Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO Catalysts

A 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst was prepared by the evaporative drying method. The catalytic toluene oxidation activity of the catalyst was investigated and the calcination temperature dependence on the toluene oxidation activity was characterized. It was confirmed that only CO2 and ste...

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Main Authors: Nobuhito Imanaka, Toshiyuki Masui, Tomoya Kamata, Min Yeong Kim
Format: Article
Language:English
Published: MDPI AG 2013-08-01
Series:Catalysts
Subjects:
Online Access:http://www.mdpi.com/2073-4344/3/3/646
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spelling doaj-6883d04e41974912a19be5bd4b89eb8e2020-11-25T01:13:00ZengMDPI AGCatalysts2073-43442013-08-013364665510.3390/catal3030646Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO CatalystsNobuhito ImanakaToshiyuki MasuiTomoya KamataMin Yeong KimA 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst was prepared by the evaporative drying method. The catalytic toluene oxidation activity of the catalyst was investigated and the calcination temperature dependence on the toluene oxidation activity was characterized. It was confirmed that only CO2 and steam were produced by the complete oxidation of toluene, and no toluene-derived compounds were detected as by-products with a gas chromatography-mass spectrometer. Toluene was completely oxidized at 320 °C on the 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst calcined at 500 °C. The toluene oxidation activity slightly decreased with increasing the calcination temperature of the catalyst. However, significant deactivation was not recognized in the present 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst, and toluene was completely oxidized at 360 °C even after calcination at 1000 °C. From these results, it became obvious that the 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst has high thermal stability for toluene oxidation activity.http://www.mdpi.com/2073-4344/3/3/646volatile organic compoundstoluenecatalytic combustionrare earth oxidethermal stability
collection DOAJ
language English
format Article
sources DOAJ
author Nobuhito Imanaka
Toshiyuki Masui
Tomoya Kamata
Min Yeong Kim
spellingShingle Nobuhito Imanaka
Toshiyuki Masui
Tomoya Kamata
Min Yeong Kim
Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO Catalysts
Catalysts
volatile organic compounds
toluene
catalytic combustion
rare earth oxide
thermal stability
author_facet Nobuhito Imanaka
Toshiyuki Masui
Tomoya Kamata
Min Yeong Kim
author_sort Nobuhito Imanaka
title Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO Catalysts
title_short Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO Catalysts
title_full Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO Catalysts
title_fullStr Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO Catalysts
title_full_unstemmed Complete Toluene Oxidation on Pt/CeO2-ZrO2-ZnO Catalysts
title_sort complete toluene oxidation on pt/ceo2-zro2-zno catalysts
publisher MDPI AG
series Catalysts
issn 2073-4344
publishDate 2013-08-01
description A 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst was prepared by the evaporative drying method. The catalytic toluene oxidation activity of the catalyst was investigated and the calcination temperature dependence on the toluene oxidation activity was characterized. It was confirmed that only CO2 and steam were produced by the complete oxidation of toluene, and no toluene-derived compounds were detected as by-products with a gas chromatography-mass spectrometer. Toluene was completely oxidized at 320 °C on the 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst calcined at 500 °C. The toluene oxidation activity slightly decreased with increasing the calcination temperature of the catalyst. However, significant deactivation was not recognized in the present 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst, and toluene was completely oxidized at 360 °C even after calcination at 1000 °C. From these results, it became obvious that the 0.4 wt%Pt/Ce0.76Zr0.19Zn0.05O1.95 catalyst has high thermal stability for toluene oxidation activity.
topic volatile organic compounds
toluene
catalytic combustion
rare earth oxide
thermal stability
url http://www.mdpi.com/2073-4344/3/3/646
work_keys_str_mv AT nobuhitoimanaka completetolueneoxidationonptceo2zro2znocatalysts
AT toshiyukimasui completetolueneoxidationonptceo2zro2znocatalysts
AT tomoyakamata completetolueneoxidationonptceo2zro2znocatalysts
AT minyeongkim completetolueneoxidationonptceo2zro2znocatalysts
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