Catalytic performance and characterization of Ni-doped HZSM-5 catalysts for selective trimerization of n-butene

催化作用 化学 吡啶 选择性 吸附 丁烯 路易斯酸 红外光谱学 无机化学 解吸 1-丁烯 核化学 有机化学 乙烯
作者
Xin Zhang,Jinghua Zhong,Jianwei Wang,Linhui Zhang,Jun Gao,Aisong Liu
出处
期刊:Fuel Processing Technology [Elsevier BV]
卷期号:90 (7-8): 863-870 被引量:59
标识
DOI:10.1016/j.fuproc.2009.04.011
摘要

A series of Ni-doped HZSM-5 catalysts were prepared and the catalytic performance of these catalysts in n-butene trimerization was investigated. The Ni-loading, the Si/Al ratio of HZSM-5 and the reaction conditions (temperature, pressure and WHSV) played great influences on the catalytic performance of these catalysts in the reaction. 77.5 wt.% conversion of n-butene and 50.5 wt.% selectivity of trimers as well as 19.6 × 10− 2 gtrimers/(gcat h) yield of trimers were obtained on 1NiHZSM-5(320) catalyst up to 148 h at 420 °C, WHSV = 2 h− 1 and 1.0 MPa. In addition, the physicochemical properties of these catalysts were comparatively characterized by powder X-ray diffraction (XRD), N2 isothermal adsorption–desorption, infrared red spectroscopy (IR) and pyridine adsorbed infrared red spectroscopy (Py-IR) techniques. The doping of Ni into HZSM-5(320) modified the specific surface area and the acidity of these catalysts, which in turn affected the catalytic performance of these catalysts in n-butene trimerization. The acidic amount and the ratio of Lewis/Brönsted acid sites (L/B) on the external surface of these catalysts were close relative to the catalytic performance of these catalysts. 1NiHZSM-5(320) catalyst showed the highest catalytic performance in n-butene trimersization among the investigated catalysts because it had the proper acidic amount and the proper L/B ratio on its external surface.
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