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JERA and IHI to demo ammonia co-firing at a large-scale commercial coal-fired power plant

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This will be the world’s first demonstration project in which a large amount of ammonia will be co-fired in a large-scale commercial coal-fired power plant. Ammonia enables efficient, low-cost transport and storage of hydrogen. The project will run for approximately 4 years from June 2021 to March 2025.

Coal 348
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BNEF: steel industry set to pivot to hydrogen in green push; additional $278B for clean capacity and retrofits

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Government and corporate net-zero commitments are pushing the steel industry to cancel out its emissions by 2050. Another 45% could come from recycled material, and the rest from a combination of older, coal-fired plants fitted with carbon capture systems and innovative processes using electricity to refine iron ore into iron and steel.

Hydrogen 221
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Alternative Fuel Technologies, Inc. Receives New Order for DME Feed Pumps From Shanghai Diesel Engine Company

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Shanghai Diesel Engine Company is owned by Shanghai Automotive Industrial Corporation (SAIC), one of the top three automotive corporations in China. The company’s ultima goal is series production of DME fuel systems for the global automotive market by 2011. Alternative Fuel Technologies, Inc.

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DOE awarding $72M to 27 projects to develop and advance carbon capture technologies, including direct air capture

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Under this cost-shared research and development (R&D), DOE is awarding $51 million to nine new projects for coal and natural gas power and industrial sources. In prior work with DOE, MTR has advanced membrane CO 2 capture technology for coal power plants through small engineering scale testing and studies. ION Clean Energy Inc.

Carbon 236
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GE and CPECC Sign Agreements with USTDA to Advance Commercial Scale IGCC in China

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IGCC and carbon capture technologies have been commercially demonstrated and will need to be widely deployed to enable low cost power generation from domestic fossil energy resources, while at the same time achieving significant reductions in carbon dioxide emissions globally.

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Report finds says “negative emissions technologies” need to play a large role in mitigating climate change

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Although climate mitigation remains the motivation for global investments in NETs, the committee that carried out the study and wrote the report determined that advances in NETs also could have economic rewards, as intellectual property rights and economic benefits will likely accrue to the nations that develop the best technology.

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Stanford GCEP awards $6.6M to 7 projects; focus on combining energy conversion with carbon-neutral fuel production

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Stanford’s Global Climate and Energy Project (GCEP) is awarding $6.6 The goal is to design a novel fuel cell that uses coal and water to generate hydrogen, water and a stream of carbon dioxide gas, which can be captured and sequestered. High-efficiency thin-film solar cells.