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dc.contributor.authorChang, CPen_US
dc.contributor.authorChen, JNen_US
dc.contributor.authorLu, MCen_US
dc.date.accessioned2014-12-08T15:37:19Z-
dc.date.available2014-12-08T15:37:19Z-
dc.date.issued2004-11-01en_US
dc.identifier.issn0268-2575en_US
dc.identifier.urihttp://dx.doi.org/10.1002/jctb.1128en_US
dc.identifier.urihttp://hdl.handle.net/11536/25660-
dc.description.abstractThis work presents a photocatalysis-based method to treat and purify air because of its broad applicability to common, oxidizable, air contaminants. The effect of oxygen content, temperature, water vapor, and 2-propanol concentration on the TiO2 surface was investigated. The rate of 2-propanol decomposition increased with increasing the oxygen content, but was reduced at temperatures higher than 100degreesC. When water vapor concentration was in the range of 10-355 mmol m(-3), the rate of 2-propanol decomposition was proportional to the water content. However, an opposite result was observed at a higher concentration of water vapor. 2-Propanol was photooxidized to acetone, and eventually to carbon dioxide and water. The kinetic model of 2-propanol photooxidation was successfully developed by the competitive Langmuir-Hinshelwood rate form, incorporating the inhibition effect coming from the formation of acetone. (C) 2004 Society of Chemical Industry.en_US
dc.language.isoen_USen_US
dc.subjectphotocatalysisen_US
dc.subjecttitanium dioxideen_US
dc.subjectkineticsen_US
dc.subject2-propanolen_US
dc.subjectacetoneen_US
dc.titleCharacteristics of photocatalytic oxidation of gaseous 2-propanol using thin-film TiO2 photocatalysten_US
dc.typeArticleen_US
dc.identifier.doi10.1002/jctb.1128en_US
dc.identifier.journalJOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGYen_US
dc.citation.volume79en_US
dc.citation.issue11en_US
dc.citation.spage1293en_US
dc.citation.epage1300en_US
dc.contributor.department環境工程研究所zh_TW
dc.contributor.departmentInstitute of Environmental Engineeringen_US
dc.identifier.wosnumberWOS:000224740900015-
dc.citation.woscount11-
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