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New Fraunhofer membrane technology enables co-transport of hydrogen and natural gas

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Researchers at the Fraunhofer-Gesellschaft have developed a membrane technology for the energy-efficient and economic separation of hydrogen from natural gas. This marks a major step forward in the transportation and distribution of hydrogen as an energy source. The gas mixture is surrendered to the input side of the membrane.

Hydrogen 511
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UNSW, H2Store to develop hydrogen storage for renewables; residential and commercial P2G

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million investment from Providence Asset Group to develop a hydrogen hydride storage system that could mean cheaper, safer storage for renewable energy for a range of applications, including residential. materials such as magnesium hydride (MgH 2 ) and lithium borohydride (LiBH 4 ) capable of storing hydrogen.

Hydrogen 207
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IEA: Estonia is pioneering technologies for more efficient and cleaner use of oil shale

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liquids produced from shale formation via techniques such as hydraulic fracturing—oil shale is a sedimentary rock containing up to 50% organic matter rich in hydrogen, known as kerogen. Different that shale oil—i.e., In 2012, 70% of Estonia’s total primary energy supply (TPES) came from oil shale. Overview of Enefit280.

Estonia 236
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ARPA-E Awards $151M to 37 Projects for Transformative Energy Research

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Eagle Picher, in partnership with the Pacific Northwest National Laboratory, will develop a new generation of high energy, low cost planar liquid sodium beta batteries for grid scale electrical power storage applications. Electronville: High-Amperage Energy Storage Device-Energy Storage for the Neighborhood.

Energy 231