aren’t reliant on liquid transportation fuels.
Nuclear power could be another area for consensus, Obama said. “There’s been discussion about how we can restart our nuclear industry as a means of reducing our dependence on foreign oil and reducing greenhouse gases,” he said. “Is that an area where we can move forward?”
Republicans in control of the House next year are sure to butt heads with the Obama administration over the Environmental Protection Agency’s plan to regulate greenhouse gas emissions from power plants and other stationery sources. But Obama insisted that lawmakers can find a way to help move the country toward cleaner energy sources.
“Cap-and-trade was just one way of skinning the cat,” he said. “It’s not the only way. It was a means, not an end. I will be looking for other ways to solve this problem.”
Obama suggested that locking like-minded Republicans and Democrats in a conference room would do the trick.
“I think the smartest thing for us to do is to see if we can get Democrats and Republicans in a room who are serious about energy independence and are serious about keeping our air clean and our water clean and dealing with the area of greenhouse gases,” Obama said.
Policymakers can “find ways that we can solve these problems that don’t hurt the economy, that encourage the development of clean energy in this country, that in fact may give us opportunities to create entire new industries and new jobs that put us in a competitive posture around the world.”
http://fuelfix.com/txpotomac/2010/11/03/obama-lets-join-forces-on-energy-policy/
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Monday, October 25, 2010

Changes in energy R&D needed to combat climate change

A new assessment of future scenarios that limit the extent of global warming cautions that unless current imbalances in R&D portfolios for the development of new, efficient, and clean energy technologies are redressed, greenhouse gas (GHG) emission reduction targets are unlikely to be met, or met only at considerable costs.More at:  http://www.physorg.com/news/2010-10-energy-combat-climate.html
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Friday, October 15, 2010

World Bank energy chief aims to speed clean power

(Reuters) - Even before he became the World Bank's clean energy chief, Daniel Kammen had a lustrous list of accomplishments: professor of energy, public policy and nuclear engineering at the University of California-Berkeley, director of the Renewable and Appropriate Energy Laboratory and Energy and Climate Fellow for the Western Hemisphere.
So why take on the formidable dual tasks of seeing that the world's poor get better access to energy while curbing the greenhouse gas emissions that contribute to climate change?
"We need to make a clean energy transition and we need to do it in a way that is inclusive and supportive of the poor, and not for the wealthy first and the poor second," Kammen told the Reuters Global Climate and Alternative Energy Summit on Tuesday. More at: http://www.reuters.com/article/idUSTRE69B68520101012

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Tuesday, October 12, 2010

Half the productivity, twice the carbon

Unless the IT industry adopts new energy-efficient technologies in the coming decade, it runs a serious risk of being unable to contribute to growing the global economy if limits are placed on carbon emissions. The findings come from an 18-month investigation by scholars at the Institute for Sustainable and Applied Infodynamics (ISAID) in Singapore and Rice University's Baker Institute for Public Policy in Houston.
"In the face of growing global concerns over greenhouse carbon emission, the key for the industry is finding new technologies that deliver more performance for each kilogram of CO2 emitted," said Rice computer scientist Krishna Palem, who directs ISAID, a joint institute of Rice and Singapore's Nanyang Technological University (NTU). "Fortunately, there are viable technological options on the table and the information and communication industries have a strong track record of embracing new technologies."
The report found the information and communication technology (ICT) industry in the U.S. is on pace to grow its at twice the rate of its contributions to over the coming decade.
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Thursday, October 7, 2010

Obama reshapes administration for a fresh strategy

President Obama Said to Be Moving Toward Executive Action on Energy
New White House appointments were said to target enabling President Obama to achieve goals, including climate issues, by executive action, rather than through legislation, the Los Angeles Times reported. An administration official, who requested anonymity, was quoted as saying: "The ambition is to get a reasonable start" on regulatory changes.

The Times wrote: "One area of likely administration action is climate change. Legislation curbing emissions that cause global warming is stalled in Congress. Such efforts have a goal of reducing greenhouse gas emissions to 17 percent below 2005 levels over the next decade. The Obama administration does not think it can achieve the same reductions through regulation alone." However, added the Times, EPA "is determined to use its regulatory power under the Clean Air Act to begin lowering emissions, in the absence of congressional action."
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Monday, October 4, 2010

Nukes 101: Up close and personal with nuclear power

Nuclear is vital to cleaner power generation
A visit to NextEra Energy's Seabrook nuclear plant in New Hampshire underscores nuclear's growing prominence as the U.S. tries to curb greenhouse-gas emissions from electricity generation, writes Martin LaMonica. While public perception of nuclear energy is still mixed, some critics have softened their views on nuclear plants, which release no heat-trapping gases during operation, LaMonica adds.
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Friday, September 17, 2010

Rockefeller sees 53 votes for bill to block EPA regs

Sen. Rockefeller Says 53 Senators Back Halt to EPA Climate Rules
Sen. Jay Rockefeller, D-W.Va., said his bill to impose a two-year hiatus on EPA stationary source GHG emissions rules had 53 supporters in the Senate, E&E News PM reported. Rockefeller also said he believed he could reach a 60-vote super majority for the bill. He expected the Senate to hold a vote on his bill in a lame-duck session this year, potentially as an amendment. Rockefeller said there were 11 Democrats and all 41 Republicans joining in his view that the EPA rules were wrong.
E&E News PM, Sept. 16.
Subscription required
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Thursday, September 16, 2010

Study: Worst CO2 emissions are yet to come

image credit: kleineolive (Wikimedia Commons)
Future fossil fuel infrastructure set to be built between now and 2060 will have the strongest effect on climate change, according to a report in the journal Science.
The global demand for energy is quickly rising, while political agreements and regulations to curb the resultant rise in greenhouse gas emissions have so far failed.
A new study from scientists in the US and Canada has calculated that most of the ‘key’ impacts of climate change could be avoided if no further CO2 power plants were built and that the real risks come from fossil fuel-based energy infrastructure which has yet to be built.
While previous policies have largely focused on regulating greenhouse gas emissions, a tactic that has so far not produced their desired results, the new study stresses the need for alternative sources of energy and technological innovation.
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MIT finds plentiful uranium for nuclear power plants USA Today

By Carolyn Kaster, AP
Plenty of uranium exists for nuclear power plants for decades, but more research is needed to develop a better way to dispose of the spent fuel, says a report today by the Massachusetts Institute of Technology"At any reasonable expected growth of nuclear power over this century, the availability of uranium will not be a constraint," says study co-chair Mujid Kazimi, an MIT professor of nuclear engineering. The researchers say the idea of a limited uranium supply has long prompted efforts to develop reactors that breed plutonium, which they argue are not economically viable.
The report supports President Obama's loan guarantees, controversial among environmental groups, to help build the first new nuclear power plants in three decades. It suggests nuclear power has significant potential to reduce greenhouse-gas emissions, arguing current U.S. nuclear plants generate 70% of all zero-carbon electricity.
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Tuesday, September 14, 2010

Chu: Nuclear power is key to limiting greenhouse-gas emissions

Chu: Nuclear power is key to limiting greenhouse-gas emissions
Nuclear energy can help the U.S. curb its carbon footprint by 80%, said Energy Secretary Steven Chu. Speaking to workers at Idaho National Laboratory, Chu touted nuclear energy's importance to the Obama administration, which has requested $54 billion in loan guarantees to revive the industry. He said the country was a nuclear leader but now lags behind France, Japan and South Korea. KIFI-TV (Idaho Falls)
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Monday, September 13, 2010

Turning Away From Coal Utilities are increasingly looking to natural gas to generate electricity

Turning Away From Coal

Utilities are increasingly looking to natural gas to generate electricity

Power companies are increasingly switching to natural gas to fuel their electricity plants, driven by low prices and forecasts of vast supplies for years to come.
While the trend started in the late 1990s, the momentum is accelerating and comes at the expense of coal. Some utilities are closing coal-fired plants; others are converting them to run on gas.
The switch is occurring globally and is getting a push from regulators who want to limit emissions that contribute to climate change, haze and health problems such as respiratory illness. Though efforts in Congress to pass legislation attaching a price to carbon emissions appear stalled for now, utilities still anticipate eventual carbon restrictions. The Tennessee Valley Authority, for example, recently announced a 20-year development plan that emphasizes nuclear and gas, and includes fewer coal units.
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TEPCO to boost renewable energy, expand overseas By Yuko Inoue TOKYO

logoImage via Wikipedia

TEPCO to boost renewable energy, expand overseas

(Reuters) - Tokyo Electric Power Co (TEPCO), Asia's biggest utility, plans to bolster its renewable and nuclear energy operations and to expand its business in Asia, as it faces rising pressure to cut greenhouse gas emissions and shrinking demand at home.
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