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Optimization of Catalyst Loading for Porous Copper Fiber Sintered Felts Used in Methanol Steam Reforming Microreactors
Zhou W.3; Tang Y.1; Wang Q.1; Hui K.S.4; Hui K.N.5; Wan Z.1; Song R.2
2013-02-01
Source PublicationChemical Engineering and Technology
ISSN09307516 15214125
Volume36Issue:2Pages:307-314
AbstractA novel porous copper fiber sintered felt (PCFSF) has been used as catalyst support to construct a methanol steam reforming microreactor for hydrogen production. The Cu/Zn/Al/Zr catalyst was loaded on the PCFSF by means of a two-layer impregnation method. The ultrasonic water bath vibration method was employed to investigate the effect of porosity, catalyst loading, and sintering temperature on the loading performance of PCFSFs. The effective catalyst loading, being limited by porosity and pore size, was >92% in the lower porosity range of 70-80%, but significantly reduced in higher porosity ranges >80%. © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
KeywordLoading performance Methanol conversion Methanol steam reforming microreactor Porous copper fiber sintered felt Ultrasonic water bath vibration
DOI10.1002/ceat.201100295
URLView the original
Language英語
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Cited Times [WOS]:13   [WOS Record]     [Related Records in WOS]
Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.South China University of Technology
2.Sun Yat-Sen University
3.Xiamen University
4.City University of Hong Kong
5.Pusan National University
Recommended Citation
GB/T 7714
Zhou W.,Tang Y.,Wang Q.,et al. Optimization of Catalyst Loading for Porous Copper Fiber Sintered Felts Used in Methanol Steam Reforming Microreactors[J]. Chemical Engineering and Technology,2013,36(2):307-314.
APA Zhou W..,Tang Y..,Wang Q..,Hui K.S..,Hui K.N..,...&Song R..(2013).Optimization of Catalyst Loading for Porous Copper Fiber Sintered Felts Used in Methanol Steam Reforming Microreactors.Chemical Engineering and Technology,36(2),307-314.
MLA Zhou W.,et al."Optimization of Catalyst Loading for Porous Copper Fiber Sintered Felts Used in Methanol Steam Reforming Microreactors".Chemical Engineering and Technology 36.2(2013):307-314.
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