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Pervaporation characteristics of PDMS/PMHS nanocomposite membranes inclusive multi-walled carbon nanotubes for improvement of acetic acid-methanol esterification reaction

机译:PDMS / PMHS纳米复合膜的渗透特性包括多壁碳纳米管,用于改善乙酸 - 甲醇酯化反应

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Cross-linked poly(dimethyl siloxane)-poly(methyl hydrogen siloxane) nanocomposite membranes selective to esters were prepared using different concentrations of multi-walled carbon nanotubes (CNTs) (0, 0.2, 0.5 and 1 wt%) and then used in the hybrid pervaporation reaction process. In this reaction, methyl acetate was produced by pervaporation-esterification reaction in a batch membrane reactor using heterogeneous catalyst of Amberlyst 15. The synthesized membranes were characterized by Fourier transform infrared spectroscopy, scanning electronic microscopy (SEM), X-ray diffraction and thermal gravimetric analysis. The SEM micrographs showed the nanometric distribution of the hybrid membranes. The thermal stability of the prepared membranes showed that the appropriate incorporation of CNT could improve the thermal stability of the prepared membranes. The effects of catalyst loading, CNT content in membranes, temperature and initial molar ratio of reactants were examined. Results showed that the flux and separation factor were varied depending on the studied parameters. Using the hybrid membrane with 0.2 wt% CNT content resulted in an acid conversion rate of 88.7% after 90 min, for an alcohol/acid molar ratio of 4:1 and with catalyst loading of 15 wt% relative to initial weigh of acid in the feed mixture at 50 degrees C.
机译:使用不同浓度的多壁碳纳米管(CNT)(0,0.2,0.5和1wt%)制备与酯选择性的交联聚(二甲基硅氧烷)纳米复合材料膜,然后使用杂交渗透蒸发反应过程。在该反应中,使用散膜反应器中的磷酸酯 - 酯化反应使用散膜15的渗透酯化反应产生甲基乙酸甲酯。通过傅里叶变换红外光谱,扫描电子显微镜(SEM),X射线衍射和热重量,表征合成膜。分析。 SEM显微照片显示杂交膜的纳米分布。制备的膜的热稳定性表明,CNT的适当掺入可以改善制备膜的热稳定性。研究了催化剂负载,CNT含量在膜中的影响,温度和反应物初始摩尔比的影响。结果表明,根据所研究的参数,磁通和分离因子变化。使用具有0.2wt%CNT含量的杂化膜导致酸性转化率为88.7%,在90分钟后,醇/酸摩尔比为4:1,相对于初始称量的酸催化剂负载为15wt%饲料混合物在50℃下。

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