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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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Selected projects will support the cost and performance goals of DOE’s Carbon Negative Shot initiative, which calls for innovation in CDR pathways that will capture CO 2 from the atmosphere and permanently store it at meaningful scales for less than $100/net metric ton of CO 2 -equivalent.

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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 The formic acid can then be stored, transported, and used directly in many industrial, consumer, transportation, and agricultural industries.

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Evonik and Siemens Energy commission pilot plant for conversion of CO2 to chemicals

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Evonik and Siemens Energy commissioned a pilot plant—sponsored by the German Federal Ministry of Education and Research (BMBF)—that uses carbon dioxide and water to produce chemicals. The necessary energy is supplied by electricity from renewable sources. The pilot plant is located in Marl, in the northern Ruhr area.

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UW Madison chemists discover new way to harness energy from ammonia

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The discovery of this technique, which uses a metal catalyst and releases—rather than requires—energy, was reported in Nature Chemistry and has received a provisional patent from the Wisconsin Alumni Research Foundation. It’s compressible, like propane, easy to transport and easy to store. —Trenerry et al.

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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. The bonding of carbon to carbon requires heat and great pressure, making the process expensive and energy intensive. That would be a big deal.

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New electrocatalyst converts CO2 into ethanol, acetone, and n-butanol with high efficiency

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The electrocatalytic conversion of CO 2 using renewable energy could establish a climate-neutral, artificial carbon cycle. Excess energy produced by photovoltaics and wind energy could be stored through the electrocatalytic production of fuels from CO 2. These could then be burned as needed. and Xiong, Y.

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U Waterloo team shows four-electron conversion for Li-O2 batteries for high energy density; inorganic molten salt electrolyte, high temperature

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The new work, published in Science , shows that four-electron conversion for lithium-oxygen electrochemistry is highly reversible. The Waterloo team is the first to achieve four-electron conversion, which doubles the electron storage of lithium-oxygen, also known as lithium-air, batteries. —Linda Nazar. Resources.