4.7 Review

Current progress on catalytic oxidation of toluene: a review

期刊

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 28, 期 44, 页码 62030-62060

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-021-16492-9

关键词

Toluene; Catalysts; Oxidation; Catalytic performance

资金

  1. Ningbo Science and Technology Innovation 2025 Key Project [2020Z100]
  2. Start-up Research Funding of South-Central University of Nationalities [YZZ18018]
  3. Provincial Key Laboratory Program by Zhejiang Provincial Department of Science and Technology [2020E10018]

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This paper reviews the recent progress in catalysts for toluene oxidation and discusses the factors influencing their catalytic activities, as well as the reaction mechanisms and kinetics for catalytic oxidation of toluene.
Toluene is one of the pollutants that are dangerous to the environment and human health and has been sorted into priority pollutants; hence, the control of its emission is necessary. Due to severe problems caused by toluene, different techniques for the abatement of toluene have been developed. Catalytic oxidation is one of the promising methods and effective technologies for toluene degradation as it oxidizes it to CO2 and does not deliver other pollutants to the environment. This paper highlights the recent progressive advancement of the catalysts for toluene oxidation. Five categories of catalysts, including noble metal catalysts, transition metal catalysts, perovskite catalysts, metal-organic frameworks (MOFs)-based catalysts, and spinel catalysts reported in the past half a decade (2015-2020), are reviewed. Various factors that influence their catalytic activities, such as morphology and structure, preparation methods, specific surface area, relative humidity, and coke formation, are discussed. Furthermore, the reaction mechanisms and kinetics for catalytic oxidation of toluene are also discussed.

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