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SOLVENT EXTRACTION OF NICKEL IN SPENT ELECTROLESS NICKEL PLATING BATHS

机译:电化学镀镍槽液中镍的溶剂萃取

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With the increasing importance of electroless nickel plating technology in many fields such as the electronic and automobile industries, the treatment of spent baths is becoming a serious problem. Although the spent baths are currently treated by a conventional precipitation method, a method with no sludge generation is desired. Previously, we proposed the solvent extraction recovery of nickel from the spent baths by means of solvent extraction using LIX84I as the extractant. However, a problem of this method was that the extraction and stripping of nickel were not fast enough to achieve high efficiencies when the continuous extractor was used. We have overcome this difficulty by finding that the addition of an acidic organophosphorous reagent in small amount into the organic phase markedly promotes the extraction and stripping rates of the nickel. Shaking-out tests using a separatory funnel at 240 spm revealed that the time to reach the equilibria is more than 60 min with only 20 vol% LIX84I, but is reduced to 10 min and 2.5 min by adding 2 vol% DP8R, respectively, during the extraction and the stripping with sulfuric acid.
机译:随着化学镀镍技术在诸如电子和汽车工业的许多领域中的重要性的日益提高,废浴的处理正成为一个严重的问题。尽管废浴当前通过常规的沉淀方法进行处理,但是期望不产生淤渣的方法。以前,我们建议使用LIX84I作为萃取剂,通过溶剂萃取从废液中回收镍。但是,该方法的问题在于,当使用连续萃取器时,镍的萃取和汽提速度不足以实现高效率。通过发现向有机相中添加少量酸性有机磷试剂可显着提高镍的萃取和汽提速率,我们克服了这一困难。使用分液漏斗在240 spm进行的摇晃试验表明,仅使用20%(体积)的LIX84I,达到平衡所需的时间超过60分钟,而在添加过程中分别添加2%(体积)的DP8R可将其降至10分钟和2.5分钟。萃取并用硫酸汽提。

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