Thursday, October 15, 2009
Climate Change Bill Needs State Roles, Says Emory's Buzbee
Buzbee's analysis of the bill, one of a series from the Center for Progressive Reform (CPR) by their member scholars, appears on the CPRBlog.
One unintended consequence of the bill's many implementation steps and corrective mechanisms, writes Buzbee, "is an avalanche of obligations." A big question, he says, is whether this "will lead to implementation delays."
A big risk in Boxer-Kerry, says Buzbee, "is that the federal law could prove too lax, but that the federal legislative and regulatory venues would be gridlocked and hence unable to set new, lower emissions caps or take other actions to lower emissions levels."
If that happens, he writes, "states might once again want to reassume the climate change leadership role they exhibited over the past decade and take actions to reduce emissions."
The bill does have provisions to preserve states' ability to require lower emissions than federally mandated, and provisions to prevent polluters from "simply turning and selling emission allowances or credits outside the jurisdiction."
Boxer-Kerry also retains the power of the federal EPA "to take action to supplement a cap-and-trade scheme if that proves necessary," writes Buzbee. "In reality, the mere threat of such supplemental action could nudge polluters into supporting implementation of the cap-and-trade regime."
Yet the bill is less than clear on whether "state supplemental roles are meant to be preserved under all the bill's provisions," writes Buzbee. A second important but missing element "is a citizen suit provision authorizing citizens to sue regulators, polluters, or other players in the cap-and-trade market for violations of the law."
With a law this complicated, writes Buzbee, "a multiplicity of enforcers is needed."
He concludes that "retention of state roles in combating climate change and adding a citizen suit provision" are near necessities "if a cap-and-trade market is to become a well policed reality."
Buzbee is professor of law and director of the Environmental and Natural Resources Law Program at Emory Law School. He is also a director of Emory’s new Center on Federalism and Intersystemic Governance.
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Wednesday, October 14, 2009
Biodiesel Returns More Energy To The Earth Than Ever, Study Finds
Newly published research from the University of Idaho and U.S. Department of Agriculture shows that for every unit of fossil energy needed to produce biodiesel, the return is 4.5 units of energy. This energy-in, energy-out ratio is "energy balance."
Biodiesel made from soybean oil has a high energy balance because the main energy source used to grow soybeans is solar.
"This gives Americans even more reason to put their faith in the environmental and societal benefits of biodiesel," said Joe Jobe, CEO of the National Biodiesel Board. "The Environmental Protection Agency should take this into account when considering biodiesel's greenhouse gas reductions," he said.
Jobe was referring to EPA's proposed rule to implement the expanded Renewable Fuels Standard (RFS2). EPA used 2005 baseline numbers for petroleum and biodiesel to project carbon impact 22 years in the future. That stacks the deck in favor of petroleum.
"In its rulemaking, EPA should recognize that biodiesel production is growing more efficient, while oil exploration and drilling becomes more intensive each day," Jobe said.
The USDA/Idaho study finds key drivers that continue to make biodiesel an efficient fuel choice:
-- New seed varieties and management practices are upping soybean yields.
-- Farmers have minimized cultivation of the soil. These reduced tillage
practices have cut how much fuel they need to grow soybeans.
-- Modern soybean varieties have reduced the need for pesticides.
-- Today's soybean processing and biodiesel plants are more energy
efficient.
"Our research shows continued progress in the renewability of biodiesel production," said University of Idaho Department of Biological and Agricultural Engineering Assistant Professor Dev Shrestha. "Farmers, soybean processors and biodiesel producers are getting even better at using non-fossil resources and adopting other efficiencies that are leading to greater energy returns."
The new study is based on biodiesel produced from soybean oil, the largest share of the biodiesel market. Other abundant sources used for biodiesel included recycled cooking oil, fats and other plant oils, such as canola oil. Biodiesel is a clean-burning renewable fuel for diesel engines. It improves air quality and creates green-collar jobs. The NBB is the national trade association of the industry.
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Oglethorpe Power Closes Purchase of Hartwell Electric Generating Plant
Oglethorpe Power previously purchased the entire output of the approximately 300-megawatt oil and gas-fired plant under a contract set to expire in 2019. A right-of-first refusal clause in that contract gave the corporation first purchase rights to the facility if it was sold. In April of 2009, International Power announced that it, together with its partner, had reached agreement to sell the Hartwell plant to Southern Power Company, subject to a decision by Oglethorpe Power on whether to purchase the plant itself. In July 2009, Oglethorpe Power notified the plant's owner that it would purchase the facility.
"Purchasing and operating the Hartwell facility as part of our own generating portfolio will help ensure that the plant continues to provide needed peaking power to Georgia's EMCs and the citizens of our state," said Elizabeth B. Higgins, Chief Financial Officer of Oglethorpe Power.
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Tuesday, October 13, 2009
Oil Demand from Developed Countries Has Peaked
CAMOil demand in developed countries—currently 54 percent of all oil demand—likely reached its all-time peak in 2005, according to a new research report by IHS Cambridge Energy Research Associates. While world oil demand is now set to grow as the world economy moves from recession to recovery, the demand lost in 30 developed countries that make up the Organization for Economic Cooperation and Development (OECD) is not likely to ever be regained, the report finds.
“The economic downturn has been masking a larger trend in the oil demand of developed countries,” said IHS CERA Chairman and Pulitzer Prize-winning author of The Prize, Daniel Yergin. “The fact is that OECD oil demand has been falling since late 2005, well before the Great Recession began.”
The key factor making it unlikely for OECD demand to ever return to its 2005 peak is that petroleum demand in the transportation sector—which accounts for 60 percent of OECD petroleum demand—is likely to flatten out after years of steady growth. Oil demand outside the transportation sector has already been relatively flat since 1980. Now the conjunction of several long-term factors is doing the same to transportation:
- Demographic and socioeconomic changes – Vehicle ownership rates in developed countries have reached a “saturation” level while aging populations with low to negative population growth suggests a flattening of demand for mobility. The growth of women’s participation in the labor force is also leveling off, meaning the flattening of another source of demand growth.
- Stronger governmental and consumer push for passenger vehicle fuel economy gains – Energy security concerns and climate change initiatives have led OECD governments to tighten fuel economy standards. The rise in energy prices over the past several years has pushed consumers to value increased efficiency and the auto industry through a major reorientation toward greater efficiency.
- Greater penetration of alternative fuels and vehicle technologies – Governments across the OECD continue to favor mandates that increase the share of alternative fuels in the transportation sector. New technologies such as plug-in hybrid electric vehicles and next-generation biofuels could also have a greater impact in the future.
“Petroleum for transportation has been the single driving force behind OECD oil demand for the past two decades,” said Aaron Brady, IHS CERA Director, Global Oil. “After the oil crisis of the early 1980s the nontransportation sector turned to readily available substitutes like coal, gas or nuclear power. Now we are seeing the tempering of the last significant driver of oil demand in developed countries—petroleum for transportation.”
Future world oil demand growth will be driven almost exclusively by emerging markets. The latest IHS CERA World Oil Watch expects oil demand to increase from 83.8 mbd in 2009 to 89.1 mbd in 2014. 83 percent (4.4 mbd) will come from non-OECD countries. China alone is expected to account for 1.6 mbd of cumulative growth. Just 900,000 bpd of growth is expected to come from OECD countries, just a fraction of the 3.7 million bpd of demand lost over the course of 2005 to 2009.
But the peak of OECD oil demand does not mean that the end of the oil age in these developed economies is imminent, the report finds. The size of the decline in oil demand from the peak year of 2005 to 2030 is expected to be fairly modest, says Brady, assuming that some demand rebounds over the next few years.
“The reason for a modest decline is that although the potential for demand growth has diminished so has the potential, at least in the short to medium term, for large-scale substitution away from petroleum,” he said. “Today’s alternative fuels and technologies can only gain market share slowly owing to the slow turnover of the cars, trucks and airplanes that use petroleum. Petroleum will still be the dominant fuel for transportation 25 years from now, although other sources of energy will likely have captured a growing foothold in transportation.”
Regardless if the decline is modest, the peak of OECD demand will have major implications, the report finds. Peak demand will dampen the rate of increase in dependency on oil imports. It likewise could also help make economic growth in those countries less susceptible to oil price shocks. Finally, peak OECD demand could counteract the expected rapid demand growth in the developing world.
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About IHS CERA (www.ihscera.com)
IHS CERA is a leading business information provider to energy companies, consumers, financial institutions, technology providers and governments. IHS CERA (www.cera.com) delivers strategic knowledge and independent analysis on energy markets, geopolitics, industry trends, and strategy. IHS CERA is based in Cambridge, Mass., and has offices in Bangkok, Beijing, Calgary, Dubai, Johannesburg, Mexico City, Moscow, Mumbai, Oslo, Paris, Rio de Janeiro, San Francisco, Tokyo and Washington, DC.
About IHS (www.ihs.com)
IHS (NYSE: IHS) is a leading global source of critical information and insight, dedicated to providing the most complete and trusted information and expertise. IHS product and service solutions span four areas of information that encompass the most important concerns facing global business today: Energy, Product Lifecycle, Security, and Environment, all supported by Macroeconomics. By focusing on customers first, IHS enables innovative and successful decision-making for customers ranging from governments and multinational companies to smaller companies and technical professionals in more than 180 countries. IHS is celebrating its 50th anniversary in 2009 and employs approximately 4,000 people in 20 countries.
IHS is a registered trademark of IHS Inc. CERA is a registered trademark of Cambridge Energy Research Associates, Inc. Copyright ©2009 IHS Inc. All rights reserved.
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Thursday, October 8, 2009
Shining Light on Green Energy
In collaboration with scientists at Emory and elsewhere, Lian's team is studying ways to convert the sun's energy into cheap and clean solutions to the global energy crisis. "Solar energy conversion is very complex," he says. "Spectroscopy allows us to break it down into small, fundamental steps that you can study carefully."
Quantum dots are good at absorbing light and could provide energy to drive reactions needed for solar energy conversion processes.
"These are all very challenging scientific problems," Lian says, adding that it will take many people, working across disciplines, to make solar energy go mainstream. "We have to solve these problems, because using fossil fuels is not sustainable."
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Wednesday, October 7, 2009
Georgia Public Service Commission Allows Atlanta Gas Light to Make New STRIDES for Better Service
This program, called the Georgia Strategic Infrastructure Development and Enhancement Program (STRIDE), will merge into the company's existing Pipeline Replacement Program (PRP) and incorporate a new Integrated System Reinforcement Program (i-SRP). STRIDE's initial three-year construction phase, which was approved today, is estimated at $175.7 million.
"STRIDE's approach to regulatory oversight and rate recovery began with the Public Service Commission's creation of the PRP mechanism in 1998," said Hank Linginfelter, executive vice president, Utility Operations, AGL Resources. "The Georgia Public Service commission continues to show leadership in the area of limiting rate impacts on our customers while encouraging necessary investment."
Atlanta's metropolitan area has experienced rapid growth in the past two decades, and much of that growth has shifted to regions farther removed from Atlanta Gas Light's existing interstate supply points and high-pressure transmission pipeline system. STRIDE system improvements will target the counties of Cherokee, Clayton, Cobb, Coweta, Gwinnett, Fulton, Forsyth, Henry, Paulding and Rockdale.
"Atlanta Gas Light has an obligation to maintain its system to provide adequate operating pressures to serve our customers on the coldest days of the year," said Suzanne Sitherwood, president, Atlanta Gas Light. "We proposed STRIDE as a new regulatory approach to perform the necessary improvements and keep our monthly customer charges as low as possible."
The PSC also authorized Atlanta Gas Light to implement recovery for the STRIDE program. The initial charge, expected to begin in late October, will increase rates for all firm customers by an additional $0.39 per month. Beginning October 2010, the rates will be $0.78 per month, and beginning in October 2011, the rates will be $1.18 per month.
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Southern Company, University of Alabama at Birmingham to Partner on Greenhouse Gas Reduction Project
The research project, selected by the U.S. Department of Energy for funding through the American Recovery and Reinvestment Act of 2009, will help develop an educated work force to support commercial utility-scale geologic sequestration activities in the future, said Richard Esposito, Southern Company principal geologist.
The project includes the involvement of undergraduate engineering honors students in independent research on geologic sequestration focused on the sealing capacity of cap rocks serving as barriers to carbon dioxide migration in geologic formations; development of an advanced undergraduate/graduate level course on coal combustion and gasification, climate change, and carbon sequestration; support of six graduate students conducting research on the development of protocols for assessment of seal layer integrity; and analysis of cap rock samples from geologic formations under consideration for sequestration of CO2.
"Understanding the integrity of cap rocks is one of the key elements to safe and permanent sequestration," Esposito said.
The project is one of 43 that DOE is funding to offer training opportunities for graduate and undergraduate students that will provide the human capital and skills required for implementing and deploying carbon capture and storage technologies.
"This is an excellent opportunity to meet an important need as we seek to commercially deploy carbon capture and sequestration technology - a work force that is educated and skilled in how the technology works," said Chris Hobson, Southern Company chief environmental officer. "We are pleased to have this opportunity to partner with UAB to increase our knowledge of geologic sequestration."
The project will provide the UAB investigators and their students with rock samples for study in the laboratory, geologic data with which to construct mathematical models and simulations, direct contact with Southern Company geologists and engineers engaged in carbon capture and storage research and development, and opportunities to visit field sites where large-scale tests of carbon sequestration are underway, said Peter Walsh, UAB research professor of mechanical engineering.
"Southern Company's involvement and support are key components of the training for our students to work in carbon capture and storage," Walsh said. "We are delighted to partner with Southern Company on a project that enables us to contribute to a solution of one of the most interesting, important and complex issues of our time."
Southern Company is committed to leadership in researching, developing and deploying advanced technologies, including carbon capture and sequestration, to reduce greenhouse gas emissions. Among the company's key projects:
- DOE recently selected Southern Company to operate and manage the new National Carbon Capture Center, which will develop and test advanced technologies to capture carbon dioxide from coal-based power plants.
- Southern Company is partnering with DOE, Mitsubishi Heavy Industries Ltd., the Electric Power Research Institute and others to build a demonstration facility to capture carbon dioxide emissions from an existing unit of subsidiary Alabama Power's Plant Barry near Mobile, Ala. CO2 from the plant will be transported for permanent underground storage in a demonstration of start-to-finish carbon capture and sequestration.
- Southern Company subsidiary Mississippi Power's Plant Daniel is host site for a sequestration demonstration in which 3,000 metric tons of CO2 have been injected into a deep underground geologic formation.
- Mississippi Power has proposed to build a 582-megawatt coal gasification plant using advanced Transport Integrated Gasification (TRIG(TM)) technology developed by Southern Company, KBR Inc. and others that also will include 65 percent carbon capture and re-use.
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Friday, October 2, 2009
New Material Could Expand Applications for Solid Oxide Fuel Cells
Though the long-term durability of the new mixed ion conductor material must still be proven, its development could address two of the most vexing problems facing the solid oxide fuel cells: tolerance of sulfur in fuels and resistance to carbon build-up known as coking. The new material could also allow solid oxide fuel cells—which convert fuel to electricity more efficiently than other fuel cells—to operate at lower temperatures, potentially reducing material and fabrication costs.
“The development of this material suggests that we could have a much less expensive solid oxide fuel cell, and that it could be more compact, which would increase the range of potential applications,” said Meilin Liu, a Regent’s professor in the School of Materials Science and Engineering at the Georgia Institute of Technology. “This new material would potentially allow the fuel cells to run with dirty hydrocarbon fuels without the need to clean them and supply water.”
The research was supported by the U.S. Department of Energy’s Basic Energy Science Catalysis Science Program.
Like all fuel cells, solid oxide fuel cells (SOFCs) use an electrochemical process to produce electricity by oxidizing a fuel. As the name implies, SOFCs use a ceramic electrolyte, a material known as yttria-stabilized zirconia (YSZ).
The fuel cell’s anode uses a composite consisting of YSZ and the metal nickel. This anode provides excellent catalytic activity for fuel oxidation, good conductivity for collecting current generated, and compatibility with the cell’s electrolyte—which is also YSZ.
But the material has three significant drawbacks: even small amounts of sulfur in fuel “poison” the anode to dramatically reduce efficiency, the use of hydrocarbon fuels creates carbon build-up which clogs the anode—and because YSZ has limited conductivity at low temperatures—SOFCs must operate at high temperatures.
As a result, fuels used in SOFCs, such as natural gas or propane, must be purified to remove sulfur, which increases their cost. Water in the form of steam must also be supplied to a reformer that converts hydrocarbons to hydrogen and carbon monoxide before being fed to the fuel cells, adding complexity to the overall system and reducing energy efficiency. And the high-temperature operation means the cells must be fabricated from costly exotic materials, which keeps SOFCs too expensive for many applications.
The new material developed at Georgia Tech addresses all three of those anode issues. Referred to as BZCYYb as shorthand for its complex composition, the material tolerates hydrogen sulfide in concentrations as high as 50 parts-per-million, does not accumulate carbon—and can operate efficiently at temperatures as low as 500 degrees Celsius.
The BZCYYb (Barium-Zirconium-Cerium-Yttrium-Ytterbium Oxide) material could be used in a variety of ways: as a coating on the traditional Ni-YSZ anode, as a replacement for the YSZ in the anode and as a replacement for the entire YSZ electrolyte system. Liu believes the first two options are more viable.
So far, the new material has provided steady performance for up to 1,000 hours of operation in a small laboratory-scale SOFC. To be commercially viable, however, the material will have to be proven in operation for up to five years—the expected lifespan of a commercial SOFC.
“We don’t see any problems ahead for fabrication or other issues that might prevent scale-up,” said Liu. “The material is produced using standard solid-state reactions and is straightforward.”
The researchers don’t yet understand how their new material resists deactivation by sulfur and carbon, but theorize that it may provide enhanced catalytic activity for oxidizing sulfur and both cracking and reforming hydrocarbons.
In addition to its tolerance of sulfur and resistance to coking, the BZCYYb material’s conductivity at lower temperature could also provide a significant advantage for SOFCs.
“If we could reduce operating temperatures to 500 or 600 degrees Celsius, that would allow us to use less expensive metals as interconnects,” Liu noted. “Getting the temperature down to 300 to 400 degrees could allow use of much less expensive materials in the packaging, which would dramatically reduce the cost of these systems.”
Beyond its use in fuel cells, the material developed by Liu and his team—which also included Lei Yang, Shizhong Wang, Kevin Blinn, Mingfei Liu, Ze Liu and Zhe Cheng—could also be used for fuel reforming to feed other types of fuel cells.
Though the technology for solid oxide fuel cells is currently less mature than that for other types of fuel cells, Liu believes SOFCs will ultimately win out because they don’t require precious metals such as platinum and their efficiency can be higher—as much as 80 percent with co-generation use of waste heat.
“Solid oxide fuel cells offer high energy efficiency, the potential for direct utilization of all types of fuels including renewable biofuels, and the possibility of lower costs since they do not use any precious metals,” said Liu. “We are working to reduce the cost of solid oxide fuel cells to make them viable in many new applications, and this new material brings us much closer to doing that.”
This research was supported by the U.S. Department of Energy’s Basic Energy Science Catalysis Science Program under grant DE-FG02-06ER15837. The comments and conclusions in this document are those of the researchers and do not necessarily represent the views of the U.S. Department of Energy.
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Thursday, October 1, 2009
Georgia Power Encourages Consumers To Take Advantage of Energy-Efficient Programs That Begin Today
During this time, all Georgia consumers who purchase selected ENERGY STAR® -qualified or WaterSense® labeled products and other designated energy-efficient items will pay no state or local sales and use tax. The offer is good on purchases of $1,500 or less per product on items for personal or home use only.
Qualified appliances include dishwashers, clothes washers, refrigerators, air conditioners, dehumidifiers, programmable thermostats, ceiling fans, windows and doors, compact fluorescent light bulbs and other eligible products. To find out which products qualify, visit https://etax.dor.ga.gov/salestax/holiday/2009/index.aspx.
Consumers who buy energy-efficient ENERGY STAR-qualified products will receive the immediate tax savings, but more importantly, they will begin saving additional money and energy each time they use their ENERGY STAR product. These products use up to 50 percent less energy than those without the ENERGY STAR label, meaning Georgia residents will save money and energy, while helping protect our environment.
This is the fifth consecutive year the Georgia General Assembly has specifically made ENERGY STAR-qualified appliances and products eligible for a sales tax exemption.
ENERGY STAR is the U.S. government's nationally recognized program committed to helping individuals save money and energy while benefiting the environment through superior energy efficiency. ENERGY STAR products meet strict energy efficiency guidelines set by the U.S. Environmental Protection Agency (EPA) and the U.S. Department of Energy. These products use advanced technologies that result in 10 to 50 percent less energy use than non-qualified products.
The Georgia Environmental Protection Department estimates state residents can reduce their energy use and save up to 30 percent, or $600 annually, on their utility bills by looking to ENERGY STAR products.
Consumers are also encouraged to take the "Change the World, Start with ENERGY STAR" pledge. Taking the pledge is as simple as changing a light bulb, setting a programmable thermostat, making sure your home is well insulated or other energy efficient lifestyle changes. Changing a standard light bulb to an ENERGY STAR-qualified CFL saves more than $30 over the life of the bulb.
Customers are invited to take the pledge online at www.georgiapower.com or look for the pledge card in their October bills.
Recycling just got easier!
Georgia Power has partnered with The Home Depot to offer recycling for compact fluorescent light bulbs at the retailer's stores in Georgia.
Georgia Power sponsors in-store bins at all 88 Home Depots in the state. This creates the state's most widespread recycling program for CFLs and brings relatively convenient recycling within reach of most households.
Georgia Power encourages its customers to practice energy efficiency year-round. For more information on the Georgia sales-tax-free weekend or for money-saving energy efficiency tips visit www.georgiapower.com. For additional information about ENERGY STAR visit www.energystar.gov.
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Subplots Will Signal Whether New Senate Energy Bill Gets Passed
On Wednesday, U.S. Sens. Barbara Boxer (D-Calif.) and John Kerry (D-Mass.) introduced a bill that would establish for the first time a comprehensive national low-carbon energy program.
Tim Profeta, director of Duke University’s Nicholas Institute for Environmental Policy Solutions, has seen similar legislation introduced on Capitol Hill over the past 10 years, and calls the latest bill “a cautious first move in what must be a bipartisan leap to modernize the U.S. energy economy. The bill leaves question marks, appropriately, on some of the toughest issues.”
Profeta, who served as Counsel for the Environment to Sen. Joseph Lieberman before becoming founding director of the Nicholas Institute in 2005, said there will be telltale signs on whether Democrats and Republicans will be able to reach agreement on this issue.
“Make sure to watch three key subplots in this story develop,” he says. “First, will senators struggle to choose the right policy tool to prevent the costs of energy transition from harming consumers, business or the economy as a whole.
“Second, as the global economy continues to grow as an organic whole, how will lawmakers strengthen U.S. competitiveness in international trade.
“Third, in the wake of last year's Wall Street financial meltdown, will the new market for carbon credits be designed smartly, drawing on all of our knowledge and experience of how efficient markets work.”
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Wednesday, September 30, 2009
GSU scientists investigate a type of soil’s ability to absorb byproduct of nuclear reactions
W. Crawford Elliott, chair of the Department of Geosciences, is the lead investigator on a project to evaluate the absorption of cesium-137 by a soil commonly found in the Piedmont regions of the South at the Savannah River Site in South Carolina, near Augusta, Ga. The research has been funded with a $149,477 grant from the Department of Energy Office of Biological and Environmental Research.
Cesium-137 is a byproduct nuclear fission with uranium-235. The fission releases energy that can be used in nuclear reactors to produce power.
The Savannah River Site, located in Aiken and Barnwell counties in South Carolina was the home of production for elements of nuclear weapons during the Cold War, but much of the work performed there now involves mitigation of the legacies of nuclear reactions.
Cesium-137, which has a half-life of about 30 years, emits both beta particles and gamma radiation. It has been found in the environment as a result of nuclear waste and accidental releases.
One hypothesis is that a common soil mineral in Piedmont regions, called hydroxy interstratified vermiculite, might absorb the cesium, and researchers will first test the soil using natural, non-radioactive cesium-133.
“We think that there’s a special place in the hydroxy interstratified vermiculite lattice that favors the uptake of cesium, and if that's the case, we’re first going to study these soils to see how much natural cesium is being taken up,” Elliott said.
The next step is to take cesium-137 and pour it through the soil to see what kind of exchange happens.
“We have a good hypothesis that these soils sequester natural cesium on their own, as much and maybe more so than other micas or other kinds of minerals,” Elliott said.
The work might lead scientists to a better understanding of how to mitigate the radioactive element.
“The project would certainly give us some of the best knowledge about the role of soils in the process and how they could naturally attenuate the cesium," he said.
A side project will investigate a byproduct of kaolin processing — a clear, shiny mica that is sorted out from kaolin and sold to paint companies and others. The mica might be able to absorb and mitigate cesium-137.
“You might be able to make into a permeable barrier, or even make it into a material similar to what’s used at a grocery store to clean up a spill,” Elliott said.
Elliott is working on the project with Seth Rose and Eirik Krogstad, associate professors of geosciences at Georgia State; Marion Wampler, adjunct associate professor in geosciences; Bernd Kahn and Robert Rosson of the Georgia Tech Research Institute; and Daniel Kaplan of the U.S. Department of Energy.
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Tuesday, September 29, 2009
Cooler Weather Brings Heating Decisions -- Public Service Web Site Helps Georgia Consumers Compare and Save on Natural Gas
Georgians who live in the Atlanta Gas Light service territory can go to MyNaturalGasCoach.com for information about natural gas marketers and their rates to help make an informed decision and save money when choosing a natural gas marketer. The interactive site helps "coach" consumers with information all on one site, including the following:
-- A convenient list of Georgia's natural gas marketers, plus toll-free
numbers and links to their web sites for price comparison
-- An explanation of variable and fixed price plan options and how
service fees affect your natural gas bill
-- How to read and understand your natural gas bill
It's about choice and saving money. It's important that the consumer know there are options," said Bill Edge, public information officer for the Georgia Public Service Commission. "MyNaturalGasCoach.com is a great source to help everyone learn more about their options in terms of choosing a natural gas marketer."
Consumers can go to the site and take an online "Natural Gas Fitness Test" between now and November 23, 2009, and be automatically entered into the My Natural Gas Coach Sweepstakes to win four tickets to the New Year's Eve Chick-fil-A Football Bowl Game, accommodations at the Buckhead Intercontinental Hotel and a limo for the evening.
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