Petroleum Science >2020, Issue 6: - DOI: https://doi.org/10.1007/s12182-020-00502-5
Effects of pore size, mesostructure and aluminum modification on FDU-12 supported NiMo catalysts for hydrodesulfurization Open Access
文章信息
作者:Pei Yuan, Xue-Qin Lei, Hong-Ming Sun, Hong-Wei Zhang, Chun-Sheng Cui, Yuan-Yuan Yue, Hai-Yan Liu, Xiao-Jun Bao & Ting-Hai Wang
作者单位:
Affiliations
National Engineering Research Center of Chemical Fertilizer Catalyst, School of Chemical Engineering, Fuzhou University, Fuzhou, 350002, People’s Republic of China
Pei Yuan, Xue-Qin Lei, Hong-Ming Sun, Hong-Wei Zhang, Yuan-Yuan Yue, Xiao-Jun Bao & Ting-Hai Wang
State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing, 102249, People’s Republic of China
Chun-Sheng Cui & Hai-Yan Liu
Corresponding author
Correspondence to Ting-Hai Wang.
投稿时间:2020-9-1
引用方式:Yuan, P., Lei, X., Sun, H. et al. Effects of pore size, mesostructure and aluminum modification on FDU-12 supported NiMo catalysts for hydrodesulfurization. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00502-5
文章摘要
A series of NiMo/FDU-12 catalysts with tunable pore diameters and mesostructures have been controllably synthesized by adjusting the synthetic hydrothermal temperature and applied for the hydrodesulfurization of dibenzothiophene and its derivative. The state-of-the-art electron tomography revealed that the pore sizes of FDU-12 supports were enlarged with the increase in the hydrothermal temperature and the mesostructures were transformed from ordered cage-type pores to locally disordered channels. Meanwhile, the MoS2 morphology altered from small straight bar to semibending arc to spherical shape and finally to larger straight bar with the change of support structures. Among them, FDU-12 hydrothermally treated at 150 °C possessed appropriate pore diameter and connected pore structure and was favorable for the formation of highly active MoS2 with curved morphology; thus, its corresponding catalyst exhibited the best HDS activity. Furthermore, it was indicated that the isomerization pathway could be significantly improved for HDS of 4,6-dimethyldibenzothiophene after the addition of aluminum, which was expected to be applied to the removal of the macromolecular sulfur compounds. Our study sheds lights on the relationship between support effect, active sites morphology and HDS performance, and also provides a guidance for the development of highly active HDS catalysts.
关键词
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Mesostructure;FDU-12;NiMo catalysts;Hydrodesulfurization;Al modification