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Selective recovery of chromium, copper, nickel, and zinc from an acid solution using an environmentally friendly process

机译:使用环保工艺从酸性溶液中选择性回收铬,铜,镍和锌

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摘要

PURPOSE: Real electroplating effluents contain multiple metals. An important point related with the feasibility of the bioremediation process is linked with the strategy to recover selectively metals. In this work, a multimetal solution, obtained after microwave acid digestion of the ashes resulted from the incineration of Saccharomyces cerevisiae contaminated biomass, was used to recover selectively chromium, copper, nickel, and zinc.RESULTS: The acid solution contained 3.8, 0.4, 2.8, and 0.2 g/L of chromium(III), copper, nickel, and zinc, respectively. The strategy developed consisted of recovering copper (97.6%), as a metal, by electrolyzing the solution at a controlled potential. Then, the simultaneous alkalinization of the solution (pH 14), addition of H(2)O(2), and heating of the solution led to a complete oxidation of chromium and nickel recovery (87.9% as a precipitate of nickel hydroxide). After adjusting the pH of the remaining solution at pH 10, selective recovery of zinc (82.7% as zinc hydroxide) and chromium (95.4% as a solution of cromate) was achieved.CONCLUSION: The approach, used in the present work, allowed a selective and efficient recovery of chromium, copper, nickel, and zinc from an acid solution using a combined electrochemical and chemical process. The strategy proposed can be used for the selective recovery of metals present in an acid digestion solution, which resulted from the incineration of ashes of biomass used in the treatment of heavy metals rich industrial effluents.
机译:目的:真正的电镀废水包含多种金属。与生物修复过程的可行性有关的重要点与选择性回收金属的策略有关。在这项工作中,使用了一种多金属溶液,该溶液是由啤酒酵母污染的生物质焚化产生的微波酸消化后的灰分所得到的,用于选择性地回收铬,铜,镍和锌。结果:该酸溶液包含3.8、0.4,铬(III),铜,镍和锌分别为2.8和0.2 g / L。制定的策略包括通过在受控电位下电解溶液来回收铜(97.6%)作为金属。然后,溶液同时进行碱化(pH 14),添加H(2)O(2)和加热溶液导致铬的完全氧化和镍的回收(作为氢氧化镍沉淀的87.9%)。将剩余溶液的pH值调整为10后,选择性回收锌(氢氧化锌为82.7%)和铬(克罗姆酸盐为95.4%)。结论:本工作中使用的方法结合电化学和化学工艺从酸性溶液中选择性和有效地回收铬,铜,镍和锌。所提出的策略可用于选择性消化酸消化溶液中存在的金属,这是由于焚烧用于处理富含重金属的工业废水的生物质的灰烬而产生的。

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