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In recent years, energy engineers have been working on a wide range of technologies that could help to generate and store ...
Specifically, proton exchange membrane water electrolysis (PEMWE) is considered a next-generation hydrogen production technology due to its ability to produce high-purity hydrogen at high pressure.
Chinese innovation creates conditions around the cathode that allows electrolyzers to work even with tap water.
By creating an acidic microenvironment with Brønsted acid oxides, the system delivers high-purity hydrogen without the need ...
Hydrogen can be produced by electrolysis of water in a virtually climate-neutral way, ... Alkaline Membrane (AEM) Electrolysers without Iridium. Now, research teams from TU Berlin and HZB, ...
It generated some 386 liters of hydrogen gas per hour throughout the 133-day test, which sounds like a lot, but if that's at standard atmospheric pressure, 386 liters represents just 31.652 grams ...
Find out how IMI VIVO's hydrogen electrolyser can offer safer methods for utilizing hydrogen, despite its natural ...
While hydrogen production technologies are gaining attraction for a sustainable energy transition, traditional water electrolysis is challenged by its high voltage requirements. To overcome this ...
Sparc Hydrogen launches Australia’s first solar-driven, non-electrolysis hydrogen pilot plant at the University of Adelaide, ...
Two-step water electrolysis overcomes these problems by completely separating hydrogen and oxygen production in time and space using a bipolar electrode, eliminating the need for a costly membrane ...
But Honda is counting on hydrogen to help it decarbonize its vehicle fleet by 2040. And now it wants to tap into the most abundant element in the universe to power its push into space.