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DOD awards EaglePicher $22M under DPA Title III to expand Li-ion production capabilities; 250 Wh/kg

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The US Department of Defense (DoD) has awarded EaglePicher $22 million in funding under the Defense Production Act Title III Program ( DPA Title III ) for Phase II of the Lithium-Ion Battery for Military Applications (LIMA) project. Currently, the US government relies on lithium-ion cells that are produced outside the US. Batteries'

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Hawaii study finds vehicle-to-grid discharge detrimental to EV batteries

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Results of a study by a team at the Hawaii Natural Energy Institute, SOEST, University of Hawaii at Manoa, suggest that the additional cycling to discharge vehicle batteries to the power grid in a vehicle-to-grid (V2G) scenario, even at constant power, is detrimental to EV battery cell performance. —Dubarry et al.

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Univ. of Missouri team progressing with convection battery; enabling rechargeable lithium-metal batteries

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The Li / Support is the electrode made possible with the convection battery technology. The technology allows lithium-metal batteries to be recharged without the dendrite failure (short circuit) that has prevented rechargeable lithium-metal batteries from being commercially viable. Source: Dr. Galen Suppes. and Suppes, G.

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International Battery introduces new 24V Li-ion storage system

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International Battery , a US manufacturer, designer and developer of large-format Lithium-ion (Li-ion) rechargeable cells, batteries and energy storage systems (ESS), has introduced IBexus—a 24-Volt, 4.1 kWh Li-ion energy storage system well suited for storage of solar and other renewable energy sources.

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Mitsubishi Heavy develops containerized large-scale Li-ion energy storage system

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MHI), has developed Japan’s first cargo container-type large-capacity energy storage system using Li-ion batteries. Japan’s first container-type large-capacity energy storage system using lithium-ion rechargeable batteries. Mitsubishi Heavy Industries, Ltd., (MHI), Click to enlarge.

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New Lithium rechargeable semi-solid flow cell offers energy densities an order of magnitude greater than previous flow batteries; possible applications in transportation and grid-scale storage

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Scheme of the semi-solid flow cell (SSFC) system using flowing lithium-ion cathode and anode suspensions. In August 2010, A123 spun out 24M to commercialize this type of new technology. Even the highest energy density lithium ion cells currently available, e.g., 2.8–2.9 Source: Duduta et al. Click to enlarge. –2.9

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Toshiba Proposes Storage-Enhanced Grid Charging Systems for EVs

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Toshiba Corporation is proposing the development of an electric vehicle charging system—the “Charge Grid”—that features the deployment of its Li-ion battery storage systems (specifically, its SCiB batteries, earlier post ) in various areas. Toshiba said it plans to commercialize the Charge Grid system in a few years.

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