TY - JOUR
T1 - Catalytic behavior and reaction routes of MEK oxidation over Pd/ZSM-5 and Pd-Ce/ZSM-5 catalysts
AU - Yue, Lin
AU - He, Chi
AU - Zhang, Xinyan
AU - Li, Peng
AU - Wang, Zhuo
AU - Wang, Hailin
AU - Hao, Zhengping
PY - 2013/1/5
Y1 - 2013/1/5
N2 - Catalytic oxidation is a widely used pollution control technology for removing volatile organic compounds. Pd-Ce/ZSM-5 catalysts with different Ce contents were prepared by a co-impregnation method, and their catalytic performance was investigated for the oxidation of methyl ethyl ketone (MEK). The by-products of the reaction were monitored using gas chromatography and collected in thermal desorption tubes, which were further analyzed by gas chromatography/mass spectrometry. The PdCe9.6/ZSM-5 catalyst displayed the highest catalytic efficiency, as a consequence of a higher amount of strong acid sites and a superior PdO-Pd redox cycle in the presence of a CeO2 additive. The introduction of CeO2 enriched the by-product species. The formation mechanisms and oxidation routes of typical by-products, such as methyl acetate, 1-penten-3-one and 3-buten-2-one, 3-methyl, during MEK oxidation over Pd-Ce/ZSM-5 catalysts was also analyzed. CH3* species that formed on the catalyst were identified as reaction intermediaries. Trace amounts of acetic acid and methyl vinyl ketone were also detected and were further oxidized to methyl acetate, 1-penten-3-one and 3-buten-2-one, 3-methyl.
AB - Catalytic oxidation is a widely used pollution control technology for removing volatile organic compounds. Pd-Ce/ZSM-5 catalysts with different Ce contents were prepared by a co-impregnation method, and their catalytic performance was investigated for the oxidation of methyl ethyl ketone (MEK). The by-products of the reaction were monitored using gas chromatography and collected in thermal desorption tubes, which were further analyzed by gas chromatography/mass spectrometry. The PdCe9.6/ZSM-5 catalyst displayed the highest catalytic efficiency, as a consequence of a higher amount of strong acid sites and a superior PdO-Pd redox cycle in the presence of a CeO2 additive. The introduction of CeO2 enriched the by-product species. The formation mechanisms and oxidation routes of typical by-products, such as methyl acetate, 1-penten-3-one and 3-buten-2-one, 3-methyl, during MEK oxidation over Pd-Ce/ZSM-5 catalysts was also analyzed. CH3* species that formed on the catalyst were identified as reaction intermediaries. Trace amounts of acetic acid and methyl vinyl ketone were also detected and were further oxidized to methyl acetate, 1-penten-3-one and 3-buten-2-one, 3-methyl.
KW - Catalytic activity
KW - Oxidation routes
KW - Pd-Ce/ZSM-5 catalysts
KW - Reaction by-products
KW - VOCs
UR - https://www.scopus.com/pages/publications/84872596833
U2 - 10.1016/j.jhazmat.2012.10.048
DO - 10.1016/j.jhazmat.2012.10.048
M3 - 文章
C2 - 23177253
AN - SCOPUS:84872596833
SN - 0304-3894
VL - 244-245
SP - 613
EP - 620
JO - Journal of Hazardous Materials
JF - Journal of Hazardous Materials
ER -