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Characterization of a Compound Starch-Based Adsorbent for Alcohol-Water Azeotrope Dehydration

机译:酒精-水共沸物脱水用复合淀粉基吸附剂的表征

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摘要

Biosorptive dehydration processes of ethanol, isopropanol and t-butyl alcohol (TBA) using a specially formulated compound starch-based adsorbent (CSA) were investigated and analyzed. The inverse gas chromatography (IGC) experimental results indicated that the CSA was effective for the selective separations at the alcohol and water azeotropes. Using batch adsorption and regeneration experiments, the optimal adsorption and regeneration conditions were determined by single-factor and orthogonal design methods. A comparison of the results from the IGC and batch adsorption experiments of the three azeotrope systems suggested that the separation factors increased with decreasing alcohol polarities and increasing numbers of alcohol carbon atoms, which may be related to the transport properties and strength of the interactions between the alcohol and free OH groups on the glucose units in the CSA. The field emission scanning electron microscopic images and poresize distributions indicated that the main component of the CSA macro-porous structure played a major role in adsorption. Cycling adsorption/regeneration experiments demonstrated the reusability of the CSA.
机译:研究和分析了乙醇,异丙醇和叔丁醇(TBA)使用特殊配制的复合淀粉基吸附剂(CSA)的吸附脱水过程。反相气相色谱(IGC)实验结果表明,CSA对醇和水共沸物的选择性分离有效。通过分批吸附和再生实验,通过单因素和正交设计方法确定了最佳的吸附和再生条件。对三种共沸物体系的IGC和间歇吸附实验结果的比较表明,分离因子随醇极性的降低和醇碳原子数的增加而增加,这可能与分子之间的迁移性质和相互作用强度有关。 CSA中葡萄糖单元上的醇和游离OH基团。场发射扫描电子显微镜图像和孔径分布表明,CSA大孔结构的主要成分在吸附中起主要作用。循环吸附/再生实验证明了CSA的可重用性。

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