首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Continuous-mode separation of fucose and 2,3-butanediol using a three-zone simulated moving bed process and its performance improvement by using partial extract-collection, partial extract-recycle, and partial desorbent-port closing
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Continuous-mode separation of fucose and 2,3-butanediol using a three-zone simulated moving bed process and its performance improvement by using partial extract-collection, partial extract-recycle, and partial desorbent-port closing

机译:使用三区模拟移动床工艺的岩膜和2,3-丁二醇的连续模式分离及其使用局部提取收集,部分提取物回收和部分解吸器闭合闭合

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If a multi-component monosugar mixture including fucose was used as the substrates for the Klebsiella oxytoca fermentation, it could offer the following two benefits simultaneously; (i) the removal of all monosugars other than fucose, and (ii) the acquisition of 2,3-butanediol (BD). To utilize such two benefits in favor of the economical efficiency of the fucose production process, it is essential to accomplish a high purity separation between fucose and BD on the basis of a highly -economical mode. To address this issue, we aimed to develop a simulated moving bed (SMB) process for continuous-mode separation of fucose and BD with high purities. It was first found that an Amberchrom-CG71C resin could become a suitable adsorbent for the separation of interest. The intrinsic parameters of fucose and BD on such proven adsorbent were determined, and then applied to the optimal design of the fucose-BD separation SMB. The capability of the designed SMB in ensuring high purities and high yields was experimentally verified. Finally, we devised two potential strategies to make a further improvement in product concentrations and/or desorbent usage while keeping the purities and yields of fucose and BD almost unchanged. The first strategy was based on partial extract-collection and partial extract-discard, which was found to result in 33% higher BD product concentration. The second strategy was based on partial extract-collection, partial extract-recycle, and partial desorbent-port closing, which could lead to 25% lower desorbent usage, 33% higher BD product concentration, and 7% higher fucose product concentration. (C) 2018 Elsevier B.V. All rights reserved.
机译:如果使用包括岩藻糖的多组分单核糖混合物作为用于Klebsiella催产的基底,则它可以同时提供以下两个益处; (ⅰ)除去岩藻糖比以外的所有单糖,和(ii)所述采集2,3-丁二醇(BD)的。为了利用这种两个益处,支持岩藻糖生产过程的经济效率,基于高度经济模式,必须在岩藻糖和BD之间完成高纯度分离。为了解决这个问题,我们旨在开发一个模拟的移动床(SMB)过程,用于连续模式分离岩藻糖和BD具有高纯度。首先发现Amberchrom-CG71C树脂可以成为利益分离的合适吸附剂。岩藻糖和BD的这种成熟的吸附剂固有参数进行了测定,然后施加到岩藻糖的BD分离SMB的最佳设计。实验验证了设计的SMB在确保高纯度和高收益率方面的能力。最后,我们设计了两种潜在的策略,以进一步改善产品浓度和/或解吸剂的使用,同时保持粘膜和BD几乎不变的效果和产量。第一种策略基于部分提取物收集和部分提取物丢弃,发现该丢弃物导致BD产品浓度较高33%。第二种策略基于部分提取收集,部分提取物和部分解吸器端口闭合,这可能导致解吸使用25%,BD产物浓度高出33%,岩藻糖产物浓度高出7%。 (c)2018年elestvier b.v.保留所有权利。

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