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Single-Cell-Performance Studies on the Fe/Cr Redox Energy-Storage System Using Mixed-Reactant Solutions at Elevated Temperature

机译:高温混合反应溶液对Fe / Cr氧化还原能量储存系统的单细胞性能研究

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Experimental studies in a 14.5-cm exp 2 single-cell system using mixed-reactant solutions at 65 exp 0 C are described. Systems were tested under isothermal conditions, i.e., reactants and the cell were at the same temperature. Charging and discharging performance were evaluated by measuring watt-hour and coulombic efficiencies, voltage-current relationships, hydrogen evolution and membrane resistivity. Watt-hour efficiencies ranged from 86% at 43 ma/cm exp 2 to 75% at 129 ma/cm exp 2 with corresponding coulombic efficiencies of 92% and 97%, respectively. Hydrogen evolution was less than 1% of the charge coulombic capacity during charge-discharge cycling. Bismuth and bismuth-lead catalyzed chromium electrodes maintained reversible performance and low hydrogen evolution under normal and adverse cycling conditions. Reblending of the anode and cathode solutions was successfully demonstrated to compensate for osmotic volume changes. Improved performance was obtained with mixed reactant systems in comparison to the unmixed reactant systems. (ERA citation 08:041229)

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