Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y)
Silica-based fibrous material has been extensively studied by researchers after the discovery of fibrous silica nanosphere (KCC-1) by Polshettiwar et al., 2010. The KCC-1 was first prepared using the microwave-assisted hydrothermal technique exhibited excellent properties, including a high surface a...
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Universiti Malaysia Pahang
2018
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ump-236642019-01-08T04:20:25Z http://umpir.ump.edu.my/id/eprint/23664/ Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y) S., Triwahyono A. A., Jalil N. S., Jamari M. L., Firmansyah N. A., Fatah S. M., Izan S. F., Jamian Herma Dina, Setiabudi TP Chemical technology Silica-based fibrous material has been extensively studied by researchers after the discovery of fibrous silica nanosphere (KCC-1) by Polshettiwar et al., 2010. The KCC-1 was first prepared using the microwave-assisted hydrothermal technique exhibited excellent properties, including a high surface area, a fibrous surface morphology, good thermal and hydrothermal stabilities and mechanical stability. Moon, et al., (2012) reported that the mesoporous silica with fibrous morphology has high surface area compared with a typical hexagonal or cubic pore structure which suitable for good catalytic support. Previous study has many discovered related to the acid-catalyzed for isomerization reaction. They discovered that the isomerization supports must have appropriated acidity for the good catalytic activity. However, the KCC-1 which fully composed with silica does not provided an adequate acid sites to promote acid-catalyzed isomerization reaction [1,2]. In the present work, newly combined zeolite-based with fibrous silica was prepared via self-assembly process in the microemulsion system. This new catalyst has a potential to overcome inadequate acidity provided by KCC-1. Therefore, implementation of combined silica based material with zeolite enhanced the acidity of the catalyst to overcome the inadequate acidity provided by solely silica of KCC-1. The high acidity will enhanced the isomerization reaction towards producing high octane number gasoline [3]. Universiti Malaysia Pahang 2018 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/23664/1/8.%20Isomerization%20of%20linear%20c5-c7%20over%20pt%20loaded.pdf S., Triwahyono and A. A., Jalil and N. S., Jamari and M. L., Firmansyah and N. A., Fatah and S. M., Izan and S. F., Jamian and Herma Dina, Setiabudi (2018) Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y). In: 4th International Conference Of Chemical Engineering And Industrial Biotechnology (ICCEIB 2018), 1-2 August 2018 , Seri Pacific Hotel, Kuala Lumpur. pp. 98-100.. |
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TP Chemical technology S., Triwahyono A. A., Jalil N. S., Jamari M. L., Firmansyah N. A., Fatah S. M., Izan S. F., Jamian Herma Dina, Setiabudi Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y) |
description |
Silica-based fibrous material has been extensively studied by researchers after the discovery of fibrous silica nanosphere (KCC-1) by Polshettiwar et al., 2010. The KCC-1 was first prepared using the microwave-assisted hydrothermal technique exhibited excellent properties, including a high surface area, a fibrous surface morphology, good thermal and hydrothermal stabilities and mechanical stability. Moon, et al., (2012) reported that the mesoporous silica with fibrous morphology has high surface area compared with a typical hexagonal or cubic pore structure which suitable for good catalytic support. Previous study has many discovered related to the acid-catalyzed for isomerization reaction. They discovered that the isomerization supports must have appropriated acidity for the good catalytic activity. However, the KCC-1 which fully composed with silica does not provided an adequate acid sites to promote acid-catalyzed isomerization reaction [1,2]. In the present work, newly combined zeolite-based with fibrous silica was prepared via self-assembly process in the microemulsion system. This new catalyst has a potential to overcome inadequate acidity provided by KCC-1. Therefore, implementation of combined silica based material with zeolite enhanced the acidity of the catalyst to overcome the inadequate acidity provided by solely silica of KCC-1. The high acidity will enhanced the isomerization reaction towards producing high octane number gasoline [3]. |
format |
Conference or Workshop Item |
author |
S., Triwahyono A. A., Jalil N. S., Jamari M. L., Firmansyah N. A., Fatah S. M., Izan S. F., Jamian Herma Dina, Setiabudi |
author_facet |
S., Triwahyono A. A., Jalil N. S., Jamari M. L., Firmansyah N. A., Fatah S. M., Izan S. F., Jamian Herma Dina, Setiabudi |
author_sort |
S., Triwahyono |
title |
Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y) |
title_short |
Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y) |
title_full |
Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y) |
title_fullStr |
Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y) |
title_full_unstemmed |
Isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (Pt/Hsi@Y) |
title_sort |
isomerization of linear c5-c7 over pt loaded on protonated fibrous silica@y zeolite (pt/hsi@y) |
publisher |
Universiti Malaysia Pahang |
publishDate |
2018 |
url |
http://umpir.ump.edu.my/id/eprint/23664/ http://umpir.ump.edu.my/id/eprint/23664/1/8.%20Isomerization%20of%20linear%20c5-c7%20over%20pt%20loaded.pdf |
first_indexed |
2023-09-18T22:35:33Z |
last_indexed |
2023-09-18T22:35:33Z |
_version_ |
1777416571285667840 |