首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Development of a four-zone carousel process packed with metal ion-imprinted polymer for continuous separation of copper ions from manganese ions, cobalt ions, and the constituent metal ions of the buffer solution used as eluent
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Development of a four-zone carousel process packed with metal ion-imprinted polymer for continuous separation of copper ions from manganese ions, cobalt ions, and the constituent metal ions of the buffer solution used as eluent

机译:开发了一种四区圆盘传送带工艺,该工艺装有金属离子印迹聚合物,用于将铜离子与锰离子,钴离子和用作洗脱液的缓冲溶液中的构成金属离子连续分离

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摘要

A three-zone carousel process, in which Cu(II)-imprinted polymer (Cu-MIP) and a buffer solution were employed as adsorbent and eluent respectively, has been developed previously for continuous separation of Cu~(2+) (product) from Mn~(2+) and Co~(2+) (impurities). Although this process was reported to be successful in the aforementioned separation task, the way of using a buffer solution as eluent made it inevitable that the product stream included the buffer-related metal ions (i.e., the constituent metal ions of the buffer solution) as well as copper ions. For a more perfect recovery of copper ions, it would be necessary to improve the previous carousel process such that it can remove the buffer-related metal ions from copper ions while maintaining the previous function of separating copper ions from the other 2 impure heavy-metal ions. This improvement was made in this study by proposing a four-zone carousel process based on the following strategy: (1) the addition of one more zone for performing the two-step re-equilibration tasks and (2) the use of water as the eluent of the washing step in the separation zone. The operating conditions of such a proposed process were determined on the basis of the data from a series of single-column experiments. Under the determined operating conditions, 3 runs of carousel experiments were carried out. The results of these experiments revealed that the feed-loading time was a key parameter affecting the performance of the proposed process. Consequently, the continuous separation of copper ions from both the impure heavy-metal ions and the buffer-related metal ions could be achieved with a purity of 91.9% and a yield of 92.8% by using the proposed carousel process based on a properly chosen feed-loading time.
机译:先前已经开发出了一种三区轮转工艺,其中分别使用Cu(II)印迹聚合物(Cu-MIP)和缓冲溶液作为吸附剂和洗脱液,用于连续分离Cu〜(2 +)(产物)。来自Mn〜(2+)和Co〜(2 +)(杂质)。尽管据报道该方法在上述分离任务中是成功的,但是使用缓冲溶液作为洗脱剂的方式不可避免地使产物流包含与缓冲有关的金属离子(即,缓冲溶液的构成金属离子)作为以及铜离子。为了更完美地回收铜离子,有必要改进先前的转盘工艺,使其能够从铜离子中除去与缓冲液有关的金属离子,同时保持先前的功能,将铜离子与其他两种不纯重金属分离。离子。在这项研究中,通过基于以下策略提出了一种四区域轮播过程来实现这一改进:(1)增加一个额外的区域来执行两步重新平衡任务;(2)使用水作为水处理设备。分离区中洗涤步骤的洗脱液。根据一系列单柱实验的数据确定了这种拟议方法的操作条件。在确定的操作条件下,进行了3​​次轮播实验。这些实验的结果表明,进料时间是影响拟议工艺性能的关键参数。因此,来自不纯的重金属离子和缓冲器相关的金属离子两者的铜离子的连续分离可以用的91.9%的纯度和92.8%,通过使用基于一个适当选择的进料所提出的传送带处理的产率完成加载时间。

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