Remove Power Grid Remove Recharge Remove Renewable
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Hydro-Québec and Sony forming JV to develop large-scale Li-ion energy storage system for power grids

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Hydro-Québec and Sony Corporation will establish a joint venture to research and develop a large-scale energy storage system for power grids. Sony and Hydro-Québec plan to establish the new company in June, 2014.

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Mitsubishi Heavy to supply 500 kWh (normal) containerized Li-ion energy storage system to power grid of Orkney Islands

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(MHI), jointly with SSE plc (formerly Scottish and Southern Energy plc), will begin an energy storage system demonstration project using the power grid in the UK’s Orkney Islands, which has a high proportion of renewable energy generation in relation to demand.

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Japan team evaluates battery-assisted low-cost hydrogen production from solar energy

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Comprehensive analysis of various factors, including rechargeable battery and electrolyzer capacities, enables the estimation of technology levels required for low-cost hydrogen production. Credit: NIMS. 2018.11.119 ).

Low Cost 403
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Researchers developing DC micro smart grid for charging EV fleets; Li-ion, redox flow batteries and renewables

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Up to 30 electric vehicles at a time can recharge in Fraunhofer IAO’s parking garage. The aim of charge@work is to design a micro smart grid (MSG) capable of supplying the EV fleet with electricity produced exclusively from renewable sources. Click to enlarge. EV charging at IZS.

Grid 244
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OptiFuel to repower Argentina’s 400 freight locomotive fleet from diesel-power to CNG and/or RNG

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The objective of this agreement is to develop a project to repower and put into service 400 switcher and line-haul freight locomotives, all 100% powered by compressed natural gas (CNG) and/or renewable natural gas (RNG) with low or zero emissions, in line with the Argentina’s decarbonization goals.

Diesel 418
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US Navy launches its first solar-powered EV charging station

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The carport will enable NSA Mid-South to recharge its current fleet of 17 electric vehicles with renewable electricity in approximately four hours, while reducing demand on the commercial power grid.

Solar 218
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MHI delivers large-capacity Li-ion energy storage system for advanced microgrid study and verification testing at Shimizu Corp.

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It consists of multiple power sources, including a photovoltaic generation system, and an energy storage system, all configured for integrated control. The lithium-ion rechargeable battery energy storage system installed in the microgrid system uses 320 units of a 50 Ah-class cell.

Li-ion 231