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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Continuous separation of copper ions from a mixture of heavy metal ions using a three-zone carousel process packed with metal ion-imprinted polymer
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Continuous separation of copper ions from a mixture of heavy metal ions using a three-zone carousel process packed with metal ion-imprinted polymer

机译:使用装有金属离子压印聚合物的三区旋转传送带工艺,从重金属离子混合物中连续分离铜离子

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摘要

In this study, a three-zone carousel process based on a proper molecular imprinted polymer (MIP) resin was developed for continuous separation of Cu~(2+) from Mn~(2+) and Co~(2+). For this task, the Cu (II)-imprinted polymer (Cu-MIP) resin was synthesized first and used to pack the chromatographic columns of a three-zone carousel process. Prior to the experiment of the carousel process based on the Cu-MIP resin (MIP-carousel process), a series of single-column experiments were performed to estimate the intrinsic parameters of the three heavy metal ions and to find out the appropriate conditions of regeneration and re-equilibration. The results from these single-column experiments and the additional computer simulations were then used for determination of the operating parameters of the MIP-carousel process under consideration. Based on the determined operating parameters, the MIP-carousel experiments were carried out. It was confirmed from the experimental results that the proposed MIP-carousel process was markedly effective in separating Cu~(2+) from Mn~(2+) and Co~(2+) in a continuous mode with high purity and a relatively small loss. Thus, the MIP-carousel process developed in this study deserves sufficient attention in materials processing industries or metal-related industries, where the selective separation of heavy metal ions with the same charge has been a major concern.
机译:在这项研究中,开发了一种基于适当的分子印迹聚合物(MIP)树脂的三区传送带工艺,用于将Cu〜(2+)与Mn〜(2+)和Co〜(2+)连续分离。为了完成此任务,首先合成了印有Cu(II)的聚合物(Cu-MIP)树脂,并用于填充三区转盘工艺的色谱柱。在基于Cu-MIP树脂的旋转木马工艺实验(MIP-旋转木马工艺)之前,进行了一系列单柱实验,以估计三种重金属离子的固有参数并找出合适的条件。再生和重新平衡。这些单列实验和其他计算机模拟的结果随后用于确定所考虑的MIP传送带过程的操作参数。基于确定的操作参数,进行了MIP轮播实验。从实验结果证实,所提出的MIP转盘工艺在以高纯度和相对较小的连续模式分离Cu〜(2+)和Mn〜(2+)和Co〜(2+)方面非常有效。失利。因此,在这项研究中开发的MIP转盘工艺在材料加工行业或金属相关行业中应引起足够的重视,在这些行业中,具有相同电荷的重金属离子的选择性分离一直是人们关注的主要问题。

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