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Effects of the coalification jump on the petrophysical properties of lignite, subbituminous and high-volatile bituminous coals

机译:煤化跃迁对褐煤,次烟煤和高挥发性烟煤的岩石物性的影响

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摘要

The evolution of the petrophysical properties (porosity/permeability) of lignite, subbituminous and high-volatile bituminous coals (LSBC) and the effects of the first coalification jump on the pore-cleat physical properties are still poorly understood. We investigated the pore-cleat heterogeneity, volume, aperture, connectivity and pore-contributed porosity/permeability with increasing coal ranks based on measurements obtained by photometer microscopy, mercury intrusion porosimetry and nuclear magnetic resonance. The results show that the values of adsorption-pore fractals (D-A) < seepage-pore fractals (D-S) < cleat fractals (D-C), which indicates that the heterogeneity is in the order adsorption-pores < seepage-pores < cleats. The first coalification jump makes abrupt changes in the pore volume, efficiency of mercury withdrawal and coal cleat/total porosity, and results from the generation of hydrocarbons, asphalt and cleats in vitrinite. Additionally, coal porosity displays a "U" shaped trend with increasing coal rank. Cleat-contributed porosity also exhibits a "U" shaped trend, with similar to 95% for 0.3 R-o,R- m%, similar to 80% for 0.6 R-o,R- m% and similar to 95% for 0.9 R-o,R- m%. The pore-contributed porosity decreases with increasing coal rank, which may result from pore space evolution by mechanical and chemical compaction. It is found that coal permeability has no obvious trend with increasing coal ranks, possibly related to the degree of cleat development. The cleat characteristics, including the aperture, length, frequency and connectivity, have a significant influence on LSBC porosity and permeability. However, certain subbituminous coals have pore-contributed permeabilities of 35-79%, which demonstrates that the influence on coal permeability of seepage-pores (providing methane flow pathway) should not be ignored. (C) 2017 Elsevier Ltd. All rights reserved.
机译:褐煤,次烟煤和高挥发性烟煤(LSBC)的岩石物理性质(孔隙度/渗透率)的演变以及第一次煤化跃迁对孔隙剪切物理性质的影响仍然知之甚少。我们根据光度计显微镜,压汞法和核磁共振获得的测量结果,研究了煤级越多,孔隙-孔隙的非均质性,体积,孔隙度,连通性和孔隙贡献的孔隙度/渗透率。结果表明,吸附孔分形(D-A)<渗流孔分形(D-S)<夹板分形(D-C)的值,表明异质性按吸附孔<渗流孔<夹板的顺序排列。第一次碳化跃迁使孔隙体积,汞脱除效率和煤夹板/总孔隙度突然变化,这是由于在镜质石中产生了碳氢化合物,沥青和夹板所致。另外,随着煤等级的增加,煤的孔隙率显示出“ U”形的趋势。夹板促成的孔隙度也呈现“ U”形趋势,对于0.3 Ro,R- m%约为95%,对于0.6 Ro,R-m%约为80%,对于0.9 Ro,R- m约为95% m%。孔隙贡献的孔隙度随煤等级的增加而降低,这可能是由于机械和化学压实作用引起的孔隙空间演化所致。研究发现,随着煤阶的增加,煤的渗透率没有明显的变化趋势,可能与煤泥的发育程度有关。防滑板的特征(包括孔径,长度,频率和连通性)对LSBC的孔隙率和渗透率有重要影响。但是,某些次烟煤的孔隙贡献渗透率为35-79%,这表明不应忽略对渗流孔(提供甲烷流路)的煤渗透率的影响。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Fuel》 |2017年第1期|219-228|共10页
  • 作者单位

    China Univ Geosci, Sch Energy Resources, Coal Reservoir Lab, Natl Engn Res Ctr CBM Dev & Utilizat, Beijing 100083, Peoples R China;

    China Univ Geosci, Sch Energy Resources, Coal Reservoir Lab, Natl Engn Res Ctr CBM Dev & Utilizat, Beijing 100083, Peoples R China;

    China Univ Geosci, Sch Energy Resources, Coal Reservoir Lab, Natl Engn Res Ctr CBM Dev & Utilizat, Beijing 100083, Peoples R China;

    China Univ Geosci, Sch Energy Resources, Coal Reservoir Lab, Natl Engn Res Ctr CBM Dev & Utilizat, Beijing 100083, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    First coalification jump; Pore-cleat; Porosity; Permeability; Coalbed methane;

    机译:第一次煤化跃迁;孔隙分裂;孔隙度;渗透率;煤层气;

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