Cargando…

Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components

To screen a suitable precursor, the effects of palladium salts on performance of Pd nanocatalysts for the oxidation of volatile organic components (VOCs) were investigated. A series of catalysts was prepared by impregnating Pd(NO(3))(2), PdCl(2) and Pd(NH(3))(4)Cl(2) on alumina-coated cordierites. T...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Qingtao, Cai, Qi, Li, Xiaoyun, Han, Enshan, Sun, Yanmin, Lu, Yanfei, Cai, Zhe, Yu, Haibin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10097109/
https://www.ncbi.nlm.nih.gov/pubmed/37049282
http://dx.doi.org/10.3390/nano13071189
_version_ 1785024500692156416
author Li, Qingtao
Cai, Qi
Li, Xiaoyun
Han, Enshan
Sun, Yanmin
Lu, Yanfei
Cai, Zhe
Yu, Haibin
author_facet Li, Qingtao
Cai, Qi
Li, Xiaoyun
Han, Enshan
Sun, Yanmin
Lu, Yanfei
Cai, Zhe
Yu, Haibin
author_sort Li, Qingtao
collection PubMed
description To screen a suitable precursor, the effects of palladium salts on performance of Pd nanocatalysts for the oxidation of volatile organic components (VOCs) were investigated. A series of catalysts was prepared by impregnating Pd(NO(3))(2), PdCl(2) and Pd(NH(3))(4)Cl(2) on alumina-coated cordierites. These catalysts were characterized by XRF, ICP-OES, XRD, N(2) adsorption-desorption, TEM, EDS, Raman spectroscopy, pulse-CO chemisorption, H(2)-TPR, NH(3)-TPD, and XPS. Pulse-CO chemisorption and TEM showed that Pd species formed by Pd(NO(3))(2) have the highest metal dispersion (17.7%), while the other two were aggregating. For the same Pd loading, the higher the metal dispersion, the more the number of PdO species, so the number of PdO particles in the catalyst prepared from Pd (NO(3)) (2) is the largest. The catalytic oxidation activities of these catalysts were evaluated by ethane and propane. Based on a 99% conversion in the oxidation of ethane and propane at 598 K and 583 K, respectively, the catalyst prepared from Pd(NO(3))(2) was considered to be the best performing catalyst. The chloride species in precursors can promote the aggregation of Pd species and poison the catalysts. The results show that Pd(NO(3))(2) is more suitable as the precursor of VOC oxidation catalyst than PdCl(2) and Pd(NH(3))(4)Cl(2).
format Online
Article
Text
id pubmed-10097109
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100971092023-04-13 Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components Li, Qingtao Cai, Qi Li, Xiaoyun Han, Enshan Sun, Yanmin Lu, Yanfei Cai, Zhe Yu, Haibin Nanomaterials (Basel) Article To screen a suitable precursor, the effects of palladium salts on performance of Pd nanocatalysts for the oxidation of volatile organic components (VOCs) were investigated. A series of catalysts was prepared by impregnating Pd(NO(3))(2), PdCl(2) and Pd(NH(3))(4)Cl(2) on alumina-coated cordierites. These catalysts were characterized by XRF, ICP-OES, XRD, N(2) adsorption-desorption, TEM, EDS, Raman spectroscopy, pulse-CO chemisorption, H(2)-TPR, NH(3)-TPD, and XPS. Pulse-CO chemisorption and TEM showed that Pd species formed by Pd(NO(3))(2) have the highest metal dispersion (17.7%), while the other two were aggregating. For the same Pd loading, the higher the metal dispersion, the more the number of PdO species, so the number of PdO particles in the catalyst prepared from Pd (NO(3)) (2) is the largest. The catalytic oxidation activities of these catalysts were evaluated by ethane and propane. Based on a 99% conversion in the oxidation of ethane and propane at 598 K and 583 K, respectively, the catalyst prepared from Pd(NO(3))(2) was considered to be the best performing catalyst. The chloride species in precursors can promote the aggregation of Pd species and poison the catalysts. The results show that Pd(NO(3))(2) is more suitable as the precursor of VOC oxidation catalyst than PdCl(2) and Pd(NH(3))(4)Cl(2). MDPI 2023-03-27 /pmc/articles/PMC10097109/ /pubmed/37049282 http://dx.doi.org/10.3390/nano13071189 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Qingtao
Cai, Qi
Li, Xiaoyun
Han, Enshan
Sun, Yanmin
Lu, Yanfei
Cai, Zhe
Yu, Haibin
Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components
title Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components
title_full Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components
title_fullStr Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components
title_full_unstemmed Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components
title_short Effects of Palladium Precursors on the Activity of Palladium Nanocatalysts for the Oxidation of Volatile Organic Components
title_sort effects of palladium precursors on the activity of palladium nanocatalysts for the oxidation of volatile organic components
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10097109/
https://www.ncbi.nlm.nih.gov/pubmed/37049282
http://dx.doi.org/10.3390/nano13071189
work_keys_str_mv AT liqingtao effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents
AT caiqi effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents
AT lixiaoyun effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents
AT hanenshan effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents
AT sunyanmin effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents
AT luyanfei effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents
AT caizhe effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents
AT yuhaibin effectsofpalladiumprecursorsontheactivityofpalladiumnanocatalystsfortheoxidationofvolatileorganiccomponents