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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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FIGURE 6: PRIORITIZED ACTIVITIES TO ADVANCE FLOW BATTERIES (CONTINUED) FLOW BATTERIES SHORT TERM (< 5 years) MID TERM (5–10 years) LONG TERM (10–20 years) REDOX CHEMISTRY Identify low-cost hydrogen suppression materials (anti- catalysts) and redox catalysts for negative electrodes Identify low-cost oxidation-resistant materials and redox catalysts for positive electrodes Modify low-cost redox couples to improve solubility and reduce cost per kWh Develop non-aqueous flow battery systems with wider cell operating voltages to improve efficiency MATERIALS COMPATIBILITY Develop low-cost, formable, chemically and thermally tolerant resins for piping, stacks, and tanks Fix leaks and develop combustible materials for media, stack, tanks, and piping to enable high-quality, low-cost manufacturing Develop a materials compatibility database for production plastics that includes tensile strength and ductility over time under various conditions (chemical, temperature, time) Establish a components database—including valves, pumps, contactors, and sensors— for integration that includes cost Develop manufacturable, corrosion-resistant plates 32 ADVANCED MATERIALS AND DEVICES FOR STATIONARY ELECTRICAL ENERGY STORAGE APPLICATIONS

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