Preparation of Solid Superacid Catalysts and Oil Oxidative Desulfurization Using K2FeO4
- Authors: Zhang J.j.1,2, Wang W.y.1, Wang G.j.1, Song H.1,2, Wang L.3
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Affiliations:
- College of Chemistry & Chemical Engineering
- Provincial Key Laboratory of Oil & Gas Chemical Technology, College of Chemistry & Chemical Engineering
- Petro China Daqing Refining & Chemical Company
- Issue: Vol 91, No 9 (2018)
- Pages: 1513-1519
- Section: Catalysis
- URL: https://journal-vniispk.ru/1070-4272/article/view/216053
- DOI: https://doi.org/10.1134/S1070427218090148
- ID: 216053
Cite item
Abstract
A \(\rm{SO_4^{2-}}\)/MCM-41 superacid catalyst was prepared by impregnation and characterized by various methods. A novel procedure for oxidative desulfurization of simulated light fuel oil using K2FeO4 over \(\rm{SO_4^{2-}}\)/MCM-41 was developed. Fourier transform infrared spectroscopy (FTIR) and low-angle X-ray diffractometry (XRD) show that the material synthesized by the precipitation-sol-hydrothermal method is mobil composition of matter no. 41 (MCM-41). Thermogravimetry/differential thermal analysis (TG-DTA) shows that when the calcination temperature is higher than 300°.
About the authors
Jiao jing Zhang
College of Chemistry & Chemical Engineering; Provincial Key Laboratory of Oil & Gas Chemical Technology, College of Chemistry & Chemical Engineering
Email: songhua2004@sina.com
China, Daqing, 163318; Heilongjiang, Daqing 163318
Wen yi Wang
College of Chemistry & Chemical Engineering
Email: songhua2004@sina.com
China, Daqing, 163318
Guo jian Wang
College of Chemistry & Chemical Engineering
Email: songhua2004@sina.com
China, Daqing, 163318
Hua Song
College of Chemistry & Chemical Engineering; Provincial Key Laboratory of Oil & Gas Chemical Technology, College of Chemistry & Chemical Engineering
Author for correspondence.
Email: songhua2004@sina.com
China, Daqing, 163318; Heilongjiang, Daqing 163318
Lu Wang
Petro China Daqing Refining & Chemical Company
Email: songhua2004@sina.com
China, Daqing, 163411
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