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Hot-Spot Heat Generation in Coal-Shale Deposits

机译:页岩矿床中的热点生热

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摘要

Some consequences of a known but insufficiently studied phenomenon, local heat generation in solid caustobioliths under near-surface conditions, when temperatures can be sufficient for the pyrolysis of organic matter (OM), the heating of underground waters, and even the melting of individual mineral components, were considered. A specific structural-deformation geofiltration medium (with the sections of thermally changed rocks and polygenetic breccias) is formed in the sections of the heating and burning (complete or partial) of caustobioliths, thermal conversion, and the deformations of host rock deposits. It was noted that increased permeability appears in not only thermally converted (pyrometamorphic) but also unchanged deposits (due to sagging, splitting, caving, and associated explosive degassing). The concepts of the possibility of these bodies to contain hydrocarbon components (of different genesis) at different depths. The results obtained can be useful in the forecast of the anthropogenic destabilization of the interior of the Earth due to waste storage and burial and the underground gasification of solid caustobioliths and in the studies of shale hydrocarbons.
机译:已知但尚未充分研究的现象的某些后果,即当温度足以使有机物热解(OM),加热地下水,甚至使单个矿物融化时,在接近地表的条件下,固态焦生物石中会局部发热。组件,已被考虑。在苛性生物岩的加热和燃烧(全部或部分),热转化和主岩沉积物变形的部分中,形成了一种特殊的结构变形地球过滤介质(具有热变质岩石和多基因角砾岩的部分)。注意到增加的渗透性不仅出现在热转化(假晶形)中,而且出现在未改变的沉积物中(由于下垂,分裂,崩落和相关的爆炸性脱气)。这些物体可能在不同深度包含(不同成因的)烃组分的可能性的概念。所获得的结果可用于预测由于废物存储和埋葬而造成的地球内部人为失稳以及固体焦生物岩的地下气化以及页岩碳氢化合物的研究。

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  • 来源
    《Solid Fuel Chemistry 》 |2017年第4期| 216-223| 共8页
  • 作者

    Yusupova I. F.; Abukova L. A.;

  • 作者单位

    Russian Acad Sci, Oil & Gas Res Inst, Moscow 119991, Russia|All Russia Res Inst Hydrogeol & Engn Geol VSEGING, Noginskii Raion 142452, Moscow Oblast, Russia;

    Russian Acad Sci, Oil & Gas Res Inst, Moscow 119991, Russia;

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