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首页> 外文期刊>Process Biochemistry >Optimal design and experimental validation of a three-zone simulated moving bed process based on the Amberchrom-CGl 61C adsorbent for continuous removal of acetic acid from biomass hydrolyzate
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Optimal design and experimental validation of a three-zone simulated moving bed process based on the Amberchrom-CGl 61C adsorbent for continuous removal of acetic acid from biomass hydrolyzate

机译:基于Amberchrom-CGl 61C吸附剂从生物质水解物中连续去除乙酸的三区模拟移动床工艺的优化设计和实验验证

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摘要

In the production process of bio-ethanol from biomass, acetic acid is recognized as the key impurity to be removed from the sugar components that are generated by hydrolyzing biomass. In regard to this issue, it has recently been confirmed that the Amberchrom-CGl61C resin was highly qualified as the adsorbent of a simulated moving bed (SMB) process for continuous separation of acetic acid from the biomass hydrolyzate, i.e., sugars. However, the previous study on the Amberchrom-CGl61C SMB with the aforementioned separation goal has been limited to only a theoretical work, including some batch-chromatography tests. The experimental validation of such an Amberchrom-CGl 61C SMB process, including its optimal design, was attempted in this article. This task began by assembling the experimental unit of the SMB process with three zones. Its operating conditions were then optimized by using genetic algorithm. Under the optimized operating conditions, the relevant three-zone SMB experiment was conducted. The assay of all the resultant product samples verified that the SMB separation of interest was performed successfully as designed. The experimental data were also found to agree closely with the model predictions. Finally, a partial-discard strategy was applied to maintain the sugar product concentration as high as possible.
机译:在从生物质生产生物乙醇的过程​​中,乙酸被认为是要从水解生物质产生的糖成分中去除的关键杂质。关于这个问题,最近已经证实,Amberchrom-CG16C树脂非常适合用作从生物质水解产物即糖中连续分离乙酸的模拟移动床(SMB)方法的吸附剂。但是,先前对具有上述分离目标的Amberchrom-CGl61C SMB的研究仅限于理论工作,包括一些分批色谱测试。本文尝试对这种Amberchrom-CGl 61C SMB工艺进行实验验证,包括其最佳设计。这项任务是通过将SMB过程的实验单元与三个区域组装在一起开始的。然后使用遗传算法对其运行条件进行优化。在优化的操作条件下,进行了相关的三区域SMB实验。对所有所得产物样品的测定验证了所关注的SMB分离已按设计成功进行。还发现实验数据与模型预测非常吻合。最后,采用了部分丢弃策略以保持糖产品的浓度尽可能高。

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