首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Improving performance of a tandem simulated moving bed process for sugar separation by making a difference in the adsorbents and the column lengths of the two subordinate simulated moving bed units
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Improving performance of a tandem simulated moving bed process for sugar separation by making a difference in the adsorbents and the column lengths of the two subordinate simulated moving bed units

机译:通过改变两个从属模拟移动床单元的吸附剂和柱长的差异,改善串联模拟移动床工艺进行糖分离的性能

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摘要

A tandem simulated moving bed (SMB) process for removal of sulfuric acid and acetic acid from sugars has been developed previously. This process consisted of two four-zone SMB units (Ring I and Ring II), in which the same adsorbent (Dowex99 resin) and the same column length were used. To improve the performance of such a tandem SMB process for sugar separation, it is worth adopting the strategy of making a difference between the column lengths of Ring I and Ring II. The results showed that such strategy could allow the adsorbent beds of both Ring I and Ring II to be fully utilized at the same time, which was impracticable in the previous tandem SMB mode. As a result, the tandem SMB based on such strategy could achieve higher productivity than the previous tandem SMB mode. In addition, the use of different adsorbents (Amberchrom-CG161C in Ring I and Dowex99 in Ring II) was proposed as the second strategy, which was confirmed to be highly effective in improving the productivity of the tandem SMB for sugar separation. Finally, a third strategy was proposed by combing the first and the second strategies. It was found that compared to the previous tandem SMB mode, the third strategy led to more than eleven times the productivity under the constraint of pressure drop ≤100. psi. This was mostly because the third strategy had a remarkable advantage over the previous tandem SMB mode in the aspects of bed utilization and selectivities, which stemmed from the use of different column lengths and the use of different adsorbents respectively.
机译:先前已经开发了一种串联模拟移动床(SMB)工艺,用于从糖中去除硫酸和乙酸。此过程由两个四区SMB单元(环I和环II)组成,其中使用相同的吸附剂(Dowex99树脂)和相同的柱长。为了提高这种串联SMB分离糖工艺的性能,值得采用在I环和II环的柱长之间有所不同的策略。结果表明,这种策略可以同时充分利用环I和环II的吸附床,这在以前的串联SMB模式下是不可行的。结果,基于这种策略的串联SMB可以实现比以前的串联SMB模式更高的生产率。另外,第二种方法是建议使用不同的吸附剂(环I中的Amberchrom-CG161C和环II中的Dowex99)作为第二种策略,这被证实对提高串联SMB分离糖的生产率非常有效。最后,通过结合第一和​​第二种策略提出了第三种策略。结果发现,与先前的串联SMB模式相比,在压降≤100的约束下,第三种策略的生产率提高了11倍以上。磅/平方英寸这主要是因为第三种方法在床利用率和选择性方面比以前的串联SMB模式具有显着优势,这分别来自使用不同的色谱柱长度和使用不同的吸附剂。

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