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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EXECUTIVE SUMMARY NEAR TERM (< 5 years) MID TERM (5–10 years) LONG TERM (10–20 years) Establish a center for stack design and manufacturing methods, including joint and seal design Improve membranes to enable minimum crossover, lower system cost, increased stability, and reduced resistance Develop non-aqueous flow battery systems with wider cell operating voltages to improve efficiency Develop low-cost, formable, chemically and thermally tolerant resins for piping, stacks, and tanks Improve mass transport via a tailored catalyst layer and flow field configurations to increase operating current density and reduce system cost per kilowatt Develop an inline, real-time sensor that can detect impurities in electrolyte composition for various flow battery chemistries Create a computational fluidics center at a national laboratory or university Identify low-cost hydrogen suppression materials (anti-catalysts) and redox catalysts for negative electrodes Develop a 1-megawatt flywheel motor capable of vacuum operation and superconduction Optimize materials utilization through diagnostics and modeling Develop high-power/energy carbon electrode for electrochemical capacitors Develop hubless flywheel rotor with four times higher energy Improve thermal management in endothermic electrolysis reactions and exothermic fuel cell reactions in regenerative fuel cells Develop new catalysts for metal-air batteries with low overpotentials for oxygen reduction in order to make systems more efficient, cost-effective, and bifunctional Explore the untapped potential of multivalent chemistries Develop air electrodes for metal-air batteries with high electrochemical activity and lower polarization and resistance Combine technologies for synergy Take an integrated approach to degradation by combining microstructure/chemistry observations with mechanistic modeling (both degradation and electrochemical models) and accelerated testing Conduct DOE-funded demonstrations of all energy storage technologies Specify cycle and life tests for stationary power applications 3 CROSSCUTTING EMERGING POWER ACTIVITIES TECHNOLOGIES TECHNOLOGIES FLOW BATTERIES

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