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DOE, RTI to Design and Build Coal Syngas Cleanup System for IGCC Power Plants to Reduce Cost of Removing Contaminants, Capturing CO2; Potential for Synthetic Chemicals and Fuels

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The system also holds the potential to reduce the cost of producing chemicals, transportation fuels, and substitute natural gas from gasified coal. The system also holds the potential to reduce the cost of producing chemicals, transportation fuels, and substitute natural gas from gasified coal. of the sulfur from the syngas.

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GE Technology Selected for Hydrogen Energy IGCC Project in California

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would be designed to capture up to 90% of its carbon dioxide for enhanced oil recovery and sequestration in an adjacent oil field. In 2007, GE and BP formed a global alliance to jointly develop and deploy technology for at least five IGCC power plants that could significantly reduce carbon dioxide emissions from electricity generation.

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GE and CPECC Sign Agreements with USTDA to Advance Commercial Scale IGCC in China

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In this initial study phase, GE and CPECC will evaluate the cost and performance of an IGCC design. Gasification technology has become a critical tool in the expansion of the Chinese economy, allowing a wide variety of industrial products and fuels to be created from low-cost, abundant coal resources.

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DOE NETL selects 12 fossil-fuel power systems projects for funding

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will partner with GE Global Research, EPRI, Southern Company, American Electric Power and FirstEnergy to design and test a high temperature nickel-based superalloy thick-walled header for cycling and flexible plant operation in new and existing plants. DOE: $750,000 Non-DOE: $187,500 Total: $937,500 (20% cost share). General Electric Company.

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