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Oxidative Dehydrogenation of Propane to Propylene with Soft Oxidants via Heterogeneous Catalysis

Journal Article · · ACS Catalysis
Oxidative dehydrogenation of propane to propylene can be achieved using conventional, oxygen-assisted dehydrogenation of propane (O2–ODHP) or via the use of soft oxidants, such as CO2, N2O, S-containing compounds, and halogens/halides. The major roles of soft oxidants include inhibiting overoxidation and improving propylene selectivity, which are considered to be current challenges in O2-assisted dehydrogenation. For both CO2– and N2O–ODHP reactions, significant efforts have been devoted to developing redox-active (e.g., chromium, vanadate, iron, etc.), nonredox-type main group metal oxide (e.g., group IIIA, gallium), and other transition metal/metal oxide catalysts (e.g., molybdenum, palladium platinum, rhodium, ruthenium, etc.), as well as zeolite-based catalysts with adjustable acid–base properties, unique pore structures, and topologies. Metal sulfides have shown promising performance in DHP, whereas the development of suitable catalysts has lagged for SO2- or S-assisted ODHP. Recently, significant efforts have been focused on homogeneous and heterogeneous ODHP using halogens (e.g., Br2, I2, Cl2, etc.) and hydrogen halides (e.g., HCl and HBr) for the development of facile processes for C3H6 synthesis. This work aims to provide a critical, comprehensive review of recent advances in oxidative dehydrogenation of propane with these soft oxidants, especially highlighting the current state of understanding of the following factors: (i) relationships between composition, structure, and catalytic performance, (ii) effects of the support, acidity, and promoters, (iii) reaction pathway and mechanistic insights, and (iv) the various roles of soft oxidants. Theoretical and computational insights toward understanding reaction mechanisms and catalyst design principles are also covered. Future research opportunities are discussed in terms of catalyst design and synthesis, deactivation and regeneration, reaction mechanisms, and alternative approaches.
Research Organization:
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
Grant/Contract Number:
AC05-00OR22725
OSTI ID:
1866713
Journal Information:
ACS Catalysis, Journal Name: ACS Catalysis Journal Issue: 4 Vol. 11; ISSN 2155-5435
Publisher:
American Chemical Society (ACS)Copyright Statement
Country of Publication:
United States
Language:
English

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  • Gallardo-Llamas, Amalia; Mirodatos, Claude; Pérez-Ramírez, Javier
  • Industrial & Engineering Chemistry Research, Vol. 44, Issue 3 https://doi.org/10.1021/ie0493863
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Mechanistic study of dry reforming of ethane by CO 2 on a bimetallic PtNi(111) model surface journal January 2018
The role of H 2 S addition on Pt/Al 2 O 3 catalyzed propane dehydrogenation: a mechanistic study journal January 2019
Catalytic halogenation of methane: a dream reaction with practical scope? journal January 2019
Ru-Promoted CO 2 activation for oxidative dehydrogenation of propane over chromium oxide catalyst journal January 2020
Chemical looping beyond combustion – a perspective journal January 2020
Diamond surface functionalization: from gemstone to photoelectrochemical applications journal January 2019
Mechanism of selective and complete oxidation in La 2 O 3 -catalyzed oxidative coupling of methane journal January 2020
Catalytic performance and stability of Fe-doped CeO 2 in propane oxidative dehydrogenation using carbon dioxide as an oxidant journal January 2020
Oxidative dehydrogenation of propane over transition metal sulfides using sulfur as an alternative oxidant journal January 2020
Catalytic mixed conducting ceramic membrane reactors for methane conversion journal January 2020
Non-ionic surfactant assembly of wormhole silica molecular sieves from water soluble silicates journal January 2000
Carbon dioxide utilization as a soft oxidant and promoter in catalysis journal January 2012
Oxidative dehydrogenation of propane with nitrous oxide over Fe–MFI prepared by ion-exchange: effect of acid post-treatments journal January 2013
Vapour-phase oxidation of diamond surfaces in O2 studied by diffuse reflectance Fourier-transform infrared and temperture-programmed desorption spectroscopy journal January 1993
Carbon dioxide activation and dissociation on ceria (110): A density functional theory study journal January 2013
Active sites for tandem reactions of CO 2 reduction and ethane dehydrogenation journal July 2018
Thermodynamic Equilibrium Analysis of Propane Dehydrogenation with Carbon Dioxide and Side Reactions journal March 2015
Oxidative dehydrogenation of propane to propene in the presence of H 2 S at short contact times journal December 2004
Ethylene manufacture by partial oxidation with sulfur journal December 2010
Selective oxidative dehydrogenation of propane to propene using boron nitride catalysts journal December 2016
Propane Dehydrogenation on Chromium Oxide and Gallium Oxide Catalysts in the Presence of CO2 journal November 2018
Hydrogen sulfide formation in oil and gas journal April 2016
Active Species of Sulfated Metal Oxide Catalyst for Propane Dehydrogenation journal January 2017
Effect of the introduction of alkaline promoters into chromium oxide catalysts for propane dehydrogenation in the presence of CO2 journal February 2012

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