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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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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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DOE and RTI will design, build, and test a warm gas cleanup system—based on RTI’s high-temperature syngas cleanup technology—to remove multiple contaminants from coal-derived syngas. Data on thermal efficiency, emissions, and cost benefits will be gathered during more than 5,000 hours of testing the warm syngas cleaning system.

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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. and the Polk Tampa Electric IGCC plant in Florida that helped demonstrate the commercial feasibility of IGCC. GE has been at the forefront of IGCC technology for more than two decades.

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

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The US Department of Energy’s National Energy Technology Laboratory (NETL) has selected 12 projects to receive funding through its Crosscutting Research Program’s Transitional Technology Development to Enable Highly Efficient Power Systems with Carbon Management initiative. Transitional Technology Development Awards. Lead organization.

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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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improved oilseed crop that uses carbon more efficiently than. Energy Plant Design The University of California, Los Angeles, will re-engineer. streamline the process by which green plants convert carbon. several genes that allow the plant to use light more efficiently, increase its carbon uptake, and divert more energy to the.

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