Oxidation of Sulfurated Polyacrylonitrile-derived Nanostructured Activated Carbon Fibers for Thermal Resistant and Multifunctional Solid Acids

L. Grishchenko, S. Chernenko, A. Vakaliuk, T. Bezugla, G. G. Tsapyuk, A. Yatsymyrskyi, V. Diyuk, O. Boldyrieva, Vladyslav V. Lisnyak, R. Mariychuk, O. Mischanchuk
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Abstract

The production of propylene by dehydration of 2-propanol at solid-vapor interfaces, as an example of the acidcatalyzed surface reaction, was explored by using sulfonated polyacrylonitrile-derived activated carbon fibers (PAN-ACFs). To prepare these catalysts, the PAN-ACFs obtained by onestep carbonation-activation were modified with a surface coverage of high acidity. The surface of PAN-ACFs was sulfurated with sulfur vapors at high temperatures followed by oxidation, to yield the corresponding sulfonates. The chemical analysis showed that the carbon surface layer contains from 1.28 to 6.10 mmol$\mathrm{g}^{-1}$ of sulfur, including the contribution of sulfonic $(\mathrm{S}\mathrm{O}{}_{3}\mathrm{H})$ groups. In addition to sulfonic groups, the obtained catalysts contain carboxyl, lactone, and phenolic groups, which are formed as a result of oxidation treatment. In order to understand the changes in surface chemistry and the results of sulfuration and oxidation, the sulfonated PAN-ACFs were characterized by a variety of techniques including TPD MS, TGA, SEM, and FTIR ATR. During a typical temperature mode screening at catalyst testing, it was found that the sulfonated PAN-ACFs prepared by treatment with sulfur vapor at low temperature, at $400\circ \mathrm{c}$ and $500\circ \mathrm{c}$, are very efficient at dehydrating 2-propanol. A weighed mass of 100 mg of each of these catalysts was operated at 165-175°C in 12 hours, and the catalysts were characterized by high conversion of 2-propanol and high selectivity to propylene, with a propylene yield of about 100%. Furthermore, the solid acid catalysts have high stability and strong acidity and can be reused with no significant loss in the activity after the third cycle in the subsequent 20 cycles. The preparation of solid acid catalysts from PAN-ACFs affords a novel strategy for producing propylene through alternative green and sustainable technologies.
硫化聚丙烯腈基纳米结构活性炭纤维在耐热多功能固体酸中的氧化作用
以磺化聚丙烯腈衍生活性炭纤维(PAN-ACFs)为原料,研究了固体-蒸汽界面2-丙醇脱水法制备丙烯的酸催化表面反应。为了制备这些催化剂,对一步碳化活化得到的PAN-ACFs进行了表面改性,使其具有高酸度。将PAN-ACFs表面用硫蒸气在高温下硫化,然后氧化,得到相应的磺酸盐。化学分析表明,碳表层含有1.28 ~ 6.10 mmol$\mathrm{g}^{-1}$的硫,包括磺酸$(\mathrm{S}\mathrm{O}{}_{3}\mathrm{H})$基团的贡献。除了磺酸基外,所得到的催化剂还含有羧基、内酯和酚基,它们是氧化处理的结果。为了了解磺化后PAN-ACFs的表面化学变化以及硫化和氧化的结果,采用TPD MS、TGA、SEM和FTIR ATR等多种技术对磺化后的PAN-ACFs进行了表征。在催化剂测试的典型温度模式筛选中,发现在低温条件下,在$400\circ \ mathm {c}$和$500\circ \ mathm {c}$条件下,硫蒸汽处理制备的磺化PAN-ACFs对2-丙醇的脱水效果非常好。在165 ~ 175℃条件下反应12小时,催化剂质量为100 mg, 2-丙醇转化率高,丙烯的选择性高,丙烯收率约为100%。此外,固体酸催化剂稳定性高,酸性强,在随后的20次循环中,第三次循环后活性没有明显损失,可以重复使用。PAN-ACFs制备固体酸催化剂为绿色可持续生产丙烯提供了一条新途径。
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