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State-of-the-Art Review of Oxidative Dehydrogenation of Ethane to Ethylene over MoVNbTeOx Catalysts

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CATALYSTS
卷 13, 期 1, 页码 -

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MDPI
DOI: 10.3390/catal13010204

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oxidative dehydrogenation of ethane; MoVNbTeOx; catalyst; ethylene; redox process

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Ethylene is currently produced by steam cracking of naphtha or light alkanes, but this process has high energy demands, gas separation costs, and CO2 emissions. The oxidative dehydrogenation of ethane (ODHE) using MoVNbTeOx catalysts is a promising alternative due to its lower temperature operation and better economic viability. This paper provides a comprehensive review on the application of MoVNbTeOx catalysts in the ODHE process, covering their origin, catalyst treatment, material characterization, reaction mechanism, evaluation, and reactor design, contributing to the understanding and development of the ODHE process based on MoVNbTeOx catalysts.
Ethylene is mainly produced by steam cracking of naphtha or light alkanes in the current petrochemical industry. However, the high-temperature operation results in high energy demands, high cost of gas separation, and huge CO2 emissions. With the growth of the verified shale gas reserves, oxidative dehydrogenation of ethane (ODHE) becomes a promising process to convert ethane from underutilized shale gas reserves to ethylene at a moderate reaction temperature. Among the catalysts for ODHE, MoVNbTeOx mixed oxide has exhibited superior catalytic performance in terms of ethane conversion, ethylene selectivity, and/or yield. Accordingly, the process design is compact, and the economic evaluation is more favorable in comparison to the mature steam cracking processes. This paper aims to provide a state-of-the-art review on the application of MoVNbTeOx catalysts in the ODHE process, involving the origin of MoVNbTeOx, (post-) treatment of the catalyst, material characterization, reaction mechanism, and evaluation as well as the reactor design, providing a comprehensive overview of M1 MoVNbTeOx catalysts for the oxidative dehydrogenation of ethane, thus contributing to the understanding and development of the ODHE process based on MoVNbTeOx catalysts.

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