COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACES

This article presents results of a study on coating of a polymeric substrate ca-talyst on metallic surface. Stability of coating on metallic surfaces is a proper specification. Sol-gel technology was used to synthesize adhesion promoters of polysilane compounds that act as a mediator. The intermedia...

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Main Authors: H. HOSSEINI, A. MEHRABANI-ZEINABAD
Format: Article
Language:English
Published: Association of the Chemical Engineers of Serbia 2010-12-01
Series:Chemical Industry and Chemical Engineering Quarterly
Subjects:
Online Access:http://www.ache.org.rs/CICEQ/2010/No4/CICEQ_Vol16_%20No4_pp345-352_Oct-Dec_2010.pdf
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spelling doaj-3e530e004dc54696a04625307ca5256f2020-11-24T22:20:44ZengAssociation of the Chemical Engineers of SerbiaChemical Industry and Chemical Engineering Quarterly1451-93722010-12-01164345352COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACESH. HOSSEINIA. MEHRABANI-ZEINABADThis article presents results of a study on coating of a polymeric substrate ca-talyst on metallic surface. Stability of coating on metallic surfaces is a proper specification. Sol-gel technology was used to synthesize adhesion promoters of polysilane compounds that act as a mediator. The intermediate layer was coated by synthesized sulfonated polystyrene-divinylbenzene as a catalyst for production of MTBE in catalytic distillation process. Swelling of catalyst and its separation from the metal surface was improved by i) increasing the quantity of divinylbenzene in the resin’s production process and ii) applying adhesion pro¬moters based on the sol-gel process. The rate of ethyl silicate hydrolysis was intensified by increasing the concentration of utilized acid while the conden¬sation polymerization was enhanced in the presence of OH–. Sol was formed at pH 2, while the pH should be 8 for the formation of gel. By setting the ratio of the initial concentrations of water to ethyl silicate to 8, the gel formation time was minimized.http://www.ache.org.rs/CICEQ/2010/No4/CICEQ_Vol16_%20No4_pp345-352_Oct-Dec_2010.pdfpolymeric substrate catalystssurface coating technologyadhesion promoters
collection DOAJ
language English
format Article
sources DOAJ
author H. HOSSEINI
A. MEHRABANI-ZEINABAD
spellingShingle H. HOSSEINI
A. MEHRABANI-ZEINABAD
COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACES
Chemical Industry and Chemical Engineering Quarterly
polymeric substrate catalysts
surface coating technology
adhesion promoters
author_facet H. HOSSEINI
A. MEHRABANI-ZEINABAD
author_sort H. HOSSEINI
title COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACES
title_short COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACES
title_full COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACES
title_fullStr COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACES
title_full_unstemmed COATING OF POLYMERIC SUBSTRATE CATALYSTS ON METALLIC SURFACES
title_sort coating of polymeric substrate catalysts on metallic surfaces
publisher Association of the Chemical Engineers of Serbia
series Chemical Industry and Chemical Engineering Quarterly
issn 1451-9372
publishDate 2010-12-01
description This article presents results of a study on coating of a polymeric substrate ca-talyst on metallic surface. Stability of coating on metallic surfaces is a proper specification. Sol-gel technology was used to synthesize adhesion promoters of polysilane compounds that act as a mediator. The intermediate layer was coated by synthesized sulfonated polystyrene-divinylbenzene as a catalyst for production of MTBE in catalytic distillation process. Swelling of catalyst and its separation from the metal surface was improved by i) increasing the quantity of divinylbenzene in the resin’s production process and ii) applying adhesion pro¬moters based on the sol-gel process. The rate of ethyl silicate hydrolysis was intensified by increasing the concentration of utilized acid while the conden¬sation polymerization was enhanced in the presence of OH–. Sol was formed at pH 2, while the pH should be 8 for the formation of gel. By setting the ratio of the initial concentrations of water to ethyl silicate to 8, the gel formation time was minimized.
topic polymeric substrate catalysts
surface coating technology
adhesion promoters
url http://www.ache.org.rs/CICEQ/2010/No4/CICEQ_Vol16_%20No4_pp345-352_Oct-Dec_2010.pdf
work_keys_str_mv AT hhosseini coatingofpolymericsubstratecatalystsonmetallicsurfaces
AT amehrabanizeinabad coatingofpolymericsubstratecatalystsonmetallicsurfaces
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