Physical Grinding of Prefabricated Co3O4 and MCM-22 Zeolite for Fischer–Tropsch Synthesis: Impact of Pretreatment Procedure on the Dispersion and Catalytic Performance

Author:

Ren Hua-Ping1,Xie Zhi-Xia2,Tian Shao-Peng1,Ding Si-Yi1,Ma Qiang1,Zhao Yu-Zhen1,Zhang Zhe1,Fu Jiao-Jiao1,Hao Qing-Qing2

Affiliation:

1. Technological Institute of Materials & Energy Science (TIMES), Xi’an Key Laboratory of Advanced Photo-Electronics Materials and Energy Conversion Device, School of Electronic Information, Xijing University, Xi’an 710123, China

2. School of Chemical Engineering, Northwest University, Xi’an 710069, China

Abstract

To improve the mess-specific activity of Co supported on zeolite catalysts in Fischer–Tropsch (FT) synthesis, the Co-MCM-22 catalyst was prepared by simply grinding the MCM-22 with nanosized Co3O4 prefabricated by the thermal decomposition of the Co(II)-glycine complex. It is found that this novel strategy is effective for improving the mess-specific activity of Co catalysts in FT synthesis compared to the impregnation method. Moreover, the ion exchange and calcination sequence of MCM-22 has a significant influence on the dispersion, particle size distribution, and reduction degree of Co. The Co-MCM-22 prepared by the physical grinding of prefabricated Co3O4 and H+-type MCM-22 without a further calcination process exhibits a moderate interaction between Co3O4 and MCM-22, which results in the higher reduction degree, higher dispersion, and higher mess-specific activity of Co. Thus, the newly developed method is more controllable and promising for the synthesis of metal-supported catalysts.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shaanxi Science and Technology Department

Scientific Research Foundation for the Youth Innovation Team of the Education Department of Shaanxi Provincial Government

Youth Innovation Team of Shaanxi Universities

Publisher

MDPI AG

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