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GKN Hydrogen, SoCalGas and NREL to collaborate on solid-state hydrogen storage project; HY2MEGA

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GKN Hydrogen and Southern California Gas Co. SoCalGas) will work with the US Department of Energy’s (DOE’s) National Renewable Energy Laboratory (NREL) on an innovative green hydrogen storage solution. GKN Hydrogen’s HY2MEGA can enable safe, long duration clean energy storage without the need for compression. Supported by $1.7

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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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Uniper receives €2.375M funding notification for Krummhoern hydrogen storage pilot

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Lower Saxony's Environment Minister Olaf Lies presented the funding notification of €2.375 million for Uniper’s planned hydrogen pilot project at the Krummhoern natural gas storage site. Hydrogen will be a central element for the success of the energy transition. The advantage of hydrogen is that it can be stored.

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KU Leuven team creates solar panel that produces hydrogen from moisture in air

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Bioscience engineers at KU Leuven have created a solar panel that produces hydrogen gas from moisture in the air. A traditional solar panel converts between 18 to 20% of the solar energy into electricity. If that electric power is used to split the water into hydrogen gas and oxygen, you lose a lot of energy.

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SSAB produces first fossil-free steel and delivers it to Volvo Group; HYBRIT technology

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reduced by 100% fossil-free hydrogen instead of coal and coke, with good results. The hydrogen gas used in the direct reduction process is produced by electrolysis of water with fossil-free electricity, and can be used directly or stored for later use. We’ll be converting to electric arc furnace in Oxelösund as early as 2025.

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NREL releases comprehensive vision for deep decarbonization of transportation

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At the basic level, our strategy is simple: pair the best technology with the right application—whether that’s an electrified ride to school, a hydrogen-fueled big rig, or a commercial flight powered by low-carbon biofuel. Optimally integrating transportation with buildings, the grid, and renewables to realize system-wide benefits.

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KIST team develops membrane reactor system to produce pure H2 from ammonia with high productivity

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This has resulted in a growing demand for a technology that can convert surplus renewable energy into hydrogen and transport the hydrogen to the target destination for utilization. Hydrogen gas, however, cannot be transported in large amounts due to the limitations in the amount that can be stored per unit volume.