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首页> 外文期刊>Hydrometallurgy >Adsorption of palladium(II) from chloride solutions on Amberlyst A 29 and Amberlyst A 21 resins
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Adsorption of palladium(II) from chloride solutions on Amberlyst A 29 and Amberlyst A 21 resins

机译:氯化物溶液在Amberlyst A 29和Amberlyst A 21树脂上吸附钯(II)

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摘要

Two anion exchange resins - strongly basic Amberlyst A 29 and weakly basic Amberlyst A 21 - were applied to the adsorption of palladium(II) complexes from HCl-NaCl solutions over a range of acid concentrations (0.1-2.0 M) in 1.0 and 2.0 M NaCl using static and dynamic methods. The breakthrough curves of Pd(II) were used to calculate the ion exchange capacity, weight and bed distribution coefficients. Kinetic studies applied the Legergren's equation, the pseudo-second order and the inter-particle diffusion kinetic models to calculate kinetic parameters. It was observed that Amberlyst A 21 is more promising for adsorbing palladium(II) chloro-complexes from acidic chloride solutions than Amberlyst A 29. Furthermore, the type 1, pseudo-second order linear kinetic model has the highest correlation coefficient and gives the best fit between the experimental and predicted data.
机译:两种阴离子交换树脂-强碱性Amberlyst A 29和弱碱性Amberlyst A 21-在1.0和2.0 M的酸浓度范围(0.1-2.0 M)上,用于从HCl-NaCl溶液中吸附钯(II)络合物。 NaCl采用静态和动态方法。用Pd(II)的穿透曲线计算离子交换容量,重量和床层分布系数。动力学研究应用了Legergren方程,伪二阶和粒子间扩散动力学模型来计算动力学参数。观察到,Amberlyst A 21比Amberlyst A 29更有望从酸性氯化物溶液中吸附钯(II)氯配合物。此外,类型1的伪二阶线性动力学模型具有最高的相关系数,并且具有最佳的相关性。在实验数据和预测数据之间进行拟合。

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