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Researchers use sodium to deliver low-cost MgSi alloys for solid-state hydrogen storage

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Researchers at the University of Queensland have show that a low-cost Mg-based hydrogen storage alloy is possible with only 1 wt% Si. wt% hydrogen is achieved via trace sodium (Na) addition. Mg 2 Si is a promising catalyst for Mg-based hydrogen storage materials due to its low cost, light weight, and non-toxic properties.

Low Cost 199
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Industry study finds lead-acid to remain most wide-spread automotive energy storage for foreseeable future; new chemistries continue to grow

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Their low cost and ability to start the engine at cold temperatures sets them apart in conventional and basic micro-hybrid vehicles, and as auxiliary batteries in all other automotive applications, according to the report. —EUROBAT chairman Johann-Friedrich Dempwolff.

Lead Acid 304
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Faraday Institution to award up to £55M to five consortia for energy storage research

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Other academic partners include University of Birmingham, University of Cambridge, University of Liverpool, University of Oxford, University College London and Diamond Light Source. Next generation sodium ion batteries–NEXGENNA.

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CalSEED awards $4.2M to early-stage clean energy innovations

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million: ALD Technical Solutions is developing light-weight, easy-to-install, long-lasting, and cost-effective structural composite reinforcement system which will be installed and cured-in-place around existing Aluminum Conductor Steel Reinforced transmission lines to increase power capacity and power efficiency, and also decrease sag.

Clean 371
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PNNL: single-crystal nickel-rich cathode holds promise for next-generation Li-ion batteries

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Nickel offers relatively low cost, wide availability and low toxicity compared to other key battery materials, such as cobalt. The PNNL researchers have developed a process to grow high-performance crystals in molten salts—sodium chloride, common table salt—at high temperature.

Li-ion 418
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ARPA-E Awards $151M to 37 Projects for Transformative Energy Research

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Eagle Picher, in partnership with the Pacific Northwest National Laboratory, will develop a new generation of high energy, low cost planar liquid sodium beta batteries for grid scale electrical power storage applications. Low Cost, High Energy and Power Density, Nanotube-Enhanced Ultracapacitors. BIOMASS ENERGY.

Energy 231
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DOE to award up to $12M for applied RD in hydrogen storage technologies

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greater than 600 ksi ultimate tensile strength) that have costs significantly lower than currently available [1]. As hydrogen storage material technology is developed, similar needs will exist for low-cost, moderate pressure tanks (e.g., Approach 2 solicits development of low-cost, high-strength fibers.

Hydrogen 210