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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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VTT and Neste to build integrated Power-to-Liquids demo facility; CO2 capture, green hydrogen and e-fuels production

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E-fuels offer a way to expand the carbon-neutral transport fuel pool beyond biomass-based renewable fuels to replace fossil fuels in existing internal combustion engines. The end product is a transportation fuel suited for aircraft, ships as well as heavy and light road vehicles.

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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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Finnish electrofuels research project gets €3.3M funding boost; VTT, Neste and partners

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A two-year Finnish electrofuels (E-fuel) research project aims to integrate hydrogen production through high-temperature electrolysis using a solid oxide electrolyzer cell (SOEC) with carbon dioxide sequestration and Fischer-Tropsch fuel synthesis. million in funding from Business Finland in January.

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DirectFuel Project Targeting Direct Conversion of Solar Energy and CO2 to Engine-ready Hydrocarbon Fuels

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The EU’s DirectFuel project, which launched on 1 October, intends to develop a photobiological process for the direct conversion of sunlight and CO 2 into engine- and infrastructure-ready transport fuels such as propane. Tags: Bio-hydrocarbons Fuels. The 4-year project will have funding of up to €3.73 million (US$5.1

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Researchers develop thin-layer artificial biofilm technology for green ethylene production

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Researchers at the University of Turku in Finland have developed a thin-layer artificial biofilm technology for sustainable and long-term ethylene photoproduction. 2 ethylene at 1.54% light to ethylene conversion efficiency. fold improvement in the light to ethylene conversion efficiency as compared to the cell suspension.

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EU COMSYN project for compact gasification and synthesis for biomass-based fuels

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The EU-funded COMSYN project aims to develop a production concept for competitive bio-based fuels by means of a compact gasification and synthesis process. The Fischer-Tropsch products will be upgraded to fuels in existing central oil refineries, also bringing the benefits of economy of scale for the overall process. million (US$6.1

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