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Researchers use quantum computing method to optimize molecular photoswitches for solar energy harvesting

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Molecular photoswitches that can both convert and store energy could be used to make solar energy harvesting more efficient. The procedure was based on a dataset of more than 400,000 molecules, which the researchers screened to find the optimum molecular structure for solar energy storage materials.

Solar 418
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Two EVs at Plymouth State University delivered 1 MWh over 6 months with Fermata Energy bidirectional charging platform

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Two Nissan LEAF electric vehicles (EVs) at the Plymouth State University (PSU) provided 1 MWh of energy to the PSU’s ALLWell Center, offsetting some of the building’s electricity needs, over a six-month period. When the price of electricity is higher, PSU can then discharge the batteries and sell the energy back to NHEC.

Universal 221
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Cornell team suggests engineered bacteria could address current limitations of energy storage technologies

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Raising the penetration of renewable —an intermittent—sources of energy into the grid will require large scale electrical energy storage and retrieval. However, at present, no existing technology provides such storage and retrieval at a low financial and environmental cost.

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UK consortium awarded £7.7 million to develop hydrogen storage using depleted uranium

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The consortium includes the University of Bristol, EDF UK, UKAEA and Urenco. When stored, the hydrogen is in a stable but reversible metal hydride form. This hydrogen storage approach is aimed at longer-term energy storage, and will enable improvements in energy storage density. Accepted/In press).

Hydrogen 170
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University of Leeds and Chinese Academy of Sciences create joint institute to develop next-generation thermal and mechanical energy storage systems

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The University of Leeds (UK) and the Chinese Academy of Sciences have partnered to create a joint research institute to develop next generation energy storage systems, with a focus on thermal- and mechanical-based energy storage systems. Pumped storage plants pump water uphill into a reservoir or lake.

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NSF awards UCSD team $39M to improve integration of distributed energy resources into grid; EV batteries also

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DERConnect will address an outstanding national need for large-scale testing capabilities across universities, national labs, industry, utility companies and Independent System Operators to validate future technologies for autonomous energy grids in real-word scenarios. —Jan Kleissl, the project’s principal investigator.

Grid 170
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New lithium polysulfide flow battery for large-scale energy storage

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Researchers from the US Department of Energy’s (DOE) SLAC National Accelerator Laboratory and Stanford University have designed a new lithium/polysulfide (Li/PS) semi-liquid (flow) battery for large-scale energy storage, with lithium polysulfide (Li 2 S 8 ) in ether solvent as a catholyte and metallic lithium as an anode.