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Nickel recovery from synthetic Watts bath electroplating wastewater by homogeneous fluidized bed granulation process

机译:均质流化床造粒工艺从合成瓦茨电镀液中回收镍

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This study determined the removal of nickel from a synthetic Watts bath electroplating composition (NiCl2 center dot 6H(2)O, NiSO4 center dot 6H(2)O, and H3BO3) by homogeneous fluidized-bed granulation process. The effects of adding calcium ions present in an electroplating bath while varying influent nickel concentration (200 mg.L-1, 300 mg.L-1, and 400 mg.L-1), [CO32-:Ni2+] molar ratio (1.0, 1.5 and 2.0) and pH of carbonate precipitant (10.5, 10.8, and 11.0) were evaluated. Calcium ion addition was varied at 20 mg.L-1, 50 mg.L-1, and 100 mg.L-1. The best operating conditions were at 300 mg.L-1 influent nickel concentration, [CO32-:Ni2+] molar ratio of 1.5, and pH of 10.8 of the precipitant from different types of water source. The removal of nickel from synthetic Watts bath electroplating wastewater using tapwater was 84.93%, and 92.66% with the addition of Ca2+ ion at 20 mg.L-1. For the synthetic Watts bath electroplating wastewater using reverse osmosis water, nickel removal was 97.08% and 98.51% when pure nickel ion in the solution was used. The characterized granules has low symmetry that confirmed the characteristics of a nullaginite mineral of Ni-2(CO3)(OH)(2). (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究确定了通过均相流化床造粒工艺从合成的瓦特浴电镀组合物(NiCl2中心点6H(2)O,NiSO4中心点6H(2)O和H3BO3)中去除镍的方法。添加电镀液中存在的钙离子,同时改变进水镍浓度(200 mg.L-1、300 mg.L-1和400 mg.L-1),[CO32-:Ni2 +]摩尔比(1.0)的影响分别为1.5和2.0)和碳酸盐沉淀剂的pH值(10.5、10.8和11.0)。钙离子的添加​​量分别为20 mg.L-1、50 mg.L-1和100 mg.L-1。最佳操作条件是300 mg.L-1进水镍浓度,[CO32-:Ni2 +]摩尔比为1.5,pH值为10.8的不同类型水源的沉淀剂。使用自来水从合成的瓦茨浴电镀废水中去除镍的比例为84.93%,加入20 mg.L-1的Ca2 +离子去除率为92.66%。对于使用反渗透水的合成瓦茨浴电镀废水,当溶液中使用纯镍离子时,镍的去除率为97.08%和98.51%。表征的颗粒具有低对称性,这证实了Ni-2(CO3)(OH)(2)的钠长石矿物的特性。 (C)2016 Elsevier B.V.保留所有权利。

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