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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 technology makes it possible for the two substances to be routed through the national natural gas grid together and then isolated from one another at their final destination.

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Toshiba integrated hydrogen energy system starts operation at Toranomon Hills Business Tower in Tokyo

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The overall system is controlled by Toshiba’senergy management system H2EMS, which carries out power generation and power storage with associated operation of a 30-kW solar power system and batteries.

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California Energy Commission awards $1.1M to 12 small-scale projects to study transportation, natural gas and electricity technologies

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Chan Park of University of California, Riverside will receive $94,407 to develop a fuel sensing technology for natural gas vehicles.The technology has the potential to help the state attain its clean air standards and increase adoption of natural gas vehicles in California through the development of new sources of renewable natural gas.

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Advent Technologies, BASF sign MoU to increase manufacturing scale of advanced fuel cell membranes

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Furthermore, BASF supports the realization of large-scale Important Projects of Common European Interests (IPCEIs) White Dragon and Green HiPo (pending EU approval), through materials for power generation, hydrogen generation, and power storage.

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Highview Power and Encore Renewable Energy to co-develop the first long-duration, liquid-air energy storage system in US

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Highview Power Storage, Inc., a provider of long duration energy storage solutions, and Encore Renewable Energy, a developer of renewable energy generation and storage projects, jointly announced plans to develop the United States’ first long-duration, liquid-air energy storage system.

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

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The funding will help them deliver phase one of a four-stage project that includes the creation of prototypes of their hydrogen energy storage solution for residential and commercial use; demonstration units; and testing and optimization that will enable full commercialization of the product.

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Royal Academy of Engineering and Highview create 5-year research chair in liquid air energy storage

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LAES has the potential to drive the development of variable renewable energy sources such as wind and solar power, due to its ability to convert excess/off-peak electricity into multi megawatts hours of stored energy. When power is required, liquid air is drawn from the tanks, pumped to high pressure and heated.