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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 “Direct Air Capture” Unit developed by the Technical Research Center of Finland (VTT) captures carbon dioxide from air.

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Compact pilot plant for solar to liquid fuels production

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Partners from Germany and Finland in the SOLETAIR project are building a compact pilot plant for the production of gasoline, diesel and kerosene from solar energy, regenerative hydrogen and carbon dioxide. A direct air capture unit developed by the Technical Research Center of Finland (VTT) extracts carbon dioxide from air.

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Soletair demo plant produces renewable hydrocarbon fuel from CO2 captured from the air

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VTT Technical Research Centre of Finland and Lappeenranta University of Technology (LUT) are beginning testing of the Soletair demo plant, which uses air-captured carbon dioxide to produce renewable fuels and chemicals. The pilot plant is coupled to LUT’s solar power plant in Lappeenranta. kW solar PV power plant at LUT.

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Stanford’s Yi Cui receives CalTech Resonate award for battery work

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Mika Järvinen (Aalto University, Finland): Resonate Award recipient for pioneering a CO 2 sequestration process that converts a low-value steel-manufacturing by-product into a valuable resource for industry.

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Neste to receive €88M from EU toward green hydrogen and carbon capture & storage at Porvoo; SHARC

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The EU Innovation Fund will award a grant of €88 million to Neste’s green hydrogen and CO 2 capture & storage project, which aims to reduce greenhouse gas emissions at the Porvoo refinery in Finland. ECOPLANTA aims to convert non-recyclable fractions of municipal solid waste to chemicals and biofuels.

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Researchers successfully engineer E. coli to produce renewable propane; proof-of-concept

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Researchers from the University of Turku in Finland, Imperial College London and University College London have devised a synthetic metabolic pathway for producing renewable propane from engineered E. coli bacteria. an aldehyde-deformylating oxygenase (ADO) to form the final product, propane.

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Hyundai Motor to integrate green energy into Charge myHyundai service in Europe

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Green energy suppliers generate zero-emission energy using natural resources such as wind or solar power, which is then converted into electric energy. This ensures that, for each charging occasion via Charge myHyundai, the equivalent amount of energy generated is fed back into the grid as green electricity.

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