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Pyrite magnetic strengthen and magnetic separation desulfurizatio | 57811
Journal of Chromatography & Separation Techniques

Journal of Chromatography & Separation Techniques
Open Access

ISSN: 2157-7064

Pyrite magnetic strengthen and magnetic separation desulfurization of fine coal based on microwave energy


9th International Conference and Expo on Separation Techniques

September 13-14, 2018 | Zurich, Switzerland

Bo Zhang, Yuemin Zhao, Guanghui Yan, Liang Dong and Chenlong Duan

China University of Mining and Technology, China

Posters & Accepted Abstracts: J Chromatogr Sep Tech

Abstract :

The throughput of pyrite extraction from coal using the conventional magnetic separation method can be effectively improved by increasing the magnetic susceptibility of pyrite. The electromagnetic characteristics and absorption response of fine high-sulfur coal were studied to evaluate the strengthening effect of microwave treatment on the magnetic susceptibility of pyrite. In actual production, the microwave treated pyrite was affected by oxygen and water vapor in the air, so it is necessary to consider the effects of various factors on the magnetic enhancement after microwave pretreatment. Magnetism of fine coal stored under room temperature in air for long-term will become weaker, due to the formation of pyrrhotite. Also, the pyrite is not stable in air during the microwave pretreatment process. Due to the porosity of fine coal, when it is placed in air, oxidation reaction occurs between a small amount of oxygen and coal pyrite. This is the reason for the decrease in the specific magnetic susceptibility and the weakening of the magnetic behavior of fine coal. Analysis of different sputtering times indicates the different depths from the surface. During the microwave treatment, pyrite Fe2 (SO4)3 and ferrous sulfate FeSO4 are mainly present on the surface of pyrite, and surface oxidation takes place. The relative content of Fe2 (SO4)3 in the treated coal is higher than that of FeSO4.

Biography :

E-mail: zhangbocumt@126.com

 

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