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THERMOMETER FLOW METER VENT TO HOOD FILTER TEMPERATURE CONTROLLED WATER BATH CHLORINE GAS INLET ELECTROLYTE PUMP SUMP CELL Figure 32-1. Schematic of test system for studying the electrolyte-static head and electrode-height effects. Electrodes of three different heights (4", 6", and 8") were used to examine the elec trode-height and the static-head effects on the electrochemical performance. Chlo rine electrodes if sizes 4.000" x 2.625" x 0.080" and zinc electrodes of sizes 4.000" x 2.625" x 0.039" were used as the standard electrode size for comparison. The dimensions and structure of the 6" and 8" high electrodes are similar to the 4" high electrode with the obvious exception of being larger in the height dimension Referring to Figure 32-2, a fixed partition of 3.9", separating the sump and the test cell compartment serves to develop a 0.1" high overflow on the 4" high elec trode. To regulate the electrolyte-static head as desired, an adjustable partition was added to the fixed partition to develop the overflow required. Experimentally, the exact height of the static head was measured by a scale made of titanium. Six static head heights, ranging from a low of 0.1" to a maximum of 4.1", were selected for evaluation. All experiments were conducted under the standard test conditions as listed in Table 32-1. In order to minimize the experimental variables, supporting electrolyte 32-3PDF Image | Development of the Zinc-Chlorine Battery for Utility
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