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Argonne-led team develops new low-cost cobalt-based catalyst for PEM electrolysis

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A multi-institutional team led by the US Department of Energy’s (DOE) Argonne National Laboratory (ANL) has developed a low-cost cobalt-based catalyst for the production of hydrogen in a proton exchange membrane water electrolyzer (PEMWE). volts (Nafion 212 membrane) and low degradation in an accelerated stress test.

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

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An electrochemical water-splitting reaction offers an effective pathway to generate hydrogen fuels and store electricity from various intermittent but renewable energy sources. Our approach can provide a promising tool for developing high-performance electrodes for water electrolyzers and other electrochemical energy devices.

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Tata Motors launches $10,000 electric hatch; deliveries of Tiago.ev start in January

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Lakh (US$10,000) (All India – Ex-showroom), for the first 10,000 customers (of which 2000 will be reserved for the current owners of Nexon EV and Tigor EV). Tata Motors, India’s leading automobile manufacturer, launched the newest member of its EV family this past week: the Tiago.ev. Equipped with a permanent magnet synchronous motor, Tiago.ev

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Ford expands use of near-dry machining to six plants worldwide

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MQL reduces oil mist generation; biological contamination of coolant; waste water volume; costs for capital equipment; and regulatory permitting. For a typical production line, MQL can save more than 280,000 gallons (1 million liters) of water per year, Ford says. Manufacturing Sustainability Water' Click to enlarge.

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Univ. of Texas researchers propose lithium- or sodium-water batteries as next generation of high-capacity battery technology; applicable for EVs and grid storage

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Example of a lithium-water rechargeable battery. Researchers at the University of Texas, including Dr. John Goodenough, are proposing a strategy for high-capacity next-generation alkali (lithium or sodium)-ion batteries using water-soluble redox couples as the cathode. In theory, the decomposition potential of water is 4.27

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BioSolar extends agreement with UCSB for further development of novel polymer cathode; projecting up to 459 Wh/kg and $54/kWh for Li-ion cells

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The lead inventors of the technology are UCSB professor Dr. Alan Heeger, the recipient of a Nobel Prize in 2000 for the discovery and development of conductive polymers, and Dr. David Vonlanthen, a project scientist and expert in energy storage at UCSB. High energy, low cost. High energy, low cost, rapid charge.

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Alkaline surfactant polymer flooding shown to improve recovery in very mature oilfield by more than 300%

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In a report on Enhanced Oil Recovery (EOR) production research published in 2000, the DOE described ASP: The alkaline-surfactant-polymer (ASP) process evolved from the early studies on micellarpolymer flooding. Polymer is added to protect the chemical slug from early dissipation by the driving water phase. water production.

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