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Spontaneous combustion liability of coal and coal-shale: a review of prediction methods

机译:煤和页岩的自燃性:预测方法综述

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This study presents a review of the various methods to predict the spontaneous combustion liability of coal and coal-shale.The relative propensity of coal to undergo self-heating can be established by different methods.These methods are well established in their usage,but the fact that no particular test method has become a standard to predict the spontaneous combustion liability indicates that doubt still exists as to the validity of all of them.The underlying principle of all the tests is that the more readily the coal undergoes exothermic oxidation,the more liable it is to self-heat.Comprehensive studies that centres on the international position on research being conducted by academics,different research institutes and industries on spontaneous combustion of coal and coal mine fires were evaluated.Relationships between the geochemical analysis (proximate and ultimate analysis,forms of sulphur,petrographic properties,X-ray diffraction and X-ray fluorescence) and spontaneous combustion testing methods (numerical and experimental approaches) used to predict the spontaneous combustion liability of coal were reviewed.The combination of these tests provides a better understanding of the mechanism that controls the spontaneous combustion phenomena.However,irrespective of the extensive studies that have been conducted over time,spontaneous combustion is still a major problem in the coal value chain.
机译:本研究对预测煤和页岩自燃性的各种方法进行了综述。可以通过不同的方法来确定煤自热的相对倾向。尚未有任何特定的测试方法成为预测自然燃烧能力的标准这一事实表明,人们对所有这些方法的有效性仍存在怀疑。所有测试的基本原理是,煤越容易发生放热氧化,则越容易发生放热氧化。可能是自热的。综合研究以学者,不同研究机构和行业在煤炭自燃和煤矿火灾自发进行的研究在国际上的地位为中心进行了评估。地球化学分析之间的关系(最接近和最终分析) ,硫的形式,岩石学性质,X射线衍射和X射线荧光)和自发燃烧综述了用于预测煤自燃性的测试方法(数值和实验方法)。这些测试的结合使人们更好地了解了控制自燃现象的机理。然而,无论进行了广泛的研究随着时间的推移,自燃仍然是煤炭价值链中的主要问题。

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  • 来源
    《国际煤炭科学技术学报(英文)》 |2019年第002期|151-168|共18页
  • 作者

    M.Onifade; B.Genc;

  • 作者单位

    The School of Mining Engineering, University of the Witwatersrand, P.O.WITS, Johannesburg 2050, South Africa;

    The School of Mining Engineering, University of the Witwatersrand, P.O.WITS, Johannesburg 2050, South Africa;

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