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Elli and MITNETZ STROM publish concept for smart grid integration of EVs

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In the joint pilot project supported by E-Bridge, optimized charging strategies will be tested taking into account both regional electricity generation from renewable energies and the available capacities in the distribution grid. The car becomes a rolling electricity storage unit for the grid operator.

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Vattenfall, BMW and Bosch test second-life EV battery electricity storage in Hamburg for grid stabilization

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Vattenfall, BMW and Bosch are testing the use of second-life EV batteries in a 2 MW, 2,800 kWh energy storage system in Hamburg, Germany, to keep the electricity grid stable. The electricity storage facility comprises 2,600 battery modules from more than 100 electric vehicles.

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NIMS researchers report 500 Wh/kg+ Li-air battery

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Researchers at Japan’s National Institute for Materials Science (NIMS) and the NIMS-SoftBank Advanced Technologies Development Center have developed a lithium-air battery with an energy density of more than 500 Wh/kg—significantly higher than currently lithium ion batteries. Source: NIMS.

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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 concept announced at EVS29 is the first market-ready home storage system using a second-life automotive BMW i3 high-voltage battery integrated by BECK Automation (Würzburg, Germany).

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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. Oliver Schmidt, Sylvain Melchior, Adam Hawkes, Iain Staffell (2018) “Projecting the Future Levelized Cost of Electricity Storage Technologies,” Joule doi: 10.1016/j.joule.2018.12.008.

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Report: VW invests in novel energy storage company QuantumScape and its solid-state “All Electron Battery”

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Volkswagen executives have been hinting for awhile now about taking a different approach to high-energy-density electrical storage for long-range electric vehicles than the more “conventional” next-generation Li-ion or Li-metal battery pathways. Furthermore, electron transport allows for fast charge and discharge.

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KAUST uses laser pulses to boost performance of MXene electrode

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KAUST researchers have demonstrated the use of laser pulses to modify the structure of a promising alternative electrode material known as MXene, boosting its energy capacity and other key properties. First, the nanodots provide additional storage capacity for lithium and speed up the charging and discharging process.

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