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German power-to-gas facility opens green methanation plant; €28M STORE&GO project

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million) STORE&GO research project. In this second stage, hydrogen from regenerative energy sources is converted into methane (CH 4 ), i.e. synthetic natural gas, using CO 2 from a bio-ethanol plant. This stored energy is then available as backup whenever there is an insufficient supply of solar and wind power.

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Audi partnering with Climeworks on CO2 direct air capture and storage

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The Swiss company Climeworks is building the world’s largest direct air capture (DAC) and storage facility for converting atmospheric CO 2 to rock in Iceland. The particularly high geothermal energy means that the Earth’s heat can be converted to electricity cost-effectively and virtually CO 2 neutrally.

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ABB opens new plant for battery systems for mobility applications in Baden

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ABB officially opened a new plant for energy storage systems for mobility applications today in Baden, Switzerland. The facility represents an important investment in Switzerland as a production location. Unlike in Switzerland, many other European countries still have countless non-electrified railway lines.

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MAN Diesel & Turbo partners with ABB to develop and commercialize new electro-thermal stationary energy-storage system

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MAN Diesel & Turbo Schweiz AG has signed a cooperation agreement with ABB Switzerland for the development, production and commercialization of a three-way energy-storage system. The new Electro-Thermal Energy Storage system (ETES) stores large-scale electricity, heat and cold for distribution to consumers.

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Audi steps up research into carbon-neutral synthetic fuels with new e-diesel pilot plant; power-to-liquids

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Together with the partners Ineratec GmbH ( earlier post ) and Energiedienst Holding AG , the company has plans for a new pilot facility for the production of e-diesel in Laufenburg, in Canton Aargau (Switzerland). To produce it, the power-to-liquid plant converts surplus hydropower into synthetic fuel.

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Purdue, EPFL team propose Hydricity concept for integrated co-production of H2 and electricity from solar thermal energy

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Researchers from Purdue University and École Polytechnique Fédérale de Lausanne (EPFL) in Switzerland are proposing a new integrated process involving the co-production of hydrogen and electricity from solar thermal energy—a concept they label “hydricity”. —Gençer et al.

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Swiss team develops effective and low-cost solar water-splitting device; 14.2% solar-to-hydrogen efficiency

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The SHJ module captures sunlight and converts it into electricity directly feeding the electrochemical membrane electrode assembly water-splitting unit. The gases can then be collected and stored in their pure form. Schüttauf et al. Schematic overview of the solar-driven hydrogen generator. Schüttauf et al. Click to enlarge.

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