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Electrochemical-Active Chlorine Generation by Circulating the Electrolyte Through an Electrolytic Cell

机译:通过循环电解液穿过电解池产生电化学活性氯

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Development of electrochemical generation of active chlorine (AC) was studied by circulating the electrolyte through an electrolytic cell. Beside electrolyte concentration and anode current density, circulation time and volume of circulated electrolyte were the main parameters of the process. Optimum electrolyte concentration and anode current density were found to be 40 g/L and 800 A/m2, respectively. The optimum circulation coefficient, which represents the ratio of circulated electrolyte volume to volume of the electrolytic cell, was in the range 14–18. Results showed that the maximum generation rate and minimum electricity consumption rate were reached after 40 min of circulation time when the optimum parameters were used. Temperature of the circulated electrolyte was monitored, and the effect of temperature change on AC generation was explored. Design of the electrolytic cell facilitates removal of scale that forms on the electrode surfaces by the passing electrolyte.
机译:通过使电解质循环通过电解池,研究了活性氯(AC)电化学生成的发展。除了电解质浓度和阳极电流密度外,循环时间和循环电解质的体积是该工艺的主要参数。最佳电解质浓度和阳极电流密度分别为40μg/ L和800μA/ m2。最佳循环系数(代表循环电解液体积与电解池体积之比)在14-18之间。结果表明,当使用最佳参数时,经过40分钟的循环时间即可达到最大发电量和最小耗电量。监测循环电解质的温度,并探索温度变化对AC产生的影响。电解池的设计有利于去除通过的电解液在电极表面形成的水垢。

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