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JERA and Toyota deploy first large capacity Sweep Energy Storage System with second-life batteries

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JERA, the largest power generation company in Japan, responsible for about 30% of Japan’s electricity, and Toyota Motor have built and deployed the first large-capacity “Sweep Energy Storage System”. The project plans to operate grid storage batteries for recharge and discharge operations, connected to the Chubu Electric Power Grid Co.,

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Study sees gradual, focused replacement of lead-acid SLI batteries by Li-ion batteries over next couple of years

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A study by a team of researchers from Germany and South Africa forsees the gradual replacement of lead-acid SLI (starter, lighting and ignition) batteries with Li-ion batteries over the next couple of years. That will see an uptake of more hybrid-, plug-in hybrids and BEVs in the EU.

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How Automotive Dealerships Can Save Money with Battery Energy Storage

Blink Charging

As dealerships embrace electrification to maintain competitiveness , it’s crucial to also explore the benefits of integrating battery energy storage systems (BESS). Discover key insights into incorporating battery storage for your dealership’s sustainable energy storage. What are battery energy storage systems?

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Pike Research forecasts $18B market in 2020 for advanced lead-acid batteries, 58% in transportation

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In a new report, Pike Research forecasts that the advanced lead-acid battery (LAB) market will expand at a compound annual growth rate (CAGR) of 19.8% The market value for advanced lead-acid batteries in grid storage will be approximately $6.8 over the next 8 years. billion in 2020, according to Pike.

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Faradion receives first order for sodium-ion batteries for Australian market

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the leader in sodium-ion (Na-ion) battery technology, has received its first order from ICM Australia for high-energy sodium-ion batteries for use in the Australian market. Unlike lithium-ion batteries, Faradion’s sodium-ion batteries have exceptional thermal stability and safety. UK-based Faradion Ltd.,

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Stanford study quantifies energetic costs of grid-scale energy storage over time; current batteries the worst performers; the need to improve cycle life by 3-10x

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A plot of ESOI for 7 potential grid-scale energy storage technologies. Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energy storage technologies over time. Credit: Barnhart and Benson, 2013.

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Energy storage: the key to a decarbonised future

Setec Powerr

We are transitioning from fossil fuels to renewable energy sources such as wind and solar, and the use of energy storage is becoming more widespread. And with the popularity of electric vehicles, the grid is under more and more pressure, so the demand for energy storage is growing. Battery storage.