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Prometheus CEO outlines tech advances that could make CO2-to-fuels renewable gasoline and jet price-competitive with fossil fuels

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Recent breakthroughs in separations and catalysis, along with long-trend reductions in solar and wind electricity costs, have significantly increased the potential for cost-competitive renewable fuels from direct air capture (DAC) of CO 2. —Rob McGinnis. Aqueous CO 2 electrolysis with base-metal catalysts. —Rob McGinnis.

Gasoline 357
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New highly efficient catalyst for photoelectrochemical CO2 reduction toward methane

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The calculations of reaction energetics suggest that Cu and Fe in the binary system can work in synergy to significantly deform the linear configuration of CO 2 and reduce the high energy barrier by stabilizing the reaction intermediates, thus spontaneously favoring CO 2 activation and conversion for methane synthesis.

CO2 349
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Engineered E. coli could make carbohydrates, renewable fuel, from CO2

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Researchers from Newcastle University in the UK have engineered Escherichia coli bacteria to capture carbon dioxide using hydrogen gas to convert it into formic acid. The investigators used a special pressurized bioreactor filled with H 2 and CO 2 to make the gases available to the microbes. —principal investigator Frank Sargent.

Renewable 334
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New plasma synthesis process for one-step conversion of CO2 and methane into higher value fuel and chemicals

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Instead of using H 2 , direct conversion of CO 2 with CH 4 (dry reforming of methane, DRM) to liquid fuels and chemicals (e.g. CH 4 is an ideal H-supplier to replace H 2 in CO 2 hydrogenation as CH 4 has a high H density and is available from a range of sources (e.g. natural gas, shale gas, biogas and flared gas).

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GWU team demonstrates highly scalable, low-cost process for making carbon nanotube wools directly from CO2

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This synthesis consumes only CO 2 and electricity, and is constrained only by the cost of electricity. unusually high electrical conductivity and Raman spectra of these materials demonstrated in the linked Data in Brief paper are that of multi-walled carbon nanotubes, and are due to the morphology as demonstrated by TEM.

Low Cost 300
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CRI awarded €1.8M EU grant to scale CO2-to-methanol technology

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CO 2 capture and clean-up: Waste gases are captured from the points of emission at the stack and transferred to the gas conditioning system where impurities are removed to produce CO 2 suitable for downstream methanol synthesis. CO 2 is readily available. Compression: Reaction gas is prepared by mixing H 2 and CO 2.

Grant 150
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Mercedes-Benz Cars plants in Germany to be supplied with CO2-neutral energy from 2022

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The preparations for exclusively green electricity for a climate-friendly production in Europe are already well advanced. Thereby, we completely forego coal-based electricity and obtain our electrical energy from only renewable sources. As part of the electric offensive, Mercedes-Benz Cars counts on local emission-free vehicles.

Germany 170