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New MIT metal-mesh membrane could solve longstanding problems with liquid metal displacement batteries; inexpensive grid power storage

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The results could make possible a whole family of inexpensive and durable materials practical for large-scale rechargeable batteries. The use of the new type of membrane can be applied to a wide variety of molten-electrode battery chemistries, Sadoway said, and opens up new avenues for battery design. —David Sadoway. Sadoway (2018).

MIT 150
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Prototype electric New Flyer transit bus powered by 120 kWh MHI MLiX Li-ion pack in operational testing in Manitoba, Canada

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The 40-foot “E-Bus” is based on New Flyer’s 40-foot Xcelsior heavy-duty transit bus and is powered by a 120 kWh lithium-ion rechargeable battery pack developed by MHI. 2012) Development of Large High-performance Lithium-ion Batteries for Power Storage and Industrial Use. Daisuke Mukai et al. Daisuke Mukai et al.

Canada 294
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Ford, Detroit Edison and Extreme Power Working to Build One of Michigans Largest Solar Power Systems at Michigan Assembly Plant; 2 MWh Battery Storage System

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The system will be integrated with a 750 kW energy storage facility that can store 2 MWh of energy using batteries—enough to power 100 average Michigan homes for a year. Xtreme Power of Austin, Texas, is supplying its Dynamic Power Resource on-site energy storage and power management system.

Michigan 186
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New Li-S battery shows cycle performance comparable to that of Li-ion batteries along with more than double the energy density

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sulfur battery system adopting alloy-type anode materials needs to be advanced further before they can penetrate the rechargeable battery market. sulfur batteries, particularly for use in emerging markets, including portable devices, electric vehicles, and large-scale power storage systems for renewable energies.

Li-ion 150
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DOE Awarding $620M for Smart Grid Demonstration and Energy Storage Projects

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In the second group, an additional 16 awards for a total of $185 million will help fund utility-scale energy storage projects that will enhance the reliability and efficiency of the grid, while reducing the need for new electricity plants. Notrees Wind Storage. 29,561,142. 125,006,103. Pacific Gas & Electric Company (CA).

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The Essential Guide to EV Smart Charging and Smart Energy Management

Driivz

It optimizes energy consumption based on grid constraints, energy pricing, renewable energy availability, locally stored energy, preconfigured EV owner preferences, and driver needs. Owners can also use smart energy management to integrate charging and building infrastructure with onsite battery storage and renewables like solar panels.

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Electric Cars and a Smarter Grid - Green Inc. Blog - NYTimes.com

Tony Karrer Delicious EVdriven

A key thing, he said, will be to recharge the batteries at an acceptable time for the electricity grid — to “make sure people aren’t charging at the very peak, peak time,” like late afternoon when the electricity grid is already weighted down by demands like air conditioning. “There’s a relationship of trust already.

Grid 47