:Influence of organic and inorganic properties of coal-shale on spontaneous combustion liability论文

:Influence of organic and inorganic properties of coal-shale on spontaneous combustion liability论文

本文主要研究内容

作者(2019)在《Influence of organic and inorganic properties of coal-shale on spontaneous combustion liability》一文中研究指出:Coal and coal-shale undergo low-temperature oxidation when exposed to air, potentially leading to spontaneous combustion. Coal-shale found in association with coal seams vary considerably in their intrinsic properties and spontaneous combustion liability index. Fourteen coal-shale samples collected from four different coal mines in Witbank Coalfield, South Africa, were experimentally investigated. The influence of coal-shale intrinsic properties and spontaneous combustion liability indices(determined by the WitsEhac Index and the Wits-CT Index) were established. The liability indices indicate relationships with the intrinsic factors and thus, identifying the major intrinsic factors affecting liability toward spontaneous combustion in these coal-shale samples. The XRF analysis indicated that the coal-shale samples are rich in Si O2, Al2O3 and Fe2O3, while the XRD showed that same coal-shale samples are generally dominated with kaolinite and quartz. The coal-shale occurred in association with medium Rank C bituminous coal and contained varying proportion of macerals. The Wits-Ehac Index was unable to reliably determine liability indices of some coal-shale samples, and hence the Wits-CT Index was developed. The results obtained from the characterisation tests may be used as a tool to predict the spontaneous combustion liability in carbonaceous material and may serve as a reference when comparing coal-shale from different coal mines.

Abstract

Coal and coal-shale undergo low-temperature oxidation when exposed to air, potentially leading to spontaneous combustion. Coal-shale found in association with coal seams vary considerably in their intrinsic properties and spontaneous combustion liability index. Fourteen coal-shale samples collected from four different coal mines in Witbank Coalfield, South Africa, were experimentally investigated. The influence of coal-shale intrinsic properties and spontaneous combustion liability indices(determined by the WitsEhac Index and the Wits-CT Index) were established. The liability indices indicate relationships with the intrinsic factors and thus, identifying the major intrinsic factors affecting liability toward spontaneous combustion in these coal-shale samples. The XRF analysis indicated that the coal-shale samples are rich in Si O2, Al2O3 and Fe2O3, while the XRD showed that same coal-shale samples are generally dominated with kaolinite and quartz. The coal-shale occurred in association with medium Rank C bituminous coal and contained varying proportion of macerals. The Wits-Ehac Index was unable to reliably determine liability indices of some coal-shale samples, and hence the Wits-CT Index was developed. The results obtained from the characterisation tests may be used as a tool to predict the spontaneous combustion liability in carbonaceous material and may serve as a reference when comparing coal-shale from different coal mines.

论文参考文献

  • [1].A new apparatus to establish the spontaneous combustion propensity of coals and coal-shales[J]. M.Onifade,B.Genc,A.Carpede.  International Journal of Mining Science and Technology.2018(04)
  • [2].Method for prevention and control of spontaneous combustion of coal seam and its application in mining field[J]. Wei Lu,Ying-Jiazi Cao,Jerry C.Tien.  International Journal of Mining Science and Technology.2017(05)
  • [3].Nonlinear characteristics of induced spontaneous combustion process of sulfide ores[J]. 潘伟,吴超,李孜军,石英,杨月平.  Journal of Central South University.2016(12)
  • [4].Development of a spontaneous combustion TARPs system based on BP neural network[J]. Wang Longkang,Ren Tingxiang,Nie Baisheng,Chen Yang,Lv Changqing,Tang Haoyang,Zhang Jufeng.  International Journal of Mining Science and Technology.2015(05)
  • [5].Dimensionless model to determine spontaneous combustion danger zone in the longwall gob[J]. ZHANG Xin-hai,DENG Jun,WEN Hu(College of Energy Science and Engineering,Xi’an University of Science and Technology,Xi’an 710054,China).  西安科技大学学报.2011(06)
  • [6].Basic theory research of coal spontaneous combustion[J]. 王继仁,孙艳秋,赵庆福,邓存宝,邓汉忠.  Journal of Coal Science & Engineering(China).2008(02)
  • [7].CFD simulation of spontaneous coal combustion in irregular patterns of goaf with multiple points of leaking air[J]. LI Zong-xiang College of Vocational, Liaoning Technical University, Fuxin, liaoning 123000, China.  Journal of China University of Mining & Technology.2008(04)
  • [8].Effects of electrical resistance on the spontaneous combustion tendency of coal and the interaction matrix concept[J]. O.S. Yildirim1) C. Sensogut2), and M.K. Gokay3) 1) Ministry of Energy, Ankara, Turkey 2) Mining Engineering Department, Dumlupinar University, Kutahya, Turkey 3) Mining Engineering Department, Selcuk University, Konya, Turkey.  Journal of University of Science and Technology Beijing(English Edition).2006(01)
  • [9].New technological partition for “three zones” spontaneous coal combustion in goaf[J]. Pan Rongkun,Cheng Yuanping,Yu Minggao,Lu Chang,Yang Ke.  International Journal of Mining Science and Technology.2013(04)
  • [10].Study on numerical simulation of spontaneous combustion prevention mechanism by nitrogen injection in goaf[J]. 李宗翔,何保,贾进章.  Journal of Coal Science & Engineering(China).2006(01)
  • 论文详细介绍

    论文作者分别是来自International Journal of Mining Science and Technology的,发表于刊物International Journal of Mining Science and Technology2019年06期论文,是一篇关于,International Journal of Mining Science and Technology2019年06期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自International Journal of Mining Science and Technology2019年06期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。

    标签:;  

    :Influence of organic and inorganic properties of coal-shale on spontaneous combustion liability论文
    下载Doc文档

    猜你喜欢