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Dehydrogenation of propane with selective hydrogen combustion: A mechanistic study by transient analysis of products

机译:选择性氢燃烧丙烷脱氢:产品瞬态分析的机理研究

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摘要

The role of lattice and adsorbed oxygen species in propane dehydrogenation in a perovskite hollow fiber membrane reactor containing a Pt-Sn dehydrogenation catalyst was elucidated by transient analysis of products with a sub-millisecond time resolution. Propane is mainly dehydrogenated non-oxidatively to propene and hydrogen over the catalyst, while lattice oxygen of the perovskite oxidizes preferentially hydrogen to water. For achieving high propene selectivity at high propane conversions, the formation of gas phase O2 on the shell side of the membrane reactor should be avoided. Otherwise, oxygen species adsorbed over the Pt-Sn catalyst participate in non-selective C3H8/C3H6 transformations to C2H4 and CO_x.
机译:通过亚毫秒级时间分辨率的产物的瞬态分析,阐明了晶格和吸附的氧物种在含Pt-Sn脱氢催化剂的钙钛矿型中空纤维膜反应器中丙烷脱氢中的作用。丙烷主要在催化剂上非氧化脱氢为丙烯和氢,而钙钛矿的晶格氧优先将氢氧化为水。为了在高丙烷转化率下实现高丙烯选择性,应避免在膜反应器壳侧形成气相O2。否则,吸附在Pt-Sn催化剂上的氧会参与非选择性的C3H8 / C3H6转化为C2H4和CO_x。

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