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EU Innovation Fund grants €108M to RWE’s waste-to-hydrogen project FUREC

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RWE's FUREC project, which aims to produce circular and green hydrogen from non-recyclable municipal solid waste in Limburg, the Netherlands, received a €108-million grant from the EU’s Innovation Fund. The plant is expected to produce 54,000 tonnes of hydrogen per year. A final investment decision is to be made in 2024.

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Hy Stor Energy developing green hydrogen hub in Mississippi

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Hy Stor Energy LP, together with its strategic partner Connor, Clark & Lunn Infrastructure (CC&L Infrastructure), will develop , commercialize, and operate large-scale, long-duration green hydrogen hubs that will serve as a model for green hydrogen development efforts going forward. million kg of blue hydrogen per day. (As

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France’s IFPEN studying industrial potential of onshore sources of natural hydrogen

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IFP Energies nouvelles (IFPEN) has become one of the first global research centers actively to investigate onshore natural hydrogen emissions after the discovery of offshore sources of the gas in the 1970s. Currently, hydrogen is considered a carrier of energy rather than a source—i.e.,

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Ford Europe leading project investigating DME and OME1 as low carbon, near zero particulate fuels; power-to-liquids pathways using CO2

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The comparison to the electric vehicle is based on estimates which factor in the CO 2 emissions resulting from fuel production, with the DME-powered vehicle figure calculated from the use of renewable energy to generate the DME fuel, and the electric vehicle figure calculated from electricity generated from renewable resources.

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H2Carrier receives AiP from DNV for P2XFloater floating hydrogen and ammonia facility

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H2Carrier is the designer and owner of the proprietary floating energy production and storage system P2XFloater—the first industrial-scale floating green hydrogen and ammonia facility of its kind in the world. Green hydrogen is produced by pumping seawater onboard, purifying the water and feeding it to electrolyzers.

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Stanford researchers develop copper-based catalyst that produces ethanol from CO at room temperature; potential for closed-loop CO2-to-fuel process

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volts versus the reversible hydrogen electrode) in CO-saturated alkaline water. When a voltage is applied across the electrodes of a conventional cell, a current flows and water is converted to oxygen gas at one electrode (the anode) and hydrogen gas at the other electrode (the cathode). volts to –0.5?volts

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Review finds encouraging progress in electrochemical reduction of CO2 to organic compounds; substantial advances in catalysts, electrolytes and reactors still required

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Still, the electrochemical conversion of CO 2 has great potential to help overcome several of the challenges facing the implementation of carbon-neutral energy sources because it provides a means of storing renewable electricity in a convenient, high-energy-density form.