Please use this identifier to cite or link to this item: https://doi.org/10.1016/j.apcatb.2003.10.005
DC FieldValue
dc.titleSelective catalytic reduction of NO over Co/beta-zeolite: Effects of synthesis condition of beta-zeolites, Co precursor, Co loading method and reductant
dc.contributor.authorChen, H.-H.
dc.contributor.authorShen, S.-C.
dc.contributor.authorChen, X.
dc.contributor.authorKawi, S.
dc.date.accessioned2014-10-09T07:01:18Z
dc.date.available2014-10-09T07:01:18Z
dc.date.issued2004-06-18
dc.identifier.citationChen, H.-H., Shen, S.-C., Chen, X., Kawi, S. (2004-06-18). Selective catalytic reduction of NO over Co/beta-zeolite: Effects of synthesis condition of beta-zeolites, Co precursor, Co loading method and reductant. Applied Catalysis B: Environmental 50 (1) : 37-47. ScholarBank@NUS Repository. https://doi.org/10.1016/j.apcatb.2003.10.005
dc.identifier.issn09263373
dc.identifier.urihttp://scholarbank.nus.edu.sg/handle/10635/90092
dc.description.abstractThe effects of preparation method for beta-zeolite, Co-precursor, loading method and different type of reductants on the performance of Co/beta-zeolite catalyst for HC-selective catalytic reduction (SCR) of NO have been investigated. The catalyst properties and nature of active sites have been characterized by N2 adsorption-desorption isotherms, X-ray diffraction (XRD), thermogravimetric analysis (TGA), TPR, X-ray photoelectron spectroscopy (XPS) and NMR. The catalyst activity is not affected by the type of cobalt precursor but is significantly influenced by the cobalt loading methods. The ion-exchange method results in a much higher activity than impregnation method. Although there is little influence of the silica source on the catalyst properties, the preparation condition of support beta-zeolite is found to substantially affect the activity of the resulting catalyst. The low hydrothermal synthesis temperature causes the presence of amorphous mesoporous phase, making the resulting catalyst poorly resistant to steam. The catalytic performance is substantially affected by different reductants used, with propane performing as a proper reductant for SCR of NO. © 2003 Elsevier B.V. All rights reserved.
dc.description.urihttp://libproxy1.nus.edu.sg/login?url=http://dx.doi.org/10.1016/j.apcatb.2003.10.005
dc.sourceScopus
dc.subjectBeta-zeolite
dc.subjectCatalyst
dc.subjectCobalt
dc.subjectNMR
dc.subjectNOx
dc.subjectSCR
dc.subjectTPR
dc.subjectXPS
dc.typeArticle
dc.contributor.departmentCHEMICAL & BIOMOLECULAR ENGINEERING
dc.description.doi10.1016/j.apcatb.2003.10.005
dc.description.sourcetitleApplied Catalysis B: Environmental
dc.description.volume50
dc.description.issue1
dc.description.page37-47
dc.description.codenACBEE
dc.identifier.isiut000221383900005
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