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SOLETAIR project produces first 200 liters of synthetic fuel from solar power and atmospheric CO2

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The SOLETAIR project ( earlier post ) has produced its first 200 liters of synthetic fuel from solar energy and the air’s carbon dioxide via Fischer-Tropsch synthesis. The compact plant is designed for decentralized production, fits into a shipping container, and can be extended modularly. The SOLETAIR project started in 2016.

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Cambridge researchers develop standalone device that makes formic acid from sunlight, CO2 and water

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The wireless device could be scaled up and used on energy farms similar to solar farms, producing clean fuel using sunlight and water. Harvesting solar energy to convert carbon dioxide into fuel is a promising way to reduce carbon emissions and transition away from fossil fuels. Qian Wang et al.

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New highly efficient catalyst for photoelectrochemical CO2 reduction toward methane

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The work, presented in a paper in Proceedings of the National Academy of Sciences (PNAS), offers a unique, highly efficient, and inexpensive route for solar fuels synthesis. Experimentally, the designed CuFe catalyst exhibits a high current density of ?38.3 The design of the catalyst is critical to the success of the reaction.

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Researchers develop new stable artificial photosynthesis device to produce ethylene and hydrogen from sunlight and CO2

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By understanding how materials and devices transform under operation, we can design approaches that are more durable and thus reduce waste. When we began this study, we wondered, maybe the key to a better solar fuels device isn’t in the material by itself but in the overall environment of the reaction, including the electrolye.

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Berkeley Lab team validates bio-analogous technique for converting CO2 into liquid acetate

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Scientists at Lawrence Berkeley National Laboratory (Berkeley Lab) have demonstrated a new technique, modeled after a metabolic process found in some bacteria, for converting CO 2 into liquid acetate, a key ingredient in “liquid sunlight” or solar fuels produced through artificial photosynthesis.

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Berkeley Lab solar-to-fuel system for CO2 to ethanol and ethylene; light-powered production of fuel via artificial photosynthesis

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Solar to chemical energy conversion could provide an alternative to mankind's unsustainable use of fossil fuels. Schematic of a solar-powered electrolysis cell which converts carbon dioxide into hydrocarbon and oxygenate products with an efficiency far higher than natural photosynthesis. —Gurudayal et al. to 1-sun illumination.

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DOE awards $3M for 10 high-performance computing projects to improve energy efficiency and material performance

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Computational modeling of cost-effective carbon capture technologies on industrial gas turbines to reduce CO2 emission. Solar Turbines. This technology can significantly reduce the capital and operating costs of CO2 removal by commercially available CO2 removal technologies. Develop a new integrated macro?micro?nano

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