Effect of Ni-V loading on the performance of hollow anatase TiO 2 in the catalytic combustion of dichloromethane

A catalyst based on mixed V-Ni oxides supported on TiO (Ni-V/TiO ) was obtained using the sol-gel method. Its catalytic performance relative to dichloromethane (DCM) degradation was investigated. Characterization and analysis were conducted using transmission electron microscopy, H temperature-progr...

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Veröffentlicht in:Journal of environmental sciences (China) 2019-10, Vol.84, p.59
Hauptverfasser: Zhou, Bing, Zhang, Xixiong, Wang, Yong, Xie, Jing, Xi, Kang, Zhou, Ying, Lu, Hanfeng
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Sprache:eng
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Zusammenfassung:A catalyst based on mixed V-Ni oxides supported on TiO (Ni-V/TiO ) was obtained using the sol-gel method. Its catalytic performance relative to dichloromethane (DCM) degradation was investigated. Characterization and analysis were conducted using transmission electron microscopy, H temperature-programmed reduction, pyridine-Fourier transform infrared spectroscopy (FTIR) characterization, and X-ray diffraction. Results showed that the original hollow anatase structure of pure TiO was well-maintained after Ni-V loading. The loading of NiO-VO not only significantly improved the stability of pure TiO but also inhibited the formation of the by-product monochloromethane (MCM). Among the series of Ni-V/TiO catalysts, 4%Ni-V/TiO possessed the highest catalytic activity, with 90% DCM conversion at only 203°C. No by-products and no significant changes in the catalytic activity were observed during combustion of DCM after 100 hr of a continuous stability test. Furthermore, thermogravimetric analysis (O -TG) and energy dispersive spectrometer (EDS) characterization of the used 4%Ni-V/TiO catalyst revealed that no coke deposition or chlorine species could be detected on the catalyst surface.
ISSN:1001-0742
DOI:10.1016/j.jes.2019.04.013