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首页> 外文期刊>The Korean journal of chemical engineering >Optimization study of a batch chromatographic process based on Amberchrom-CG161C adsorbent for separation of valine from a ternary amino acid mixture
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Optimization study of a batch chromatographic process based on Amberchrom-CG161C adsorbent for separation of valine from a ternary amino acid mixture

机译:基于Amberchrom-CG161C吸附剂的间歇色谱法从三元氨基酸混合物中分离缬氨酸的优化研究

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摘要

The optimal design of the batch chromatographic process for separation of valine (product) from isoleucine and leucine (side-products) was carried out by using the relevant optimization tool that was prepared on the basis of an up-to-date genetic algorithm. In such an optimal design, the flow rate, feed size (?feed), eluent gap size (?gap), and product collection time were optimized to maximize the valine productivity of the batch chromatographic process under consideration. The results showed that the valine productivity was governed by the flow rate in the region of low flow rates, whereas it was governed by the Delta (gap) /Delta (feed) factor in the region of high flow rates. Finally, the effect of valine yield on the productivity was investigated, followed by providing the proper operating conditions that could be advantageous to both valine productivity and valine yield.
机译:使用基于最新遗传算法制备的相关优化工具,对用于从异亮氨酸和亮氨酸(副产物)中分离缬氨酸(产物)和间歇色谱法的最佳设计进行了设计。在这样的最佳设计中,对流速,进料尺寸(?feed),洗脱液间隙尺寸(?gap)和产物收集时间进行了优化,以使所考虑的批量色谱过程的缬氨酸生产率最大化。结果表明,缬氨酸生产率在低流速区域受流速控制,而在高流速区域受Delta(缺口)/ Delta(进料)因子控制。最后,研究了缬氨酸产量对生产率的影响,然后提供了可能对缬氨酸产量和缬氨酸产量均有利的适当操作条件。

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