沸石
介孔材料
硅醇
催化作用
催化裂化
化学
化学工程
聚结(物理)
硅
成核
开裂
选择性
分子筛
有机化学
物理
工程类
天体生物学
作者
Zhengxing Qin,Baojian Shen,Zhengkun Yu,Feng Deng,Liang Zhao,Shuge Zhou,Delin Yuan,Xionghou Gao,Baojie Wang,Hongjuan Zhao,Honghai Liu
标识
DOI:10.1016/j.jcat.2012.11.023
摘要
Mesoporous ultra-stable Y zeolite with outstanding performance for heavy oil cracking was prepared through the combination of desilication and dealumination. Atomic removal of silicon atoms from the starting NaY zeolite framework during desilication was reported. Nucleation and propagation of mesopores in the following dealumination process was studied. Si(0Al) and Si(1Al) atoms are selectively removed from zeolite framework by desilication. Consequently, silanol nests and unique hydroxyl nests with framework associated Al-OH were created in the framework of the desilicated zeolite. The artificial defects effect the initiation of mesopores in crystal parts where used to be rich in framework silicon and unfavorable for mesopore formation and promote the propagation and coalescence of mesopores. Catalytic studies revealed improved activity and lifetime in the crack of 1,3,5-triisopropylbenzene and showed increased gasoline and light cycle oil selectivity when the conversion of a heavy oil was compared.
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