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Recovery of Valuable Metals from Waste Printed Circuit Boards by Using Iodine-Iodide Leaching and Precipitation

机译:利用碘-碘化物浸出和沉淀从废印刷电路板中回收有价金属

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This study presents a viable approach for recovery of precious metals such as gold (Au), silver (Ag), palladium (Pd), and base metals, including copper (Cu), nickel (Ni), cobalt (Co), lead (Pb) and zinc (Zn) from waste printed circuit boards (WPCBs) via iodine-iodide leaching and precipitation. The behaviours of dissolution and precipitation of precious and base metals during iodine-iodide leaching and precipitation processes were discussed. Sodium hydroxide (NaOH) was used to remove base metal impurities exist in the pregnant leach solution under alkaline conditions. Precious metals remained in the resulting solution from NaOH precipitation were recovered by reduction using ascorbic acid (L-AA) solution. Results show that under optimum leaching conditions, almost all (> 99%) of Au was dissolved in an iodine-iodide solution when the dissolution efficiencies of other precious metals (Ag, Pd) and base metals, besides calcium (leaching of 25%) were less than 1 and 6%, respectively. The study revealed that more than 95% of Cu, Ni, Pb, Zn, Fe and Mn were initially removed from the pregnant leach solution at pH of 9.3 with addition of 0.1 M NaOH. Then 99.8% Au, 81.7% Ag and 74% Pd were precipitated from the obtained solution after NaOH precipitation while L-AA dose was 0.6 ml/ml at the condition. It can be concluded that the precious and base metals could be recovered selectively and economically from WPCBs via iodine-iodide leaching followed by precipitation using NaOH and L-AA.
机译:这项研究提出了一种可行的方法来回收贵金属,例如金(Au),银(Ag),钯(Pd)和贱金属,包括铜(Cu),镍(Ni),钴(Co),铅(废印刷电路板(WPCB)中的Pb)和锌(Zn)经由碘-碘化物的浸出和沉淀。讨论了碘-碘化物浸出和沉淀过程中贵金属和贱金属的溶解和沉淀行为。在碱性条件下,使用氢氧化钠(NaOH)去除母液中存在的贱金属杂质。通过使用抗坏血酸(L-AA)溶液还原,从NaOH沉淀中残留在所得溶液中的贵金属被回收。结果表明,在最佳浸出条件下,除钙(浸出率为25%)外,其他贵金属(Ag,Pd)和贱金属的溶解效率几乎全部(> 99%)的Au都溶解在碘碘溶液中。分别小于1和6%。研究表明,在pH 9.3的条件下,添加0.1 M NaOH可以从富集的浸出溶液中去除超过95%的Cu,Ni,Pb,Zn,Fe和Mn。然后在NaOH沉淀后从所得溶液中沉淀出99.8%的Au,81.7%的Ag和74%的Pd,而在该条件下L-AA的剂量为0.6ml / ml。可以得出结论,可以通过碘-碘化物的浸提,然后使用NaOH和L-AA进行沉淀,从WPCB中选择性,经济地回收贵金属和贱金属。

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