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Numerical study on catalytic combustion of methane with ozone using Pd-exchanged zeolite X
Wu R.1; Chen R.1; Wang H.1; Wang Z.1; Zhu X.1; Liao Q.1; Hui K.2; Hui K.3
2015-05-01
Source PublicationScience China Chemistry
ISSN16747291
Volume58Issue:5Pages:899-904
AbstractA steady-state 1D macro-homogeneous model is developed to illustrate the combustion process of methane with ozone in the reactor composed of Pd-exchanged zeolite X. The model is validated by comparing the predicted results with the measured data. The methane conversion increases with decreasing the inlet methane concentration and gas space velocity and increasing the inlet ozone concentration and temperature. As the reactor length reduces, the methane conversion varies little if the reactor is too long but decreases when the reactor is too short. Therefore, the reactor should be properly designed to balance costs and the methane-conversion efficiency.
Keywordcatalytic combustion methane conversion ozone porous medium
DOI10.1007/s11426-015-5389-7
URLView the original
Language英語
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Cited Times [WOS]:1   [WOS Record]     [Related Records in WOS]
Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.Chongqing University
2.Hanyang University
3.Pusan National University
4.University of Shanghai for Science and Technology
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GB/T 7714
Wu R.,Chen R.,Wang H.,et al. Numerical study on catalytic combustion of methane with ozone using Pd-exchanged zeolite X[J]. Science China Chemistry,2015,58(5):899-904.
APA Wu R..,Chen R..,Wang H..,Wang Z..,Zhu X..,...&Hui K..(2015).Numerical study on catalytic combustion of methane with ozone using Pd-exchanged zeolite X.Science China Chemistry,58(5),899-904.
MLA Wu R.,et al."Numerical study on catalytic combustion of methane with ozone using Pd-exchanged zeolite X".Science China Chemistry 58.5(2015):899-904.
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