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Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization

MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta catalysts for ethylene polymerization were prepared by impregnation of MgCl(2) on SiO(2) in heptane and further treatment with TiCl(4). MgCl(2)(·)nEtOH adduct solutions were prepared with various EtOH/MgCl(2) molar ratios for preparation of the MgCl(2)-supported...

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Autores principales: Patthamasang, Supanan, Jongsomjit, Bunjerd, Praserthdam, Piyasan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6264201/
https://www.ncbi.nlm.nih.gov/pubmed/21959303
http://dx.doi.org/10.3390/molecules16108332
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author Patthamasang, Supanan
Jongsomjit, Bunjerd
Praserthdam, Piyasan
author_facet Patthamasang, Supanan
Jongsomjit, Bunjerd
Praserthdam, Piyasan
author_sort Patthamasang, Supanan
collection PubMed
description MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta catalysts for ethylene polymerization were prepared by impregnation of MgCl(2) on SiO(2) in heptane and further treatment with TiCl(4). MgCl(2)(·)nEtOH adduct solutions were prepared with various EtOH/MgCl(2) molar ratios for preparation of the MgCl(2)-supported and MgCl(2)-SiO(2)-supported catalysts in order to investigate the effect on polymerization performance of both catalyst systems. The catalytic activities for ethylene polymerization decreased markedly with increased molar ratios of [EtOH]/[MgCl(2)] for the MgCl(2)-supported catalysts, while for the bi-supported catalysts, the activities only decreased slightly. The MgCl(2)-SiO(2)-supported catalyst had relatively constant activity, independent of the [EtOH]/[MgCl(2)] ratio. The lower [EtOH]/[MgCl(2)] in MgCl(2)-supported catalyst exhibited better catalytic activity. However, for the MgCl(2)-SiO(2)-supported catalyst, MgCl(2) can agglomerate on the SiO(2) surface at low [EtOH]/[MgCl(2)] thus not being not suitable for TiCl(4) loading. It was found that the optimized [EtOH]/[MgCl(2)] value for preparation of bi-supported catalysts having high activity and good spherical morphology with little agglomerated MgCl(2) was 7. Morphological studies indicated that MgCl(2)-SiO(2)-supported catalysts have good morphology with spherical shapes that retain the morphology of SiO(2). The BET measurement revealed that pore size is the key parameter dictating polymerization activity. The TGA profiles of the bi-supported catalyst also confirmed that it was more stable than the mono-supported catalyst, especially in the ethanol removal region.
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spelling pubmed-62642012018-12-10 Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization Patthamasang, Supanan Jongsomjit, Bunjerd Praserthdam, Piyasan Molecules Article MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta catalysts for ethylene polymerization were prepared by impregnation of MgCl(2) on SiO(2) in heptane and further treatment with TiCl(4). MgCl(2)(·)nEtOH adduct solutions were prepared with various EtOH/MgCl(2) molar ratios for preparation of the MgCl(2)-supported and MgCl(2)-SiO(2)-supported catalysts in order to investigate the effect on polymerization performance of both catalyst systems. The catalytic activities for ethylene polymerization decreased markedly with increased molar ratios of [EtOH]/[MgCl(2)] for the MgCl(2)-supported catalysts, while for the bi-supported catalysts, the activities only decreased slightly. The MgCl(2)-SiO(2)-supported catalyst had relatively constant activity, independent of the [EtOH]/[MgCl(2)] ratio. The lower [EtOH]/[MgCl(2)] in MgCl(2)-supported catalyst exhibited better catalytic activity. However, for the MgCl(2)-SiO(2)-supported catalyst, MgCl(2) can agglomerate on the SiO(2) surface at low [EtOH]/[MgCl(2)] thus not being not suitable for TiCl(4) loading. It was found that the optimized [EtOH]/[MgCl(2)] value for preparation of bi-supported catalysts having high activity and good spherical morphology with little agglomerated MgCl(2) was 7. Morphological studies indicated that MgCl(2)-SiO(2)-supported catalysts have good morphology with spherical shapes that retain the morphology of SiO(2). The BET measurement revealed that pore size is the key parameter dictating polymerization activity. The TGA profiles of the bi-supported catalyst also confirmed that it was more stable than the mono-supported catalyst, especially in the ethanol removal region. MDPI 2011-09-29 /pmc/articles/PMC6264201/ /pubmed/21959303 http://dx.doi.org/10.3390/molecules16108332 Text en © 2011 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Patthamasang, Supanan
Jongsomjit, Bunjerd
Praserthdam, Piyasan
Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization
title Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization
title_full Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization
title_fullStr Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization
title_full_unstemmed Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization
title_short Effect of EtOH/MgCl(2) Molar Ratios on the Catalytic Properties of MgCl(2)-SiO(2)/TiCl(4) Ziegler-Natta Catalyst for Ethylene Polymerization
title_sort effect of etoh/mgcl(2) molar ratios on the catalytic properties of mgcl(2)-sio(2)/ticl(4) ziegler-natta catalyst for ethylene polymerization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6264201/
https://www.ncbi.nlm.nih.gov/pubmed/21959303
http://dx.doi.org/10.3390/molecules16108332
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