Development of the Zinc-Chlorine Battery for Utility

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Development of the Zinc-Chlorine Battery for Utility ( development-zinc-chlorine-battery-utility )

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ADJUSTABLE WEIR ELECTRODE CHLORINE ELECTRODE CHLORINE CONTACT BLOCK (FRAME & MANIFOLD) PLASTIC SPACER PLASTIC ELECTRODE FRAME Figure 35-1. Exploded View of the Chlorine Electrode Test Cell TESTING METHODS The test cell shown in Figure 35-1 was designed to allow rapid removal and replace­ ment of the chlorine electrode. The conditions selected for testing resemble those employed in the 45kWh battery modules. The test schematic is presented in Figure 35-2. Temperature was maintained at 30°C. In evaluating voltaic performance, higher electrolyte flow rates than with operating systems were employed. This ensures against slight variations in flow and/or dissolved chlorine level materi­ ally affecting discharge performance. Tests were made with the electrolyte chlo­ rine-saturated. The electrolyte was 3M ZnCl3 + KCL at a pH = 0. 35-3 ELECTROLYTE SUPPLY TUBE THREADED HOLES FOR ELECTRICAL CONTACTS (4 PLACES) STAND PIPES GLASS VIEWING PORT

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