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DOE to award up to $30M for direct air and ocean capture of CO2; conversion to fuels and chemicals

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Projects selected under this funding opportunity announcement (FOA) will perform conceptual design studies followed by field validations of cost-effective processes for ocean-based carbon capture and for direct air capture of CO 2 coupled with carbon-free hydrogen and captured CO 2 to create carbon-neutral methanol.

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AirCapture, OCOchem and partners win $2.93M DOE grant for direct air capture of CO2 and conversion to formic acid

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Carbon dioxide capture company AirCapture and carbon dioxide conversion company OCOchem, along with other partners, have won a $2.93-million OCOchem transforms recycled CO 2 , water and zero-carbon electricity to produce formic acid, a globally traded commodity chemical and emerging electro-fuel.

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Stanford engineers develop catalyst strategy to improve turnover frequencies for CO2 conversion to hydrocarbons by orders of magnitude

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Researchers at Stanford University have shown that porous polymer encapsulation of metal-supported catalysts can drive the selectivity of CO 2 conversion to hydrocarbons. To capture as much carbon as possible, you want the longest chain hydrocarbons. Chains with eight to 12 carbon atoms would be the ideal. —Zhou et al.

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Strategic Biofuels successfully tests carbon capture and storage for renewable diesel plant

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Strategic Biofuels announced that its Carbon Capture and Sequestration (CCS) Test Well Program was successfully completed at the company’s Louisiana Green Fuels Project (LGF) in Caldwell Parish, Louisiana. Deep carbon negativity greatly increases the potential carbon credit revenues from our fuel and vastly improves the project’s returns.

Renewable 353
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Aviation H2 selects liquid ammonia as carbon-free fuel of choice

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Chiefly its advantages include high gravimetric and volumetric hydrogen density that makes it lighter and easier to transport while providing a greater energy conversion rate. In fact, the stored weight of liquid ammonia energy is substantially lighter than gaseous hydrogen and can be kept at a much lower tank pressure.

Carbon 395
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Molten carbonate electrolysis can produce a range of carbon nanomaterials, including graphene, from CO2 at high yield

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Researchers from Huazhong University of Science and Technology in China and George Washington University in the US report in a new paper in the ACS journal Accounts of Chemical Research that a range of important carbon nanomaterials can be produced at high yield by molten carbonate electrolysis. Source: Prof.

Carbon 376
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BNEF: global carbon capture capacity due to rise sixfold by 2030

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The global capacity for carbon capture in 2030 is set to increase sixfold from today’s level, to 279 million tons of CO 2 captured per year, according to research company BloombergNEF’s (BNEF) newly released 2022 CCUS Market Outlook. The amount of CO 2 being captured today is 43 million tons, or 0.1% of global emissions.

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