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Researchers store hydrogen fuel in salts

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Researchers in Germany have developed a method to store and release highly pure hydrogen by the interconversion of readily available (bi)carbonate and formate salts in the presence of naturally occurring ?-amino After five storage-release cycles, the reaction system produced hydrogen with a high yield (80%) and purity (99%).

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DESY-led team explores alternative method for storing hydrogen; Ir-seeded Pd nanocluster superlattices

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Researchers led by Andreas Stierle at Deutsches Elektronen-Synchrotron (DESY) have laid the foundations for an alternative method for storing hydrogen, using iridium-seeded palladium nanocluster superlattices with 1.2 The fact that palladium can absorb hydrogen like a sponge has been known for some time. Resources.

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NuScale, Shell and partners to assess hydrogen production using SMR

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NuScale Power, along with Shell Global Solutions (Shell) and industry participants will develop and assess a concept for an economically optimized Integrated Energy System (IES) for hydrogen production using electricity and process heat from a NuScale VOYGR small modular reactor (SMR) power plant.

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MIT team exploring using LOHCs directly on-board hydrogen-fueled trucks

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Green, the Hoyt Hottel Professor in Chemical Engineering, is developing a technology that allows liquid organic hydrogen carriers (LOHCs) not only to deliver hydrogen to the trucks, but also to store the hydrogen onboard. Their findings were recently published in the ACS journal Energy and Fuels.

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IIASA study proposes solid air hydrogen liquefaction as efficient addition to hydrogen liquefaction supply chain

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One of the challenges of constructing a global hydrogen economy is hydrogen transportation by sea. An open-access paper on the work is published in the International Journal of Hydrogen Energy. Hydrogen can significantly reduce geopolitical risks if the diversity of future hydrogen energy suppliers is increased.

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LSBU researchers investigating metal hydride hydrogen storage for buses

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Researchers from London South Bank University (LSBU), School of the Built Environment and Architecture, are investigating the use of metal hydrides to absorb, release and store hydrogen for fuel cell buses. Principle of a metal hydride tank for the reversible storage of hydrogen. From Adelhelm & Jongh (2011). EP/T022760/1.

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Researchers identify key bottleneck in MgH2 solid-state hydrogen storage desorption

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A group of researchers from China and Japan has identified a key inhibitor to hydrogen desorption in magnesium hydride (MgH 2 ) solid-state hydrogen storage materials. Currently, hydrogen is stored by three methods: high-pressure gaseous hydrogen storage; low-temperature liquid hydrogen storage; and solid-state hydrogen storage.

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