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Devices for Stationary Electrical Energy Storage Applications

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Devices for Stationary Electrical Energy Storage Applications ( devices-stationary-electrical-energy-storage-applications )

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n STACK/SYSTEM CONSTRUCTION – Developing robust planar electrolytes can reduce stack size and resistance and provide an alternative to current cylindrical electrolyte designs. Identifying low-cost materials that can encase high-temperature cells, reducing operation temperature, and implementing U.S. manufacturing processes also have the potential to reduce system cost and increase the manufacturability and ease of integrating sodium batteries into the electric grid. n OPERATIONAL – Implementing pilot-scale testing of battery systems can help to develop performance parameters for grid applications. n NEW CONCEPTS FOR SODIUM BATTERIES – Developing cost-effective sodium-air and sodium-ion batteries could expand the potential for sodium batteries by providing new technologies with electrochemical compositions that are different from sodium-beta alumina batteries. The success of these activities and initiatives will require significant support from DOE. To help DOE better focus its resources over time, Figure 5 divides the solutions by the time frame in which they will impact the market: near term (less than 5 years), mid term (5–10 years), and long term (10–20 years). The bolded activities are high-priority initiatives. SODIUM-BASED BATTERIES 27

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