Highly efficient removal of toluene over Cu-V oxides modified γ-Al2O3 in the presence of SO2

Developing efficient catalysts with good resistance to complex flue gas is essential for VOCs removal in coal-fired flue gas. In this study, by exploring the effect of transition metal oxide additive, metal loading and bimetallic synergy on toluene oxidation in coal-fired flue gas, 10Cu-3V/γ-Al2O3 i...

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Published inJournal of hazardous materials Vol. 436; p. 129041
Main Authors Lyu, Yue, Xu, Jingying, Cao, Qingquan, Zhou, Zijian, Hu, Wei, Liu, Xiaowei
Format Journal Article
LanguageEnglish
Published Elsevier B.V 15.08.2022
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Summary:Developing efficient catalysts with good resistance to complex flue gas is essential for VOCs removal in coal-fired flue gas. In this study, by exploring the effect of transition metal oxide additive, metal loading and bimetallic synergy on toluene oxidation in coal-fired flue gas, 10Cu-3V/γ-Al2O3 is identified as the optimal catalyst. It achieves 90% of CO2 generation at 350 ℃, which is decreased by ca. 46 ℃ compared with 13Cu/γ-Al2O3. And it also exhibits good resistance to H2O and good stability. ICP-OES, N2 adsorption-desorption isotherms, XRD, TEM, XPS, EPR and H2-TPR analyses were applied to characterize the catalyst composition and physicochemical properties. Doping V into 13Cu/γ-Al2O3 not only leads to better dispersity of CuO and homogeneous elements distribution that benefits to produce more active centers, but also constitutes the redox cycle of V5+ + Cu+ ↔ V4+ + Cu2+ which induces more surface chemical oxygen (Osur). Moreover, since SO2 is the main inhibiting factor in toluene oxidation, the SO2 poisoning mechanism was illustrated by XPS, TG and in situ DRIFT analyses in depth. [Display omitted] •Temperature at 90% of CO2 generation is decreased by ca. 46 ℃ after introducing V.•Temperature at 90% of CO2 generation is unchanged (ca. 350 ℃) after introducing H2O.•The relationship between performance and physicochemical properties is discussed.•The inhibition mechanism of SO2 is reasonably speculated.
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ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2022.129041