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Highly efficient and stable Ru-free catalyst for hydrogen generation from ammonia

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Although the thermocatalytic ammonia decomposition reaction (ADR) is an effective way to obtain clean hydrogen, it relies on the use of expensive and rare ruthenium (Ru)-based catalysts, making it not sustainable or economically feasible. A complete ammonia conversion to hydrogen was achieved at an economically feasible 450 ?C

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Kobe team’s hematite mesocrystal photocatalyst simultaneously produces hydrogen and hydrogen peroxide

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Using a hematite photocatalyst, a team led by researchers from Kobe University has succeeded in producing both hydrogen gas and hydrogen peroxide at the same time from sunlight and water. Hydrogen has gained attention as one of the possible next generation energy sources. under 600nm). Mesocrystal technology.

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SoCalGas, partners developing technology to make carbon fiber during hydrogen production from methane; reducing the cost of H2 and cutting GHG

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(SoCalGas) is partnering with a development team to advance a new process that converts natural gas to hydrogen, carbon fiber, and carbon nanotubes. In addition, this technology will virtually eliminate CO 2 emissions from the methane-to-hydrogen process. The CRADA will fund PNNL and WVU to develop the technology.

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University of Houston team demonstrates new efficient solar water-splitting catalyst for hydrogen production

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Researchers from the University of Houston (UH) have developed a cobalt(II) oxide (CoO) nanocrystalline catalyst that can carry out overall water splitting with a solar-to-hydrogen efficiency of around 5%. The generation of hydrogen from water using sunlight could potentially form the basis of a clean and renewable source of energy.

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Danish team electrifies steam-methane reforming for greener approach to hydrogen production

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Researchers from the Technical University of Denmark and Haldor Topsoe, with colleagues from the Danish Technological Institute and Sintex have developed a “ disruptive approach to a fundamental process ” by integrating an electrically heated catalytic structure directly into a steam-methane–reforming (SMR) reactor for hydrogen production.

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Rice team awarded $3.3M ARPA-E OPEN+ grant to convert methane into carbon nanotubes and hydrogen

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Rice University researchers have won a $3.3-million The goal is to save energy and stem carbon dioxide emissions from metal manufacturing while concurrently generating clean hydrogen and fixing fossil-sourced carbon in solid materials. The process would also produce valuable hydrogen as a side product. —Matteo Pasquali.

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Lux Research: cost of electrofuels remains far from viable

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Production costs per barrel of oil equivalent. The cost of electrofuels—fuels produced by catalyst-based systems for light capture, water electrolysis, and catalytic conversion of carbon dioxide and hydrogen to liquid fuels—remains far away from viable, according to a new analysis by Lux Research.

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