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

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Better and more cost-efficient production methods for energy storage are increasingly in demand, especially in Germany: All major automobile manufacturers have launched ambitious electric vehicle programs that will ensure a sharp rise in demand for batteries. BroadBit uses it to produce new types of sodium-ion batteries.

Low Cost 339
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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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The study, which provides a joint industry analysis of how different types of batteries are used in different automotive applications, concludes that lead-based batteries will by necessity remain the most wide-spread energy storage system in automotive applications for the foreseeable future.

Lead Acid 304
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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. Its more than 40 members represent more than 90% of the automotive and industrial battery industry in Europe.

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Pike Research forecasts accelerating hybrid locomotive sales from 2015-2020

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In North America, a high-profile hybrid locomotive product (Railpower’s Green Goat, earlier post ) faced a serious setback in the mid-2000s that still haunts the industry today. However, Pike expects hybrid locomotives to have a strong return on investment (ROI), as a result of the ability to use low-cost batteries.

2015 239
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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. Sodium-beta alumina membrane battery. In their study, Yang et al.

Li-ion 231