Issue 31, 2021

Synthesis of Ni(ii)-phosphotungstic acid/nanocrystalline HZSM-5 catalyst for ultra clean gasoline in a single-stage reactor

Abstract

Although considerable progress has been made in FCC gasoline hydrorefining, it is still a great challenge to develop new catalysts and single-stage reactors to realize deep refining whilst retaining octane number. The core of one-pot hydrogenation is to develop a deep desulfurization catalyst and maintain the high aromatization activity of C–H compounds in the corresponding oil at low temperatures. In this paper, a bifunctional nanocrystalline HZSM-5 zeolite supported Keggin-type phosphotungstic acid (HPW) and a Ni salt catalyst (NiPW-Nano-Z) are designed and applied for hydrorefining of FCC gasoline in order to obtain high quality fuel. The catalysts have been characterized using inductively coupled plasma, N2-physisorption, Fourier transform infrared spectroscopy, X-ray diffraction, ultraviolet-visible spectroscopy, in situ electron spin resonance, UV-Raman spectroscopy, 31P magic angle spinning-nuclear magnetic resonance, X-ray photoelectron spectroscopy, IR spectra of in situ adsorbed pyridine, H2-temperature programmed reduction. The role of calcination temperature, the type of raw material and the rare earth metal oxide on the framework structures of polyoxometalate on the nanocrystalline HZSM-5 zeolite, are discussed in detail. The Keggin structure of HPW and the scaffold structure of nanocrystalline HZSM-5 zeolite on NiPW-Nano-Z calcined at 350 °C have been maintained. The NiPW-Nano-Z catalyst has shown excellent catalytic performance for the hydrodesulfurization, aromatization with hydrogenation of olefins activity of FCC gasoline by single-stage reactor. The distribution of the products is measured and calculated. The contents of sulfur, total aromatics and olefins are 8.4 μg g−1, 24.4 vol% and 10.0 vol%, respectively, which demonstrates that the quality of products has met the National standard VI of vehicle gasoline in China. The improved catalytic performance of the NiPW-Nano-Z catalyst can be due to the synergistic effect between Ni(II) and HPW(III) on the nanocrystalline HZSM-5 zeolite. The effect of the polyoxometalate structure and acidity of nanocrystalline HZSM-5 zeolite on the hydrorefining of FCC gasoline is also investigated in detail.

Graphical abstract: Synthesis of Ni(ii)-phosphotungstic acid/nanocrystalline HZSM-5 catalyst for ultra clean gasoline in a single-stage reactor

Supplementary files

Article information

Article type
Paper
Submitted
28 Apr 2021
Accepted
27 Jun 2021
First published
29 Jun 2021

New J. Chem., 2021,45, 14070-14081

Synthesis of Ni(II)-phosphotungstic acid/nanocrystalline HZSM-5 catalyst for ultra clean gasoline in a single-stage reactor

Z. Li, Y. Shi, D. Liu, S. Song, L. Zhao, Y. Guo, L. Chen, X. Wang, X. Guo and W. Cheng, New J. Chem., 2021, 45, 14070 DOI: 10.1039/D1NJ02067F

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