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Stanford researchers make ammonia from air and water microdroplets

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Stanford researchers, with a colleague from King Fahd University of Petroleum and Minerals, have developed a simple and environmentally sound way to make ammonia with tiny droplets of water and nitrogen from the air. This gas–liquid–solid heterogeneous catalytic system synthesizes ammonia in 0.2 The conversion rate reaches 32.9 ± 1.38

Water 459
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Study finds the wettability of porous electrode surfaces is key to making efficient water-splitting or carbon-capturing systems

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As water-splitting technologies improve, often using porous electrode materials to provide greater surface areas for electrochemical reactions, their efficiency is often limited by the formation of bubbles that can block or clog the reactive surfaces. As a result, there were substantial changes of the transport overpotential.

Water 418
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Researchers devise seawater-resilient bipolar membrane electrolyzer for turning seawater into hydrogen

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The design proved successful in generating hydrogen gas without producing large amounts of harmful byproducts. Generation of H 2 and O 2 from untreated water sources represents a promising alternative to ultrapure water required in contemporary proton exchange membrane-based electrolysis.

Hydrogen 418
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Wärtsilä, Höegh LNG and partners receive funding of €5.9M to develop ammonia as hydrogen carrier

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The project is designed to enhance the availability of large-scale storage and transportation capabilities of clean energy. However, it is difficult to store and transport due to its low volumetric energy density and with potential large vaporization losses.

Hydrogen 259
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Gevo develops process to convert isobutanol or fusel oils into renewable diesel

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has developed proprietary, breakthrough processes that convert either low-carbon isobutanol or low-value fusel oils—a mixture of alcohols that are byproducts from fermentation processes such as alcohol production—into renewable diesel. Patrick Gruber, Chief Executive Officer of Gevo. without the typical expression co-products.

Renewable 236
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Port of Corpus Christi, Howard announce to convert Javelina refinery services facility to blue hydrogen production

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The Port of Corpus Christi Authority (Port of Corpus Christi) and Howard Midstream Energy Partners, LLC (Howard/HEP) have executed a Memorandum of Understanding (MOU) stating their intention to convert Howard’s Javelina refinery services facility into the region’s first blue hydrogen production facility.

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WSU, GTI system uses electrochemical reforming of ethanol for compressed hydrogen production; CAPER

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A team from Washington State University (WSU) and the Gas Technology Institute have used an ethanol and water mixture and a small amount of electricity in an electrochemical conversion system to produce pure compressed hydrogen. Without using a membrane, the only gas-phase species is H2. —Kee et al.

Hydrogen 243