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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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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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The US Department of Energy (DOE) announced that the use of an alkaline surfactant polymer (ASP) flooding technique has successfully improved oil recovery at a 106-year old Illinois field by more than 300%. Polymer is added to protect the chemical slug from early dissipation by the driving water phase. Such surfactants, when.

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DOE seeking feedback on findings of hydrogen production and delivery workshops

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The purpose of the workshop was to share information and identify the RD&D needs to enable low-cost, effective delivery of hydrogen from centralized production facilities to the point of use (e.g., retail, light-duty vehicle stations and other applications). kg for forecourt (1,500 kg/day) and $2.00/kg Pre-commercial.

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Avantium Building YXY Pilot Plant for Furanics Biofuels and Materials

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Avantium, which spun off from Shell in 2000 to develop furan-based biofuels and biomaterials, has begun construction of a pilot plant at the Chemelot site (Geleen, the Netherlands) to convert carbohydrates into furanic building blocks—which the company calls “YXY”—for making renewable materials and fuels.

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BATT Program Awards More Than $8 Million for Innovative Research Projects on Lithium Battery Anodes

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Synthesis and Characterization of Polymer-Coated Layered SiOx-Graphene Nanocomposite Anodes. An elastic binder polymer with Li-ion conductivity will be used to further accommodate volume change. The project goals include reversible capacities exceeding 2000 mAh/g and high rate capability. Pennsylvania State University.

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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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This new strategy represents a third-generation alkali-ion battery promising lower cost than the conventional lithium-ion rechargeable battery, safe operation, and a Coulombic efficiency and voltage greater than those of a Li-air battery with, in principle, a comparable capacity.

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