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Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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Researchers at Harvard have demonstrated a metal-free organic–inorganic aqueous flow battery—a quinone–bromide flow battery (QBFB)—as an example of a class of energy storage materials that exploits the favorable chemical and electrochemical properties of a family of molecules known as quinones. Background.

Low Cost 374
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Groupe Renault creating first European factory dedicated to the circular economy of mobility in Flins

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The performance of the ReFactory will also relate to the ability to generate closed-loop supply flows with controlled costs (reuse, recycling for repair), and to develop new value-added skills (retrofitting, dismantling, fleet maintenance, preparation of batteries for the second life, etc.)

Economy 397
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ANL Project on Actively Coupled Ultracapacitor-Battery System for PHEVs Attracting OEM Interest

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The actively coupled ultracapacitor-battery system has four primary components. and Gold Peak Battery-USA are research partners in the project. The ultracapacitor bank actively coupled via the power electronics allows the use of an energy optimized battery by reducing peak loads and minimizing internal battery heating.

PHEV 247
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MIT team calls initial performance results of magnesium-antimony liquid metal battery “promising”

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Sectioned Mg||Sb liquid metal battery operated at 700 °C showing the three stratified liquid phases upon cooling to room temperature. Large-scale energy storage is poised to play a critical role in enhancing the stability, security, and reliability of tomorrow’s electrical power grid, including the support of intermittent renewable resources.

MIT 301