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European automotive and automotive battery industries call for extension of the exemption of lead-based batteries from the EU ELV Directive

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The EU must continue to allow the use of lead-based batteries in vehicles as they are essential for the needs of future generations of European cars, according to the automotive and automotive battery industries in Europe. This electrical system is in all cases supplied by a 12V lead-based battery, the groups said.

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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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Overview of the three vehicle classes identified in the study, and their corresponding battery technologies. 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.

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PowerGenix to supply NiZn batteries for traffic light backup systems

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PowerGenix, the manufacturer of high performance, rechargeable Nickel-Zinc (NiZn) batteries ( earlier post ), has entered an exclusive agreement with PSI Acquisition, LLC to supply battery cells for UP-Stealth, an uninterruptible power supply (UPS) for the traffic industry.

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Umicore to Build Battery Recycling Plant in Belgium

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Umicore will build an industrial scale recycling facility for end-of-life rechargeable batteries in Hoboken, Belgium. The investment will enable Umicore to deal with the expected growth in the availability of end-of-life Lithium-ion, Lithium-Polymer and Nickel Metal Hydride rechargeable batteries.

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US Naval Research Lab scientists developing ionic liquid batteries

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Rather than depend on acidic electrolytes, ionic liquids are used to create a solid polymer electrolyte composed of an ionic liquid and polyvinyl alcohol, developing novel types of solid state batteries with discharge voltages ranging up to 1.8 Experimental work is currently underway to develop such a rechargeable ionic liquid power source.

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RIKEN team develops high-performance lithium-iodine battery system with higher energy density than conventional Li-ion

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The working concept of I3 – /I – redox reaction in the aqueous Li-I 2 battery. A team from Japan’s RIKEN, led by Hye Ryung Byon, has developed a lithium-iodine (Li-I 2 ) battery system with a significantly higher energy density than conventional lithium-ion batteries. Zhao et al. Click to enlarge. kWh kg -1 cell (1.0

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3D self-assembling nanostructure for cathodes enables very rapid charge and discharge without sacrificing capacity; potential for EVs

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Researchers at the University of Illinois at Urbana-Champaign have developed a self-assembling three-dimensional nanostructure for battery cathodes (Li-ion and NiMH) that allows for faster charging and discharging without sacrificing energy storage capacity. This system that we have gives you capacitor-like power with battery-like energy.