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Macromolecular Structure Changes of Tectonically Deformed Coal: Evidence from Coal Pyrolysis, ~(13)C NMR, and XRD Experiments

机译:大分子结构的构造变形煤:来自煤热解的证据,〜(13)C NMR和XRD实验

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摘要

Research on tectonically deformed coal (TDC) is of significance to gas outburst prevention and coalbed methane development. Despite numerous works focusing on the structural characteristics of TDC, the influence of tectonic stress on coalification is a long-term controversial issue. In this study, the X-ray diffraction (XRD), C-13 solid-state nuclear magnetic resonance (NMR), and coal pyrolysis techniques were applied to compare the macromolecular structural characteristics and gas generation properties between weak TDC (WTDC) and strong TDC (STDC). The results show that the strong tectonic stress obviously promotes the evolution of coalification in advance. The basic structural unit (BSU) of the WTDC and STDC both increases with increasing coal rank, but the d((002)) values of the STDC are usually less than those of the WTDC, and the L-c, L-a, and N values of the STDC are larger than those of the WTDC. Furthermore, the impact of tectonic deformation on the BSU of coals becomes weaker as the coal rank increases. The aromaticity in coals is accelerating and increasing with the enhancement of deformation degree. The fractions of protonated aromatic carbon (f(H a)) and aromaticity (f(a)) in the STDC are higher than those in the WTDC of the same coal rank, while the relative contents of the oxygen-substituted aromatic carbon (f(a)(O)) aliphatic-substituted aromatic carbon (f(a)(S)), and aliphaticity (f(al)) in the STDC are lower than those in the WTDC. The gas generation potential of the STDC is lower than that of the WTDC of the same coal rank from the coal pyrolysis data. Furthermore, with an increase of temperature, the difference in the generation capacity of CH4 and H-2 between STDC and WTDC increases. The research results help us to illustrate the effect of tectonic stress on coalification and supply guidance on the prevention and management of gas outburst disasters.
机译:构造变形煤(TDC)对煤气突出预防和煤层气发育具有重要意义。尽管众多作品,专注于TDC的结构特征,但构造压力对聚会的影响是一个长期的争议问题。在该研究中,应用X射线衍射(XRD),C-13固态核磁共振(NMR)和煤热解技术,以比较弱TDC(WTDC)和强大的大分子结构特征和气体发生性能TDC(STDC)。结果表明,强大的构造压力明显促进了加盟的演变。 WTDC和STDC的基本结构单元(BSU)随着煤级的增加而增加,但STDC的D((002))值通常小于WTDC的D(002))和LC,LA和N值STDC大于WTDC的STDC。此外,随着煤级的增加,构造变形对煤的BSU的影响变弱。随着变形程度的增强,煤中的芳香性正在加速和增加。 STDC中质子化芳族碳(F(H a))和芳香性(F(a))的级分高于同一煤等级的WTDC中的芳香性(F(a)),而氧取代芳族碳的相对含量(f (a)(o))STDC中的脂族取代的芳族碳(F(a))和脂族(F(Al))低于WTDC中的脂族(F(Al))。 STDC的气体产生电位低于来自煤热解数据的相同煤等级的WTDC的气体产生电位。此外,随着温度的增加,STDC和WTDC之间的CH4和H-2的产生容量的差异增加。研究成果有助于我们说明构造压力对加盟的影响和对防空和管理燃气突出灾害的影响。

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  • 来源
    《Energy & fuels》 |2021年第10期|8711-8722|共12页
  • 作者单位

    Xinjiang Univ Xinjiang Key Lab Geodynam Proc & Metallogen Progn Urumqi 830047 Xinjiang Peoples R China;

    Henan Polytech Univ Sch Resources & Environm Jiaozuo 454000 Henan Peoples R China;

    Xinjiang Univ Xinjiang Key Lab Geodynam Proc & Metallogen Progn Urumqi 830047 Xinjiang Peoples R China;

    Xinjiang Univ Xinjiang Key Lab Geodynam Proc & Metallogen Progn Urumqi 830047 Xinjiang Peoples R China|Henan Polytech Univ Sch Resources & Environm Jiaozuo 454000 Henan Peoples R China;

    Henan Polytech Univ Sch Resources & Environm Jiaozuo 454000 Henan Peoples R China;

    Henan Polytech Univ Sch Resources & Environm Jiaozuo 454000 Henan Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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