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Fusibility and mineral transformation of Zhundong coal ash with high calciumand magnesium content under high temperature gasification conditions

2023 No. 07
359
233
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Authors:
LIU Xia
WU Hao
GUO Qinghua
CHEN Xueli
YU Guangsuo
WANG Fuchen
Unit:
Institute of Clean Coal Technology,East China University of Science and Technology
Abstract:

Entrained-flow gasification is an important way for clean and efficient utilization of coal,while Zhundong coal with high contentof calcium and magnesium can not be directly applied to industrial gasifiers due to its high ash fusion temperature. The in-depth study ofthe high-temperature fusion mechanism of Zhundong coal ash has important guiding signification for its gasification application. The fusi⁃bility and mineral transformation of high calcium magnesium Zhundong coal ash under high-temperature(1 100- 1 500 ℃ ) gasifica⁃tion conditions were studied using experimental analysis and calculated simulations, and the effect of SiO2 addition on the fusibilityand mineral transformation of raw coal ash was also investigated. The results indicate that when the gasification temperature is below1 300 ℃ , Ca mainly exists in the form of CaS in the high calcium-magnesium Wucaiwan coal ash, while Mg always exists in the formof MgO. When the gasification temperature increases to 1 400 ℃ , Ca-based minerals gradually melt in the liquid phase and complete⁃ly melt at 1 500 ℃ , while Mg reacts to form magnesium aluminum spinel of high melting point, resulting in a higher fusion temperature ofraw coal ash. An appropriate amount of SiO2 can combine with Ca and Mg in coal ash to form the akermanite that is prone to low-tempera⁃ture eutectic, thus significantly reducing the fusion and liquidus temperature of coal ash. Moreover, the combined priority of SiO2 and CaOis higher than that of MgO. The thermodynamic simulation results show that some Ca and Mg in Wucaiwan coal ash still exist in the formof monoxideat the equilibrium state of 1 600 ℃ , leading to a higher liquidus temperature of the raw coal ash. The thermodynamic calcula⁃tion results can provide a reference for fusibility prediction and high-temperature mineral transformation of coal ash.

Keywords:
Zhundong coal
gasification
slag tapping
ash fusibility
mineral transformation
Citation format:
刘霞(1983—),女,山东沂源人,博士研究生。E-mail:lxia@ecust.edu.cn
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Citation format:
LIU Xia,WU Hao,GUO Qinghua,et al.Fusibility and mineral transformation of Zhundong coal ash with high calcium andmagnesium content under high temperature gasification conditions[J].Clean Coal Technology,2023,29(7):133-139.

About Journal

  • Executive director

    China Coal Science and Industry Group Co., Ltd

  • Sponsored by

    Coal Science Research Institute Co., Ltd
    Coal Industry Clean Coal Engineering
    Technology Research Center

  • Editor in Chief

    XIE Qiang

  • Vice Editor-in-Chief

    YU Chang
    SHI Yixiang
    ZHAO Yongchun
    DUAN Linbo
    CAO Jingpei
    ZENG Jie

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    Monthly

  • ISSN

    1006-6772

  • CN

    11-3676/TD

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  • CSTPCD
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