首页 | 本学科首页   官方微博 | 高级检索  
     

Dealuminated ZSM-5 Zeolite Catalyst for Ethylene Oligomerization to Liquid Fuels
引用本文:Nor Aishah Saidina Amin,Didi Dwi Anggoro1. Faculty of Chemical and Natural Resources Engineering,Universiti Teknologi Malaysia,81310 Skudai,Johor,Malaysia2. Department of Chemical Engineering,University of Diponegoro,Semarang 50232,Indonesia[Manusc. Dealuminated ZSM-5 Zeolite Catalyst for Ethylene Oligomerization to Liquid Fuels[J]. 天然气化学杂志, 2002, 0(Z1)
作者姓名:Nor Aishah Saidina Amin  Didi Dwi Anggoro1. Faculty of Chemical and Natural Resources Engineering  Universiti Teknologi Malaysia  81310 Skudai  Johor  Malaysia2. Department of Chemical Engineering  University of Diponegoro  Semarang 50232  Indonesia[Manusc
作者单位:Nor Aishah Saidina Amin,Didi Dwi Anggoro1. Faculty of Chemical and Natural Resources Engineering,Universiti Teknologi Malaysia,81310 Skudai,Johor,Malaysia2. Department of Chemical Engineering,University of Diponegoro,Semarang 50232,Indonesia[Manusc
摘    要:Ethylene oligomerization using ZSM-5 zeolite was investigated to study the role of Bronsted acid sites in the formation of higher hydrocarbons. The oligomerization of olefins, dependent on the acidity of ZSM-5 zeolite, is an important step in the conversion of natural gas to liquid fuels. The framework Si/Al ratio reflects the number of potential acid sites and the acid strength of the ZSM-5 catalyst. ZSM-5 with the mole ratio SiO2/Al2O3 equal to 30 was dealuminated for different periods of time according to the acidic ion-exchange method to produce ZSM-5 with various Si/Al ratios. The FT-IR analysis revealed that the integrated framework aluminum band, non-framework aluminum band, and silanol groups areas of the ZSM-5 zeolites decreased after being dealuminated. The performance of the dealuminated zeolite was tested for ethylene oligomerization. The results demonstrated that the dealumination of ZSM-5 led to higher ethylene conversion, but the gasoline selectivity was reduced compared to the performance


Dealuminated ZSM-5 Zeolite Catalyst for Ethylene Oligomerization to Liquid Fuels
Nor Aishah Saidina Amin,Didi Dwi Anggoro. Faculty of Chemical and Natural Resources Engineering,Universiti Teknologi Malaysia, Skudai,Johor,Malaysia. Dealuminated ZSM-5 Zeolite Catalyst for Ethylene Oligomerization to Liquid Fuels[J]. Journal of Natural Gas Chemistry, 2002, 0(Z1)
Authors:Nor Aishah Saidina Amin  Didi Dwi Anggoro. Faculty of Chemical  Natural Resources Engineering  Universiti Teknologi Malaysia   Skudai  Johor  Malaysia
Affiliation:Nor Aishah Saidina Amin,Didi Dwi Anggoro1. Faculty of Chemical and Natural Resources Engineering,Universiti Teknologi Malaysia,81310 Skudai,Johor,Malaysia2. Department of Chemical Engineering,University of Diponegoro,Semarang 50232,Indonesia[Manusc
Abstract:Ethylene oligomerization using ZSM-5 zeolite was investigated to study the role of Bronsted acid sites in the formation of higher hydrocarbons. The oligomerization of olefins, dependent on the acidity of ZSM-5 zeolite, is an important step in the conversion of natural gas to liquid fuels. The framework Si/Al ratio reflects the number of potential acid sites and the acid strength of the ZSM-5 catalyst. ZSM-5 with the mole ratio SiO2/Al2O3 equal to 30 was dealuminated for different periods of time according to the acidic ion-exchange method to produce ZSM-5 with various Si/Al ratios. The FT-IR analysis revealed that the integrated framework aluminum band, non-framework aluminum band, and silanol groups areas of the ZSM-5 zeolites decreased after being dealuminated. The performance of the dealuminated zeolite was tested for ethylene oligomerization. The results demonstrated that the dealumination of ZSM-5 led to higher ethylene conversion, but the gasoline selectivity was reduced compared to the performance of a ZSM-5 zeolite. The characterization results revealed the amount of aluminum in the zeolitic framework, the crystallinity of the ZSM-5 zeolite, and the Si/Al ratio affected the formation of Bronsted acid sites. The number of the Bronsted acid sites on the catalyst active sites is important in the olefin conversion to liquid hydrocarbons.
Keywords:ethylene   liquid fuels   oligomerization   dealumination   ZSM-5
本文献已被 CNKI 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号