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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. For comparison: This is equivalent to the output of a 700-megawatt offshore wind farm with coupled electrolyzers. textiles, paper).

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Doosan Heavy Industries & Construction partners with RevoTech on production of hydrogen from waste plastic

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Korea’s Doosan Heavy Industries & Construction has embarked on the development of technology for producing hydrogen using waste plastic and vinyl. The company has signed a business partnership MOU with RevoTech, a company that specializes in the continuous pyrolysis of waste plastic.

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SGH2 building largest green hydrogen production facility in California; gasification of waste into H2

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Energy company SGH2 is bringing the world’s biggest green hydrogen production facility to Lancaster, California. In the gasification island’s catalyst-bed chamber, plasma torches generate such high temperatures (3500 ºC - 4000 ºC), that the waste feedstock disintegrates into its molecular compounds, without combustion ash or toxic fly ash.

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Liquid Wind to partner with Sundsvall Energi on second electrofuel facility; eMethanol for shipping

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Sundsvall Energi will partner with Liquid Wind to be the host and provide carbon dioxide for the second commercial-scale—100,000 t—electrofuel facility in Sweden. —Claes Fredriksson, CEO and Founder of Liquid Wind. Liquid Wind’s facility will be constructed on Sundsvall Energi’s Korstaverket site.

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Cemvita demonstrates “gold hydrogen” production in situ, sets up subsidiary

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Cemvita defines Gold Hydrogen as the biological production of hydrogen in the subsurface through the consumption of trapped or abandoned resources. The hydrogen production in this trial exceeded our expectations. Green hydrogen production, however, is energy intensive and expensive. billion in 2020. billion by 2028.

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Rice, C-Crete team optimizes conversion of tire waste into graphene for stronger concrete

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Rice University scientists and their colleagues at C-Crete Technologies have optimized a process to convert waste from rubber tires into graphene that can, in turn, be used to strengthen concrete. After useful oils are extracted from waste tires, this carbon residue has until now had near-zero value, Tour said. —James Tour.

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TdVib commercializing CMI technology for recycling rare earth elements from electronic waste

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A team of researchers from the Critical Materials Institute (CMI), a US Department of Energy Innovation Hub led by the Ames Laboratory, developed a novel way to extract rare earth elements from the high-powered magnets in electronic waste ( earlier post ). —Denis Prodius, a co-inventor of the technology.

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