Kim Eun-Sang, Lee You-Jin, Kim Jeong-Rang, Kim Joo-Wan, Kim Tae-Wan, Chae Ho-Jeong, Kim Chul-Ung, Lee Chang-Ha, Jeong Soon-Yong
J Nanosci Nanotechnol. 2016 Feb;16(2):1715-9. doi: 10.1166/jnn.2016.11997.
Nanoporous Beta zeolite was dealuminated by weak acid treatment for reducing the acidity. Bi-functional catalysts were prepared using commercial Beta zeolites and the dealuminated zeolites for acidic function, NiW for metallic function. 1-Methylnaphthalene was selected as a model compound for multi-ring aromatics in heavy oil, and its selective ring opening reaction has been investigated using the prepared bi-functional catalysts with different acidity in fixed bed reaction system. The dealuminated Beta zeolites, which crystal structure and nanoporosity were maintained, showed the higher SiO2/Al2O3 ratio and smaller acidity than their original zeolite. NiW-supported catalyst using the dealuminated Beta zeolite with SiO2/Al203 mole ratio of 55 showed the highest performance for the selective ring opening. The acidity of catalyst seemed to play an important role as active sites for the selective ring opening of 1-methylnaphthalene but there should be some optimum catalyst acidity for the reaction. The acidity of Beta zeolite could be controlled by the acid treatment and the catalyst with the optimum acidity for the selective ring opening could be prepared.
通过弱酸处理对纳米多孔β沸石进行脱铝以降低其酸度。使用商业β沸石和脱铝沸石制备具有酸性功能的双功能催化剂,使用NiW作为金属功能。选择1-甲基萘作为重油中多环芳烃的模型化合物,并在固定床反应体系中使用制备的具有不同酸度的双功能催化剂研究了其选择性开环反应。脱铝的β沸石保持了晶体结构和纳米孔隙率,其SiO2/Al2O3比值更高,酸度比原始沸石小。使用SiO2/Al203摩尔比为55的脱铝β沸石负载的NiW催化剂在选择性开环方面表现出最高性能。催化剂的酸度似乎作为1-甲基萘选择性开环的活性位点起着重要作用,但该反应应该存在一些最佳的催化剂酸度。β沸石的酸度可以通过酸处理来控制,并且可以制备出具有选择性开环最佳酸度的催化剂。