碳纤维上亚砜基团的化学接枝

IF 0.4 Q4 CHEMISTRY, ANALYTICAL French-Ukrainian Journal of Chemistry Pub Date : 2019-12-24 DOI:10.17721/fujcv7i2p40-51
L. Grishchenko, T. Bezugla, A. Vakaliuk, A. Zaderko, Оleksandr Mischanchuk, T. Zakharova, O. Boldyrieva, V. Diyuk
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引用次数: 0

摘要

我们提出了以聚丙烯腈基活性炭纤维(PAN ACFs)为前体,化学均匀地接枝SO3H基团制备固体酸催化剂的溴化碳布。通过红外控制的催化测量和热分析,考察了磺化PAN ACFs的热性能和催化性能。催化试验结果表明,磺化表面通过降低反应温度,显著提高了异丙醇脱水的操作效率。所有通过溴化前体制备的带有接枝SO3H基团的PAN ACFs都可以在中等温度下将100%的异丙醇转化为丙烯。与用发烟硫酸和氯磺酸磺化的PAN ACFs相比,它们显示出最高的催化活性,后者仅将40%和70%的异丙醇转化为丙烯,并在反应介质中的较高温度下失活。
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Chemical grafting of sulfo groups onto carbon fibers
We proposed the brominated carbon cloth that made of polyacrylonitrile-based activated carbon fibers (PAN-ACFs) as a precursor to chemically and uniformly graft SO3H groups to prepare the solid acid catalyst. The thermal and catalytic properties of the sulfonated PAN-ACFs were examined by IR controlled catalytic measurements and thermal analysis. The catalytic test results showed that the sulfonated surface remarkably improved the operating efficiency in isopropanol dehydration by decreasing the reaction temperature. All PAN-ACFs with grafted SO3H groups prepared through brominated precursors can converse 100% of isopropanol into propylene at moderate temperature. They showed the highest catalytic activity compared to PAN-ACFs sulfonated with oleum and chlorosulfonic acid, which conversed only 40% and 70% of isopropanol into propylene and deactivated at the higher temperatures in the reaction medium.
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来源期刊
French-Ukrainian Journal of Chemistry
French-Ukrainian Journal of Chemistry CHEMISTRY, ANALYTICAL-
自引率
0.00%
发文量
13
审稿时长
4 weeks
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