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Mitsubishi Hitachi Power Systems introduces 63% efficient, 540MW JAC gas turbine; -70% CO2 compared to older coal-fired plants

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Mitsubishi Hitachi Power Systems (MHPS) has introduced the M501JAC, an enhanced air-cooled J-Series gas turbine offering an unmatched combination of record output, efficiency and a proven 99.5% Replacing older coal-fired power plants with the enhanced JAC can reduce CO 2 emissions nearly 70%. reliability. reliability.

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Modified SOFC anodes allow operation at lower temperatures with carbon-containing gases; potential for much more efficient and cleaner generation of electricity from coal

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Using barium oxide nanoparticles, a team of researchers led by Georgia Tech has modified the surface of conventional anodes for solid oxide fuel cells (SOFCs) to enable operation at lower temperatures (750 °C) with carbon-containing gases—e.g., gasified coal—by eliminating the coking problem. Click to enlarge.

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DOE Awarding More Than $3.3M to 7 Universities To Conduct Advanced Turbine Technology Studies for Advanced Coal-Based Power Generation

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The universities—located in Georgia, Texas, North Dakota, Louisiana, California, and New York—will investigate the technology needed for the efficient operation of turbines using coal-derived synthesis gas (syngas) and high hydrogen content (HHC) fuels. DOE share: $404,404; recipient share: $101,212).

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DOE awards ~$25M to 8 projects for CO2 capture and compression; $15M for novel Direct Fuel Cell system

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The selected projects focus on advancing the development of a suite of post-combustion CO 2 capture and supersonic compression systems for new and existing coal-based electric generating plants, specifically: (1) supersonic compression systems; (2) small pilot-scale (from 0.5 FuelCell Energy Inc. Source: FuelCell Energy.

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DOE selects 10 projects for $5M in funding to conduct advanced turbine technology research

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Another five projects will develop efficient and effective cooling techniques along with robust materials in response to increased turbine inlet temperatures in conjunction with increased operating pressures in an effort to increase gas turbine outputs and efficiencies, while decreasing plant capital costs. Texas A&M University.

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