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优化山梨醇双脱水反应:采用商业磺酸树脂的Box-Behnken设计方法

Optimizing sorbitol double dehydration: A Box-Behnken design approach with commercial sulfonic acid resin.

作者信息

Lertna Natthaphong, Sansawat Nitchakamol, Neramittagapong Arthit, Theerakulpisut Somnuk, Neramittagapong Sutasinee

机构信息

Department of Chemical Engineering, Faculty of Engineering, Khon Kaen University, Khon Kaen, 40002, Thailand.

Research Center for Environmental and Hazardous Substance Management (EHSM), Khon Kaen University, Khon Kaen, 40002, Thailand.

出版信息

Heliyon. 2024 Jul 17;10(14):e34791. doi: 10.1016/j.heliyon.2024.e34791. eCollection 2024 Jul 30.

Abstract

In this study, double dehydration of sorbitol into isosorbide using commercial sulfonic acid resin as a catalyst was carried out under vacuum conditions generated by water ejection. To improve the efficiency and selectivity of the process, optimum reaction conditions prescribed by temperature, catalyst loading, and reaction time were investigated using the Box-Behnken design (BBD) together with Response Surface Methodology (RSM). The results showed that using the water ejection system could increase reaction activity. Statistically, all the reaction parameters were found to significantly affect the double dehydration reaction response, including sorbitol conversion, 1,4-sorbitant yield, and isosorbide yield. Furthermore, accurate predictive equations for all the reaction responses displayed R > 95 %, with no significant errors observed. The optimized conditions resulted in the complete conversion of sorbitol with 6.42 % 1,4-sorbitant yield and 67.55 % isosorbide yield. The equations yielded predicted values of the responses with minor variances being lower than 1 % when compared with the experimental values. However, the efficiency of the catalyst decreased steadily over recycling cycle due to reduced active sites and textural properties, likely caused by structural collapse and by-product accumulation. This work contributes to biomass valorization by optimizing the effective process for the production of isosorbide via commercial catalysts under vacuum conditions.

摘要

在本研究中,以市售磺酸树脂为催化剂,在水喷射产生的真空条件下将山梨醇双脱水转化为异山梨醇。为提高该过程的效率和选择性,采用Box-Behnken设计(BBD)结合响应面法(RSM)研究了由温度、催化剂负载量和反应时间规定的最佳反应条件。结果表明,使用水喷射系统可提高反应活性。从统计学角度来看,所有反应参数均被发现对双脱水反应响应有显著影响,包括山梨醇转化率、1,4-山梨醇酐产率和异山梨醇产率。此外,所有反应响应的精确预测方程显示R>95%,未观察到显著误差。优化后的条件使山梨醇完全转化,1,4-山梨醇酐产率为6.42%,异山梨醇产率为67.55%。与实验值相比,这些方程得出的响应预测值的微小差异低于1%。然而,由于活性位点减少和结构性质改变,可能是由结构坍塌和副产物积累导致的,催化剂的效率在循环使用过程中稳步下降。这项工作通过优化在真空条件下使用商业催化剂生产异山梨醇的有效工艺,为生物质增值做出了贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05fa/11324973/9628ef68ac2d/gr1.jpg

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