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New liquid alloy electrode significantly lowers operating temperature of sodium-beta batteries; improved performance

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Researchers at Pacific Northwest National Laboratory (PNNL) have devised an alloying strategy that enables sodium-beta batteries to operate at significantly lower temperatures. The new electrode enables sodium-beta batteries to last longer, helps streamline their manufacturing process and reduces the risk of accidental fire.

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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. The present sodium-sulfur battery operates above 300 °C.

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Volkswagen and BASF present the first “Science Award Electrochemistry” to Dr. Naoaki Yabuuchi, Tokyo University of Science; Li-ion and Na-ion battery research

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Naoaki Yabuuchi, Tokyo University of Science, Institute for Science and Technology, Tokyo, Japan. The jury of experts from BASF, Volkswagen and representatives from the world of science selected Yabuuchi for results of his research on different battery technologies. The award is endowed with prize money of €50,000 (US$65,000).

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Fraunhofer researchers develop new low-cost dry-film electrode production process

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Researchers at the Fraunhofer Institute for Material and Beam Technology IWS in Dresden have developed a new battery cell production process that coats the electrodes of the energy storage cells with a dry film instead of liquid chemicals. BroadBit uses it to produce new types of sodium-ion batteries. © Fraunhofer IWS.

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Study shows 99% of used lead-based vehicle batteries in the EU are collected and recycled

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Ninety-nine percent of used lead-based automotive batteries in the EU available for collection are recycled, making them one of the most recycled consumer products, according to a new report by consultancy IHS. In all cases they are then sent on to collection points.

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Researchers Develop Lithium-Water Electrochemical Cell for the Controlled Generation of H2 and Electricity

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Scientists from the Energy Technology Research Institute, AIST in Tsukuba, Japan, have developed a lithium-water electrochemical cell for the controlled generation of hydrogen and electricity. the high-school chemistry demonstration of the violent reaction between sodium and water.). Source: Wang et al. Click to enlarge.

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PNNL study outlines requirements for grid storage, reviews four electrochemical energy storage systems: vanadium redox flow, Na-beta, Li-ion and lead-carbon

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published in the ACS journal Chemical Reviews , reviews in detail four stationary storage systems considered the most promising candidates for electrochemical energy storage: vanadium redox flow; sodium-beta alumina membrane; lithium-ion; and lead-carbon batteries. In their study, Yang et al. The need for storage. Click to enlarge.

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