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Sandy solution for renewable energy storage; Thermal Energy Storage System

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Sand is emerging as a key ingredient in the race to develop a viable electricity storage system for renewable energies. Australia-based Latent Heat Storage has developed a low cost thermal energy storage system based on the latent heat properties of silicon derived from sand. —Jonathan Whalley.

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sonnen accelerates US market efforts with solar-plus-storage technology package

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sonnen, the European market leader for smart energy storage systems, announced a partnership with SolarWorld, the largest crystalline-silicon solar manufacturer in the US and PetersenDean, the nation’s largest residential roofing company with more than a million roofs under its belt.

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BMW i home energy storage system integrates 2nd-life i3 vehicle batteries

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BMW i announced a home stationary energy storage system solution integrating its BMW i3 vehicle battery at EVS 29 in Montréal. The system utilizes BMW i3 high-voltage batteries and can be expanded to incorporate second-life batteries as they become available in the market. BMW i 360° Electric.

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Solar and Battery Companies Rattle Utility Powerhouses

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Tesla and its partner Octopus Energy Germany recently rolled out retail utility services in two large German states. Over the last five to 10 years we have seen an uptick in new entrants providing retail energy services," says Albert Cheung, head of global analysis at BloombergNEF. "It Harmony Energy seems pretty pleased.

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ICL model predicts lithium-ion batteries most competitive for storage applications by 2030

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levelized cost)—as opposed to the investment cost—of 9 electricity storage technologies for 12 different applications between 2015 and 2050. We have found that lithium-ion batteries are following in the footsteps of crystalline silicon solar panels. Credit: Schmidt et al. —senior author Iain Staffell.

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JRC study finds 8 metals for low-carbon energy technologies at risk of shortages; EVs, wind and solar, and lighting the applications of most concern

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The applications, i.e. technologies, of particular concern as a result are electric vehicles, wind and solar energy, and lighting. Development of new and more detailed scenarios for the uptake and technology mix of options for stationary energy storage in particular.

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Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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Researchers at Harvard have demonstrated a metal-free organic–inorganic aqueous flow battery—a quinone–bromide flow battery (QBFB)—as an example of a class of energy storage materials that exploits the favorable chemical and electrochemical properties of a family of molecules known as quinones. —Huskinson et al.

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