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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. The conversion rate reaches 32.9 ± 1.38 Water microdroplets are the hydrogen source for N 2 in contact with Fe 3 O 4.

Water 459
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NCSU team develops catalyst for thermal hybrid water-splitting and syngas generation with exceptional conversion; H2 gas and liquid fuels

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Researchers at North Carolina State University have developed a highly effective new perovskite-promoted iron oxide redox catalyst for a hybrid solar-redox scheme they had proposed earlier for partial oxidation and water-splitting of methane. To further enhance this effect, they proposed a layered reverse-flow reactor concept.

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DOE awarding $35M to 11 projects for hydrokinetic turbine development; ARPA-E SHARKS

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Projects will work to reduce the LCOE through multiple approaches, including increasing generation efficiency, increasing rotor area per unit of equivalent mass, lowering operation and maintenance costs, minimizing potential impacts on the surrounding environment, and maximizing system reliability. University of Washington.

Mariner 418
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Koch Strategic Platforms leads $102M Series D in 6K to accelerate battery material production and recycling

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The investment is expected to reach more than $150M in total, aimed at building a low cost, sustainable domestic supply chain for battery materials. 6K is the only company capable of battery material production at costs lower than Asia, while also reducing impact on the environment by 70%-90%.

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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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Low Cost Roll-to-Roll Manufacturing of Reusable Sorbents for Energy and Water Industries, $150,000 Qualification of SAS4A/SASSYS-1 for Sodium-Cooled Fast Reactor Authorization and Licensing, $674,484 Advanced Reactor Concepts LLC, Chevy Chase, Md. Touchstone Research Laboratory, Triadelphia, W. El Centro, Calif. Petaluma, Calif.

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DOE awards $35M to 12 ARPA-E projects to reduce methane emissions; 5 on natural gas engines

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The system will significantly increase methane conversion efficiency and comply with future stringent nitrous oxide regulations. The project team’s technology will consist of a novel methane oxidation catalyst (MOC) formulation capable of high conversion efficiencies at the lower exhaust temperatures in ultra-lean burn engines.

Gas 186
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ARPA-E adds five new funding topics to FOA to advance critical energy innovation

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The removal of CO 2 from oceanwater (or other natural waters), or direct ocean capture (DOC), is one method of capturing dispersed CO 2. ARPA-E seeks to establish robust, energy efficient, and low-cost strategies for direct removal of carbon dioxide from ambient air.

Energy 332