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Manganese consumption during zinc electrowinning using a dynamic process simulation

机译:锌电解沉积过程中锰消耗量的动态过程模拟

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The consumption of manganese in a zinc electrowinning cell house is examined using a process simulation coupled with industrial cell house data. A cell house of a major industrial producer of zinc was simulated using process simulation software. Process data was input in to the simulation on a simulated hourly basis to provide a simulation which appropriately represented the dynamic process. A small amount of dissolved manganese is desired in a zinc electrowinning electrolyte in order to reduce corrosion of the anodes by the formation of a thin layer of manganese dioxide. The manganese consumption was followed through a major change in the Mn concentration. The consumption rate of manganese ions from solution was found to vary between 8 x 10~(-7) and 4 × 10~(-7) mol s~(-1) m~(-2) on PbAg anodes. During shut downs, aqueous manganese concentration was not reduced. Larger rates of manganese consumption were found to be associated with lower concentration ratios of manganese ions to chloride ions in the electrolyte.
机译:使用过程模拟与工业电池室数据相结合,检查了锌电解沉积电池室中锰的消耗量。使用过程仿真软件对主要的锌工业生产商的牢房进行了仿真。将过程数据按模拟小时数输入到模拟中,以提供适当表示动态过程的模拟。为了通过形成二氧化锰薄层减少阳极的腐蚀,在锌电解沉积的电解质中需要少量溶解的锰。通过锰浓度的重大变化来跟踪锰的消耗。发现在PbAg阳极上,溶液中锰离子的消耗速率在8 x 10〜(-7)和4×10〜(-7)mol s〜(-1)m〜(-2)之间变化。在关闭期间,锰水溶液的浓度没有降低。发现较高的锰消耗速率与电解质中锰离子与氯离子的较低浓度比有关。

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