在二氧化碳存在下氧化脱氢丙烷的介孔镓基催化剂

IF 1.3 4区 工程技术 Q3 CHEMISTRY, ORGANIC Petroleum Chemistry Pub Date : 2024-02-02 DOI:10.1134/s0965544123090049
D. P. Melnikov, E. M. Smirnova, M. V. Reshetina, A. P. Glotov, A. A. Novikov, P. A. Gushchin, H. Q. Wang, V. A. Vinokurov
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引用次数: 0

摘要

摘要 本研究探讨了一系列在天然和复合铝硅酸盐介孔载体上支撑的镓基催化剂在二氧化碳辅助的丙烷氧化脱氢反应中的应用。催化剂载体是通过将功能材料与波美度石粘合剂混合制备而成的,功能材料来自天然哈洛石纳米管(HNT)。使用了三种不同的支持物:原始 HNTs;在埃洛石周围合成的带有 MCM-41 的 HNTs;在埃洛石内腔合成的带有 MCM-41 的 HNTs。在 CO2/C3H8 摩尔比为 2.0、温度为 550-700°C 的条件下,对 CO2- 辅助氧化丙烷脱氢进行了测试。所有催化剂都显示出相当的丙烷转化率(从 10-13% 到 70-80%)和丙烯选择性(从 80-84% 到 30-32%)。在 650°C 下,Ga/HNT 催化剂的丙烯时空产率最高(6.5 mol kgcat-1 h-1)。
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Mesoporous Gallium-Based Catalysts for Oxidative Dehydrogenation of Propane in the Presence of Carbon Dioxide

Abstract

The present study investigates a series of gallium-based catalysts supported on natural and composite aluminosilicate mesoporous supports in the CO2-assisted oxidative dehydrogenation of propane. The catalyst supports were prepared by mixing a functional material with a boehmite binder, the functional materials being derived from natural halloysite nanotubes (HNTs). Three different supports were used: pristine HNTs; HNTs with MCM-41 synthesized around halloysite; and HNTs with MCM-41 synthesized inside the halloysite lumen. The CO2-assisted oxidative propane dehydrogenation was tested in the range of 550–700°C at a CO2/C3H8 molar ratio of 2.0. All the catalysts showed comparable propane conversion (from 10–13% to 70–80%) and propylene selectivity (from 80–84 to 30–32%). The highest propylene space-time yield (6.5 mol kgcat–1 h–1) was observed for the Ga/HNT catalyst at 650°C.

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来源期刊
Petroleum Chemistry
Petroleum Chemistry 工程技术-工程:化工
CiteScore
2.50
自引率
21.40%
发文量
102
审稿时长
6-12 weeks
期刊介绍: Petroleum Chemistry (Neftekhimiya), founded in 1961, offers original papers on and reviews of theoretical and experimental studies concerned with current problems of petroleum chemistry and processing such as chemical composition of crude oils and natural gas liquids; petroleum refining (cracking, hydrocracking, and catalytic reforming); catalysts for petrochemical processes (hydrogenation, isomerization, oxidation, hydroformylation, etc.); activation and catalytic transformation of hydrocarbons and other components of petroleum, natural gas, and other complex organic mixtures; new petrochemicals including lubricants and additives; environmental problems; and information on scientific meetings relevant to these areas. Petroleum Chemistry publishes articles on these topics from members of the scientific community of the former Soviet Union.
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