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Study on Selective Removal of Impurity Iron from Leached Copper-Bearing Solution Using a Chelating Resin

机译:螯合树脂选择性浸出含铜浸出液中杂质铁的研究

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In order to selectively remove iron from copper laden solution after leaching but prior to electrowinning, equilibrium, kinetic, and thermodynamic studies have been conducted on an a chelating resin of Rexp-501 at pH 1.0 and at various temperatures. Both Langmuir and Freundlich models were investigated, with the Langmuir model proving to be more suitable for fitting iron removal performance, with little influence from copper concentration. Compared with the pseudo first order kinetic model, the pseudo second order kinetic model fitted the dynamic adsorption process better, indicating a chemisorption mechanism. Fourier transform infrared spectroscopy (FT-IR) results indicated that C=O from carbonyl group played a key role in combining with iron and can be regenerated and reused. However, the C=O of the acylamino group combining with iron was not able to be released after oxalic acid was applied.
机译:为了在浸提之后但在电解沉积之前从载铜溶液中选择性除去铁,已经在pH 1.0和各种温度下对Rexp-501螯合树脂进行了平衡,动力学和热力学研究。 Langmuir模型和Freundlich模型均已进行了研究,事实证明Langmuir模型更适合拟合除铁性能,而不受铜浓度的影响。与拟一级动力学模型相比,拟二级动力学模型更好地拟合了动态吸附过程,表明了化学吸附机理。傅立叶变换红外光谱(FT-IR)结果表明,羰基的C = O在与铁结合中起关键作用,并且可以再生和再利用。但是,在施加草酸后,无法释放与铁结合的酰基氨基的C = O。

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