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首页> 外文期刊>Journal of porous materials >Effects of functionalization conditions of sulfonic acid grafted SBA-15 on catalytic activity in the esterification of glycerol to monoglyceride: a factorial design approach
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Effects of functionalization conditions of sulfonic acid grafted SBA-15 on catalytic activity in the esterification of glycerol to monoglyceride: a factorial design approach

机译:磺酸接枝SBA-15的功能化条件对甘油酯化为甘油单酸酯的催化活性的影响:一种析因设计方法

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摘要

A series of propyl sulfonic acid-modified SBA-15 catalysts (SBA-15SO_3H) was prepared under various conditions using post-functionalization approach. A factorial design coupled with response surface analysis were employed to evaluate the effects of the preparation conditions on the catalyst activity. Optimization of the conditions to find the most active SBA-15SO_3H catalyst with the highest activity in glycerol esterification with lauric acid at 160 ℃ for 6 h was also made. Amount of 3-(mercaptopropyl)trimethoxysilane (MPTMS) and reflux time were chosen as parameters of the preparation conditions. The presence of propyl sulfonic acid groups in SBA-15SO_3H catalysts was confirmed by FT-TIR method. The catalysts were also characterized by means of surface analysis, XRD, TEM and TGA. The results obtained from the statistical models suggested that the amount of MPTMS was more important parameter to influence the activity compared to the reflux time. The optimum preparation condition was achieved at a reflux time of 20 h and an MPTMS amount of 1 mL/gram SBA-15 to obtain the SBA-15SO_3H(1) with the highest monoglyceride selectivity (70.2%) and corresponding lauric acid conversion (95%) in the esterification process.
机译:使用后官能化方法在各种条件下制备了一系列丙基磺酸改性的SBA-15催化剂(SBA-15SO_3H)。采用析因设计与响应表面分析相结合,以评估制备条件对催化剂活性的影响。优化了条件,以寻找最活跃的SBA-15SO_3H催化剂,在160℃下用月桂酸甘油酯化6 h时,具有最高的甘油酯化活性。选择3-(巯基丙基)三甲氧基硅烷(MPTMS)的量和回流时间作为制备条件的参数。通过FT-TIR方法证实了SBA-15SO_3H催化剂中丙基磺酸基团的存在。还通过表面分析,XRD,TEM和TGA对催化剂进行了表征。从统计模型获得的结果表明,与回流时间相比,MPTMS的量是影响活性的更重要的参数。在20h的回流时间和1mL / g的MPTMS量下获得最佳制备条件SBA-15,以获得具有最高甘油单酸酯选择性(70.2%)和相应月桂酸转化率(95的SBA-15SO_3H(1)) %)在酯化过程中。

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