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DETERMINATION OF OXALATE ION IN BAYER LIQUOR USING ELECTROCHEMICAL METHOD

机译:电化学法测定拜耳液中的草酸根离子

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The Bayer process can be summarized as the digestion of bauxite with caustic liquor and the subsequent precipitation of hydrated alumina [1]. Most bauxite contains organic compounds in various amounts. Depending upon the digestion conditions, 5-10% of the organic carbon is converted to sodiumoxalate [2]. When sodiumoxalate, if not controlled in Bayer process, builds up to a certain level of supersaturation, it precipitates out in the hydrate precipitator tank. This co-precipitation affects the quality of alumina [3].In this study, we investigated the electrochemical determination of oxalate ion by using differential puls voltammetry in Bayer liquor. A linear relationship between oxalate concentration and current response was obtained with good reproducibility of the current.
机译:拜耳法可以概括为用苛性液消化铝土矿和随后水合氧化铝的沉淀[1]。大多数铝土矿包含各种数量的有机化合物。根据消化条件的不同,5-10%的有机碳会转化为草酸钠[2]。当草酸钠(如果无法在拜耳法中控制)积累到一定水平的过饱和度时,就会在水合沉淀池中沉淀出来。这种共沉淀会影响氧化铝的质量[3]。 在这项研究中,我们研究了使用微分脉冲伏安法在拜耳液体中电化学测定草酸根离子的方法。草酸盐浓度与电流响应之间具有线性关系,并且具有良好的电流重现性。

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