DOI: 10.1021/acs.iecr.6c03025 ISSN: 0888-5885

Extra-Framework Al-Modified Defective Hierarchical ZSM-5 Zeolite for Catalytic Cracking of n -Pentane to Olefins

Yifan Wang, Yajie Tian, Xin Yu, Bofeng Zhang, Hongyan Wang, Hao Yang, Qian Li, Guozhu Liu

Abstract

In the catalytic cracking of naphtha to light olefins over conventional microporous ZSM-5 zeolite, issues such as high mass-transfer resistance leading to low conversion and high acid-site density causing olefin consumption are commonly encountered. In this work, a hierarchical nanosponge ZSM-5 zeolite (NP) with a Si/Al ratio of 20 was synthesized. Acid washing was applied to reduce the acid-site density and introduce defects (NP-Aci). Furthermore, extra-framework Al was introduced via impregnation to modify the defective hierarchical-porous ZSM-5 (Al/NP-Aci). Characterization results confirm that the impregnated Al is anchored at defect sites, existing as extra-framework Al that acts as a Lewis acid. In n-pentane cracking, the Lewis-acid-modified Brønsted acid sites promote the monomolecular cracking of n-pentane, while the lowered acid density suppresses the bimolecular hydrogen transfer of the olefins. At 600 °C, the Al/NP-Aci catalyst achieves 98.03% n-pentane conversion, with ethylene and propylene selectivity of 30.12% and 19.63%, respectively. Moreover, the Al/NP-Aci catalyst exhibits excellent cracking stability, showing a deactivation rate of only 3.81% after 16 h of reaction at 600 °C under a weight hourly space velocity (WHSV) of 6.26 h–1.