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Researchers at Korea University develop high-performance textile-based electrodes for watersplitting

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Researchers at Korea University have developed high-performance, textile-based electrodes for watersplitting (WSE); the non-noblemetal-based electrodes can generate a large amount of hydrogen with low overpotentials and high operational stability. —Mo et al. doi: 10.1039/d2ee01510b.

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DOE announces $11.5M in Phase 1 funding for carbon capture and storage program; ARPA-E FLECCS

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million in funding for 12 projects as part of Phase 1 of the Advanced Research Projects Agency-Energy’s (ARPA-E’s) FLExible Carbon Capture and Storage (FLECCS) program. Later in the program, teams that move to Phase 2 will focus on building components, unit operations, and prototype systems to reduce technical risks and costs.

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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 steam-treating of natural gas involved in the process also releases ample amounts of carbon dioxide.

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Students Use Their Tech Know-How to Protect the Environment

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universities and colleges to use their engineering and technical skills to mitigate and address the impact of climate change in their communities. and its environs. Delaine Access to fresh produce is challenging in many low-income neighborhoods. The EPICS contest asked students and faculty at U.S. I’ve learned so many things.”

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DOE awarding $72M to 27 projects to develop and advance carbon capture technologies, including direct air capture

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The US Department of Energy (DOE) announced the award of approximately $72 million in federal funding to support the development and advancement of carbon capture technologies under two funding opportunity announcements (FOAs). Enabling Production of Low Carbon Emissions Steel Through CO 2 Capture from Blast Furnace Gases.

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New high-activity, low-cost nickel-based catalyst for fuel cells exhibits performance similar to Pt; hydroxide exchange membrane fuel cells

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Researchers at the University of Delaware, with a colleague at the Beijing University of Chemical Technology, have developed a composite catalyst—nickel nanoparticles supported on nitrogen-doped carbon nanotubes—that exhibits hydrogen oxidation activity in alkaline electrolyte similar to platinum-group metals.

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UT Austin team devises new strategy for safe, low-cost, all-solid-state rechargeable Na or Li batteries suited for EVs

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Researchers at the University of Texas at Austin, including Prof. The cathode consisted of a redox center (an S 8 , or ferrocene Fe(C 5 H 5 ) molecule or MnO 2 particle) embedded in a mix of electrolyte and carbon contacting a Cu current collector. The electrolyte membrane was 0.06 The sealed cell was then aged. Click to enlarge.

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