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CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst

Ethylene Oxide (EO) is an essential raw material used in various consumer products like different glycol derivatives, ethoxylates, and polymers. We hydrothermally synthesize niobium oxide incorporated with mesoporous silica material (Nb/MSM), an efficient catalyst for CO(2) free-ethylene oxide (EO)...

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Autores principales: Maqbool, Muhammad, Akhter, Toheed, Faheem, Muhammad, Nadeem, Sohail, Park, Chan Ho, Mahmood, Asif
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9831203/
https://www.ncbi.nlm.nih.gov/pubmed/36712627
http://dx.doi.org/10.1039/d2ra07240h
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author Maqbool, Muhammad
Akhter, Toheed
Faheem, Muhammad
Nadeem, Sohail
Park, Chan Ho
Mahmood, Asif
author_facet Maqbool, Muhammad
Akhter, Toheed
Faheem, Muhammad
Nadeem, Sohail
Park, Chan Ho
Mahmood, Asif
author_sort Maqbool, Muhammad
collection PubMed
description Ethylene Oxide (EO) is an essential raw material used in various consumer products like different glycol derivatives, ethoxylates, and polymers. We hydrothermally synthesize niobium oxide incorporated with mesoporous silica material (Nb/MSM), an efficient catalyst for CO(2) free-ethylene oxide (EO) production via partial oxidation of ethylene. The structural properties of Nb/MSM catalysts were characterized using XRD, TEM, and N(2) adsorption–desorption. The catalytic activity of synthesized materials in liquid phase epoxidation (LPE) of ethylene was evaluated in the presence of peracetic acid (PAA) as an oxidant to avoid the production of CO(2) and also minimize metal leaching. GC chromatography was used to investigate the successful production of EO, and a peak with a retention time (RT) of 9.01 min served as confirmation. Various reaction parameters viz. temperature, catalyst concentration, ethylene to PAA molar ratio, and solvent effect were investigated in order to optimize the reaction conditions for enhancing the ethylene conversion and selectivity for EO production. By this approach, the challenges of greenhouse gas production and metal leaching were addressed which were associated with previously reported catalysts.
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spelling pubmed-98312032023-01-26 CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst Maqbool, Muhammad Akhter, Toheed Faheem, Muhammad Nadeem, Sohail Park, Chan Ho Mahmood, Asif RSC Adv Chemistry Ethylene Oxide (EO) is an essential raw material used in various consumer products like different glycol derivatives, ethoxylates, and polymers. We hydrothermally synthesize niobium oxide incorporated with mesoporous silica material (Nb/MSM), an efficient catalyst for CO(2) free-ethylene oxide (EO) production via partial oxidation of ethylene. The structural properties of Nb/MSM catalysts were characterized using XRD, TEM, and N(2) adsorption–desorption. The catalytic activity of synthesized materials in liquid phase epoxidation (LPE) of ethylene was evaluated in the presence of peracetic acid (PAA) as an oxidant to avoid the production of CO(2) and also minimize metal leaching. GC chromatography was used to investigate the successful production of EO, and a peak with a retention time (RT) of 9.01 min served as confirmation. Various reaction parameters viz. temperature, catalyst concentration, ethylene to PAA molar ratio, and solvent effect were investigated in order to optimize the reaction conditions for enhancing the ethylene conversion and selectivity for EO production. By this approach, the challenges of greenhouse gas production and metal leaching were addressed which were associated with previously reported catalysts. The Royal Society of Chemistry 2023-01-10 /pmc/articles/PMC9831203/ /pubmed/36712627 http://dx.doi.org/10.1039/d2ra07240h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Maqbool, Muhammad
Akhter, Toheed
Faheem, Muhammad
Nadeem, Sohail
Park, Chan Ho
Mahmood, Asif
CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst
title CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst
title_full CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst
title_fullStr CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst
title_full_unstemmed CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst
title_short CO(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst
title_sort co(2) free production of ethylene oxide via liquid phase epoxidation of ethylene using niobium oxide incorporated mesoporous silica material as the catalyst
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9831203/
https://www.ncbi.nlm.nih.gov/pubmed/36712627
http://dx.doi.org/10.1039/d2ra07240h
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