chemical looping
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News
NETL: Coal Chemical Looping Combustion Closer to Commercialization
Chemical looping combustion (CLC), an advanced coal power technology that could markedly simplify carbon capture at power plants, has moved significantly closer to commercialization, owing to a breakthrough in oxygen carrier durability, the National Energy Technology Laboratory (NETL) said. The national laboratory, which is part of the U.S. Department of Energy (DOE), revealed on […]
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News
Game-Changing Coal Power Technologies
To be a relevant player in the future power mix, coal power efficiency and costs must improve, and technologies in the realm of research and development promise to do just that. Although most experts agree
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Coal
DOE Invests $28M in Research Projects to Enable Near-Zero-Emitting Fossil Fuel–Based Power Generation
Fourteen research and development projects to scale up coal-based advanced combustion power systems and gasification processes and improve costs and endurance of solid oxide fuel cells (SOFCs) have won investments of more than $28 million from the Department of Energy (DOE). The Energy Department on August 24 announced it has selected the projects to help […]
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Coal
Ten Advanced Combustion Systems That Are Getting the Government’s Backing
Ten projects selected on June 8 to receive funding through the National Energy Technology Laboratory’s (NETL’s) Advanced Combustion Systems Program could lower costs and improve the performance of combustion systems that generate power with near-zero emissions, the Department of Energy (DOE) said. The projects, which are mostly based on oxycombustion and chemical looping, include the […]
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Power
DOE Backs Four Gasification Research Projects
Four industry-led projects will each receive about $16 million in federal funding to help them to significantly reduce the cost of producing hydrogen-rich syngas derived from fossil fuels and advance the gasification process for power generation and syngas production, the Department of Energy (DOE) announced on Nov. 6. “Gasification plants have the potential for greater […]
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