Tag Archive | "coal gasification"

Indiana has promising sites for underground coal ‘gasification’ plants


WEST LAFAYETTE, Ind. — A new report pinpoints promising sites in five southwestern Indiana counties for underground operations that can convert coal into a gas for electricity generation, production of chemicals, and plastics and fuels for cars, trucks and aircraft.

Researchers from Purdue University and the Indiana Geological Survey prepared the report, which will be presented Thursday (March 5) to the advisory panel of the Indiana Center for Coal Technology Research. The center is part of the Energy Center in Purdue’s Discovery Park.

Coal contains carbon and hydrogen, which are vital ingredients needed to produce transportation fuels and chemicals.

Coal contains carbon and hydrogen, which are vital ingredients needed to produce transportation fuels and chemicals.

The report identifies the best sites for the underground coal gasification operations using criteria established by Arvind Varma, Purdue’s R. Games Slayter Distinguished Professor of Chemical Engineering and Head of the School of Chemical Engineering, and former research scientist Evgeny Shafirovich, currently assistant research professor at the University of Texas at El Paso.

Varma and Shafirovich established seven primary criteria, including two major requirements: the coal deposit should be at least 1 meter and preferably 2 meters thick, and it should be located at least 60 meters underground.

The Indiana sites are located in the southwestern portion of the state in two large coal deposits, the Springfield and Seelyville coal beds.

“Indiana has seven major coal seams, but only these two have the largest coal reserves and are sufficiently thick for underground gasification,” Varma said. “The coal in these two seams represents nearly 50 percent of all the coal in the state, and a good fraction of it satisfies our criteria for underground gasification.”

Indiana possesses deep stores of coal that would be ideal for underground coal gasification but are otherwise uneconomical to mine, he said.

Another advantage of underground coal gasification is that it would enable the state to more efficiently capture and store – or sequester – carbon dioxide, a greenhouse gas.

The report identifies nine “promising zones” in the two seams for potential operations in Knox, Gibson, Vanderburgh, Warrick and Posey counties. A follow-up study is required to provide more detailed information about the sites and to perform geological, chemical and engineering evaluations, Varma said.

The report was written by Varma, Shafirovich and Indiana Geological Survey geologists Maria Mastalerz, Agnieszka Drobniak and John Rupp.

“The IGS colleagues were full partners in this study and contributed through their detailed computer data banks of coal deposits in the state as well as enormous background obtained through years of investigations,” Varma said.

Although underground coal gasification was invented decades ago, it has not seen widespread commercial application except in the former Soviet Union. The coal gasification process is usually performed in metal reactors called “gasifiers,” which are placed above ground. However, such gasifiers require the coal to be mined, transported and stored, whereas underground gasification is performed directly in the ground, eliminating these steps, Varma said.

The method turns coal into a gas by injecting steam and oxygen or air into the seam. The gas can then be used directly to generate electricity, turned into gasoline and diesel fuel, or used to make industrial chemicals, plastics and textiles.

A pilot plant is planned in Wyoming, with Australia-based Linc Energy Ltd. expected to break ground in the fourth quarter of 2009. The company aims to produce a minimum of 40,000 barrels per day of diesel and jet fuel from its initial commercial operations.

The report recommends more detailed geological, chemical and engineering studies that identify the optimal Indiana sites and also recommends that state officials initiate discussions for developing a pilot plant by establishing “cooperative agreements” with organizations and companies having expertise in the process, including Lawrence Livermore National Laboratory, Ergo Exergy Technologies Inc. and Linc Energy.

Coal contains carbon and hydrogen, which are vital ingredients needed to produce transportation fuels and chemicals.

“All the chemicals we see in our daily lives had their origin in some carbon and hydrogen source,” Varma said. “Currently, we produce chemicals from two sources – natural gas and petroleum. With petroleum, we have supply issues because the resource is limited and expensive to refine, but there is plenty of coal in the United States.”

Gas produced from coal, referred to as synthesis gas or syngas, can be converted into transportation fuels using a process called Fischer-Tropsch synthesis.

The new criteria will help energy companies and governments select the best sites for coal gasification operations. Varma and Shafirovich detailed the criteria in a review paper appearing in an upcoming issue of the journal Industrial & Engineering Chemistry Research.

The new report focuses only on Indiana.

“The most important requirements are that a site must contain large, thick and deep enough seam to justify the effort and expense of building a plant,” Varma said.

The research was supported by the Indiana Center for Coal Technology Research.

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Indiana Utility Regulators approve updated costs, carbon capture study for Clean Coal Gasification Plant


PLAINFIELD, Ind. — The Indiana Utility Regulatory Commission today approved Duke Energy’s revised cost estimate of $2.35 billion for its clean coal gasification power plant under construction in southwest Indiana.

Duke Energy (NYSE: DUK)

Duke Energy (NYSE: DUK)

The commission also approved the company’s $17 million request to study capturing a portion of the plant’s carbon dioxide emissions. Duke Energy would like to explore capturing and storing carbon dioxide permanently in underground geologic formations. Carbon dioxide is a greenhouse gas associated with global warming.

Duke Energy (NYSE: DUK) filed its $365 million cost increase request with state regulators in May. International demand for materials and rising labor costs were the main drivers for the cost increase. The company has now negotiated contracts with major suppliers and can better forecast project costs.

The plant is expected to have a total estimated average customer rate impact of about 18 percent. The rate impact will be phased in between now and 2013.

The Edwardsport project is the first major new coal-fired power plant to be constructed in Indiana in more than 20 years. The Indiana State Utility Forecasting Group predicts that Indiana will need new power generation equal to five projects the size of this plant by 2012.

The approximately 630-megawatt plant will use advanced integrated gasification combined cycle technology. The new plant will produce 10 times as much power as the existing plant at Edwardsport, yet it will emit less sulfur dioxide, nitrogen oxide and mercury than the plant it replaces. Due to the plant’s superior efficiency, it also will emit 45 percent less carbon dioxide per megawatt-hour than the existing facility.

Duke Energy selected an existing power plant site in Edwardsport, Ind., for the project. The company will retire the existing plant – with coal and oil units built between 1944 and 1951 – prior to startup of the new facility. Construction began early last year and is scheduled to be completed in 2012.

“When it’s completed, this will be one of the cleanest, most efficient coal-fired plants in the world,” said Duke Energy Indiana President Jim Stanley. “In the Midwest, coal is plentiful and relatively low-cost, and finding ways to burn it cleanly is fundamental to meeting our customers’ demand for power. If greenhouse gases are going to be regulated, and we believe they will be, then coal gasification plants with carbon capture and sequestration technology hold tremendous promise to reduce carbon dioxide emissions and help address global climate change.”

Integrated gasification combined cycle technology uses a coal gasification system to convert coal into a synthesis gas (syngas). The syngas is processed to remove sulfur, mercury and ash before being sent to a traditional combined cycle power plant, using two combustion turbines and a steam turbine to efficiently produce electricity.

Duke Energy also is meeting increased Indiana power demands through green power sources such as wind energy. Last year, the company began purchasing power from a Benton County, Ind., wind farm.

Duke Energy’s Indiana operations provide approximately 7,300 net megawatts of electricity to approximately 775,000 electric customers, making it the state’s largest electric supplier.

Duke Energy, one of the largest electric power companies in the United States, supplies and delivers electricity to approximately 4 million U.S. customers and natural gas service to approximately 520,000 customers in its regulated jurisdictions. The company has approximately 35,000 net megawatts of electric generating capacity in the Midwest and the Carolinas, and natural gas distribution services in Ohio and Kentucky. In addition, Duke Energy has more than 4,000 net megawatts of electric generation in Latin America, and is a joint-venture partner in a U.S. real estate company.

Headquartered in Charlotte, N.C., Duke Energy is a Fortune 500 company traded on the New York Stock Exchange under the symbol DUK. More information about the company is available on the Internet at: www.duke-energy.com.

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