Catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over Pt, MnOx and Pt/MnOx supported monoliths
The elimination of volatile organic compounds (VOCs) was investigated placing a novel catalytic system in the chimney venting of a commercial air extractor, using Pt, Mn and Pt/Mn catalysts supported on ceramic monoliths. The VOCs oxidized were chloroform (CHCl3), methyl ethyl ketone (MEK), toluene...
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Autores principales: | , , , , |
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Formato: | Articulo |
Lenguaje: | Inglés |
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2015
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Materias: | |
Acceso en línea: | http://sedici.unlp.edu.ar/handle/10915/134545 |
Aporte de: |
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I19-R120-10915-134545 |
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institution |
Universidad Nacional de La Plata |
institution_str |
I-19 |
repository_str |
R-120 |
collection |
SEDICI (UNLP) |
language |
Inglés |
topic |
Ciencias Exactas Monoliths bentonite VOC mixture Mn Pt CHCl 3 |
spellingShingle |
Ciencias Exactas Monoliths bentonite VOC mixture Mn Pt CHCl 3 Colman Lerner, Jorge Esteban Peluso, Miguel Andrés Porta, Atilio Andrés Thomas, Horacio Jorge Sambeth, Jorge Enrique Catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over Pt, MnOx and Pt/MnOx supported monoliths |
topic_facet |
Ciencias Exactas Monoliths bentonite VOC mixture Mn Pt CHCl 3 |
description |
The elimination of volatile organic compounds (VOCs) was investigated placing a novel catalytic system in the chimney venting of a commercial air extractor, using Pt, Mn and Pt/Mn catalysts supported on ceramic monoliths. The VOCs oxidized were chloroform (CHCl3), methyl ethyl ketone (MEK), toluene and xylene, alone, in a binary mixture and in a mixture of all of them. The conversion of VOCs is in general similar, regardless of whether they are in a mixture or alone. Pt/Mn monoliths exhibited the highest destruction activity for the abatement of VOCs alone and in mixtures, due to a synergetic effect between platinum and manganese. The results show that these catalytic systems can be coupled satisfactorily in the venting of the air extraction equipment still working at high flow rates. |
format |
Articulo Articulo |
author |
Colman Lerner, Jorge Esteban Peluso, Miguel Andrés Porta, Atilio Andrés Thomas, Horacio Jorge Sambeth, Jorge Enrique |
author_facet |
Colman Lerner, Jorge Esteban Peluso, Miguel Andrés Porta, Atilio Andrés Thomas, Horacio Jorge Sambeth, Jorge Enrique |
author_sort |
Colman Lerner, Jorge Esteban |
title |
Catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over Pt, MnOx and Pt/MnOx supported monoliths |
title_short |
Catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over Pt, MnOx and Pt/MnOx supported monoliths |
title_full |
Catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over Pt, MnOx and Pt/MnOx supported monoliths |
title_fullStr |
Catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over Pt, MnOx and Pt/MnOx supported monoliths |
title_full_unstemmed |
Catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over Pt, MnOx and Pt/MnOx supported monoliths |
title_sort |
catalytic removal of a mixture of volatile organic compounds present in indoor air at various work sites over pt, mnox and pt/mnox supported monoliths |
publishDate |
2015 |
url |
http://sedici.unlp.edu.ar/handle/10915/134545 |
work_keys_str_mv |
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bdutipo_str |
Repositorios |
_version_ |
1764820455196196865 |