Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts
碩士 === 國立臺灣大學 === 化學工程學系研究所 === 85 === The destruction of VOCs from industrial contaminant is often used by catalytic oxidation. It costs less to operate at lower temperature since energy consumption is reduced. The water vapor from reaction can easily...
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ndltd-TW-085NTU000630312015-10-13T18:05:37Z http://ndltd.ncl.edu.tw/handle/70563695755173694867 Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts VOC在疏水性載體鉑觸媒的深度氧化反應 Chang, Tai-Yuan 張泰元 碩士 國立臺灣大學 化學工程學系研究所 85 The destruction of VOCs from industrial contaminant is often used by catalytic oxidation. It costs less to operate at lower temperature since energy consumption is reduced. The water vapor from reaction can easily condense in the micropores of metal oxide support at low temperature. Hence, the surface of metal oxide is cloaked and the activity of catalyst is significantly reduced. The hydrophobic supported catalyst can be used at low temperature since water vapor from oxidation can not condense in its pores. Thus its catalytic activity is not influenced by humid environment. In this work, SDB ,the hydrophobic polymer(with a surface area of ~500 m2/g and contact angle with water of ~ 109o), and active carbons were used as support for Pt catalyst by incipient wetness method. The physical properties of catalysts ,such as specific surface area and Pt dispersion, were characterized by BET、XRD、H2-TPD、ESCA、 EDS、SEM techniques. We also studied the characteristics of catalyst before and after reaction. The activity of catalyst was tested by using different ratio of feed stock (toluene/air) for the deep oxidation. A kinetic model was proposed to compare the effect of hydrophobicity for the activity of catalysts. SDB catalyst showed the highest activity under the test condition at 130℃-150℃and the complete oxidation of 90 ppm toluene was observed at 150℃. Chi-Sheng Wu 吳紀聖 --- 1997 學位論文 ; thesis 74 zh-TW |
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碩士 === 國立臺灣大學 === 化學工程學系研究所 === 85 === The destruction of VOCs from industrial contaminant is often used
by catalytic oxidation. It costs less to operate at lower temperature since
energy consumption is reduced. The water vapor from reaction can easily
condense in the micropores of metal oxide support at low temperature.
Hence, the surface of metal oxide is cloaked and the activity of catalyst is
significantly reduced. The hydrophobic supported catalyst can be used at
low temperature since water vapor from oxidation can not condense in its
pores. Thus its catalytic activity is not influenced by humid environment.
In this work, SDB ,the hydrophobic polymer(with a surface area of
~500 m2/g and contact angle with water of ~ 109o), and active carbons
were used as support for Pt catalyst by incipient wetness method. The
physical properties of catalysts ,such as specific surface area and Pt
dispersion, were characterized by BET、XRD、H2-TPD、ESCA、
EDS、SEM techniques. We also studied the characteristics of catalyst
before and after reaction. The activity of catalyst was tested by using
different ratio of feed stock (toluene/air) for the deep oxidation. A kinetic
model was proposed to compare the effect of hydrophobicity for the
activity of catalysts. SDB catalyst showed the highest activity under the
test condition at 130℃-150℃and the complete oxidation of 90 ppm
toluene was observed at 150℃.
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author2 |
Chi-Sheng Wu |
author_facet |
Chi-Sheng Wu Chang, Tai-Yuan 張泰元 |
author |
Chang, Tai-Yuan 張泰元 |
spellingShingle |
Chang, Tai-Yuan 張泰元 Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts |
author_sort |
Chang, Tai-Yuan |
title |
Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts |
title_short |
Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts |
title_full |
Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts |
title_fullStr |
Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts |
title_full_unstemmed |
Deep Oxidation of VOC Using Supported Pt Hydrophobic Catalysts |
title_sort |
deep oxidation of voc using supported pt hydrophobic catalysts |
publishDate |
1997 |
url |
http://ndltd.ncl.edu.tw/handle/70563695755173694867 |
work_keys_str_mv |
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1718028955416526848 |