首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Steady state recycling chromatography with an integrated solvent removal unit - Separation of glucose and galactose
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Steady state recycling chromatography with an integrated solvent removal unit - Separation of glucose and galactose

机译:集成了溶剂去除装置的稳态循环色谱法-分离葡萄糖和半乳糖

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摘要

A process concept where a solvent removal unit is integrated to a steady-state recycling chromatography process (SSR-SR) offers a possibility to significantly increase the performance of single column chromatographic separation. The advantages of solvent removal for a difficult separation task at conditions typical for industrial scale chromatography were demonstrated by investigating the performance of SSR-SR in separation of glucose and galactose. Two limits for the extent of solvent removal were imposed: maximum total concentration of the solution fed into the column (viscosity limit) and the maximum total concentration achievable in the solvent removal unit (solubility or osmotic pressure limit). The process was optimized using numerical simulation. Three SSR-SR configurations with different positions of the solvent removal unit were compared with (1) the conventional batch process, (2) SSR without solvent removal, and (3) batch process with solvent removal. SSR-SR was found to always improve the productivity. In addition, solvent removal reduced eluent consumption in most cases. The concentration limits and the concentration of the fresh feed were shown to determine which SSR-SR configuration yields the best performance.
机译:将溶剂去除装置集成到稳态循环色谱法(SSR-SR)中的工艺概念提供了显着提高单柱色谱分离性能的可能性。通过研究SSR-SR在分离葡萄糖和半乳糖方面的性能,证明了在工业规模色谱所特有的条件下,去除溶剂可实现困难的分离任务的优势。对溶剂去除的程度施加了两个限制:输入到色谱柱中的溶液的最大总浓度(粘度极限)和在溶剂去除单元中可达到的最大总浓度(溶解度或渗透压极限)。使用数值模拟对过程进行了优化。将三种具有不同溶剂去除单元位置的SSR-SR配置与(1)传统分批处理,(2)不去除溶剂的SSR和(3)去除溶剂的分批处理进行了比较。发现SSR-SR总是可以提高生产率。此外,在大多数情况下,去除溶剂可减少洗脱液的消耗。显示了浓度极限和新鲜饲料的浓度,以确定哪种SSR-SR配置可产生最佳性能。

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