Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalyst

In this article, a three-dimensional graphene (3DGN)-supported palladium metal catalyst was prepared by the impregnation method with noble metal palladium as the active component, aiming to synthesize a catalyst with high activity and high selectivity. Its catalytic performance in liquid-phase hydro...

Full description

Bibliographic Details
Main Authors: Xie Zhuoyi, Guo Jianwei
Format: Article
Language:English
Published: De Gruyter 2022-08-01
Series:Green Processing and Synthesis
Subjects:
Online Access:https://doi.org/10.1515/gps-2022-0066
_version_ 1811236593494654976
author Xie Zhuoyi
Guo Jianwei
author_facet Xie Zhuoyi
Guo Jianwei
author_sort Xie Zhuoyi
collection DOAJ
description In this article, a three-dimensional graphene (3DGN)-supported palladium metal catalyst was prepared by the impregnation method with noble metal palladium as the active component, aiming to synthesize a catalyst with high activity and high selectivity. Its catalytic performance in liquid-phase hydrochlorination of carbon tetrachloride (TTCM) was investigated. The influences of different Pd loadings, reduction temperatures, and reaction temperatures on the catalytic hydrogenation reaction were studied. The purpose is to explore the best operating conditions for the preparation of chloroform. The results show that the 3DGN-supported palladium catalyst exhibits excellent catalytic performance and high selectivity to chloroform in the hydrogenation of TTCM. When the Pd loading was 1.0 wt%, the reduction temperature was 773 K, and the hydrochlorination reaction temperature was 398 K, the conversion of TTCM was as high as 98.12%, and the selectivity of chloroform was 85.23%. The main by-product is dichloromethane. The selectivity of chloroform is affected by the increasing temperature but remains above 80%.
first_indexed 2024-04-12T12:11:37Z
format Article
id doaj.art-c56ed4add5324e789bac934b9873e79a
institution Directory Open Access Journal
issn 2191-9550
language English
last_indexed 2024-04-12T12:11:37Z
publishDate 2022-08-01
publisher De Gruyter
record_format Article
series Green Processing and Synthesis
spelling doaj.art-c56ed4add5324e789bac934b9873e79a2022-12-22T03:33:34ZengDe GruyterGreen Processing and Synthesis2191-95502022-08-0111172473110.1515/gps-2022-0066Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalystXie Zhuoyi0Guo Jianwei1School of Light Industry and Chemical Engineering, Guangdong University of Technology, Guangzhou 510006, Guangdong, ChinaSchool of Light Industry and Chemical Engineering, Guangdong University of Technology, Guangzhou 510006, Guangdong, ChinaIn this article, a three-dimensional graphene (3DGN)-supported palladium metal catalyst was prepared by the impregnation method with noble metal palladium as the active component, aiming to synthesize a catalyst with high activity and high selectivity. Its catalytic performance in liquid-phase hydrochlorination of carbon tetrachloride (TTCM) was investigated. The influences of different Pd loadings, reduction temperatures, and reaction temperatures on the catalytic hydrogenation reaction were studied. The purpose is to explore the best operating conditions for the preparation of chloroform. The results show that the 3DGN-supported palladium catalyst exhibits excellent catalytic performance and high selectivity to chloroform in the hydrogenation of TTCM. When the Pd loading was 1.0 wt%, the reduction temperature was 773 K, and the hydrochlorination reaction temperature was 398 K, the conversion of TTCM was as high as 98.12%, and the selectivity of chloroform was 85.23%. The main by-product is dichloromethane. The selectivity of chloroform is affected by the increasing temperature but remains above 80%.https://doi.org/10.1515/gps-2022-0066carbon tetrachloridehydrochlorinationpalladium/three-dimensional graphene catalystselectivity
spellingShingle Xie Zhuoyi
Guo Jianwei
Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalyst
Green Processing and Synthesis
carbon tetrachloride
hydrochlorination
palladium/three-dimensional graphene catalyst
selectivity
title Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalyst
title_full Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalyst
title_fullStr Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalyst
title_full_unstemmed Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalyst
title_short Liquid-phase hydrogenation of carbon tetrachloride catalyzed by three-dimensional graphene-supported palladium catalyst
title_sort liquid phase hydrogenation of carbon tetrachloride catalyzed by three dimensional graphene supported palladium catalyst
topic carbon tetrachloride
hydrochlorination
palladium/three-dimensional graphene catalyst
selectivity
url https://doi.org/10.1515/gps-2022-0066
work_keys_str_mv AT xiezhuoyi liquidphasehydrogenationofcarbontetrachloridecatalyzedbythreedimensionalgraphenesupportedpalladiumcatalyst
AT guojianwei liquidphasehydrogenationofcarbontetrachloridecatalyzedbythreedimensionalgraphenesupportedpalladiumcatalyst