Bare La2O3 in non-oxidative propane dehydrogenation: in situ decoration of active sites for enhanced catalyst performance

IF 4.2 3区 化学 Q2 CHEMISTRY, PHYSICAL
Tatiana Otroshchenko, Shanlei Han, Thanh Huyen Vuong, Vita A. Kondratenko, Jabor Rabeah, Stephan Bartling and Evgenii V. Kondratenko
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引用次数: 0

Abstract

To replace toxic or expensive CrOx- or Pt-based catalysts currently used in large-scale production of propene through non-oxidative dehydrogenation of propane, ecologically friendly and cost-effective alternatives are needed. In this context, we introduce La2O3 as a promising catalyst for this reaction. Our characterization and catalytic experiments as well as density functional theory calculations revealed that coordinatively unsaturated La3+ cations (Lacus) possess high activity to the cleavage of the C–H bond in propane. However, they strongly adsorb propene and hydrogen atoms formed from propane, favoring the formation of coke but hindering their recovery by H2 desorption. Lacus can, however, be decorated with hydrogen species in the presence of gas-phase H2. These new species show high activity for propane activation but low ability to adsorb propene and open a more energetically favorable pathway for H2 formation. La2O3 does not obviously differ from an industrial analogue of K-CrOx/Al2O3 in terms of propene selectivity up to 60% equilibrium propane conversion at 600 °C using a feed with 40 vol% C3H8 and 30 vol% H2 in N2. The effect of hydrogen on the PDH performance of La2O3 may inspire other researchers involved in the development of alternative catalysts, which are typically tested in the absence of hydrogen.

Abstract Image

裸La2O3在非氧化丙烷脱氢中的应用:原位修饰活性位点以增强催化剂性能
为了取代目前大规模生产丙烯的非氧化脱氢法中使用的有毒或昂贵的CrOx或pt基催化剂,需要生态友好且具有成本效益的替代品。在这种情况下,我们介绍了La2O3作为该反应的一种很有前途的催化剂。我们的表征和催化实验以及密度泛函理论计算表明,配位不饱和La3+阳离子(Lacus)对丙烷中C-H键的裂解具有很高的活性。然而,它们对丙烷形成的丙烯和氢原子有很强的吸附作用,有利于形成焦炭,但阻碍了它们被H2解吸回收。然而,在气相H2存在的情况下,Lacus可以被氢修饰。这些新物种具有较高的丙烷活化活性,但对丙烯的吸附能力较低,为H2的形成开辟了一条更有利的途径。在丙烯选择性方面,La2O3与K-CrOx/Al2O3的工业类似物没有明显的区别,在600°C下,使用40 vol% C3H8和30 vol% H2的进料,丙烯转化率高达60%。氢对La2O3的PDH性能的影响可能会激励其他研究人员参与开发替代催化剂,这些催化剂通常在没有氢的情况下进行测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Catalysis Science & Technology
Catalysis Science & Technology CHEMISTRY, PHYSICAL-
CiteScore
8.70
自引率
6.00%
发文量
587
审稿时长
1.5 months
期刊介绍: A multidisciplinary journal focusing on cutting edge research across all fundamental science and technological aspects of catalysis. Editor-in-chief: Bert Weckhuysen Impact factor: 5.0 Time to first decision (peer reviewed only): 31 days
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