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地热驱动下焦煤源DOM的释放与分子演化特征研究

Geothermal effects on the release and molecular evolution of dissolved organic matter from coking coal

  • 摘要: 煤源溶解性有机质(DOM)在地下水碳循环及污染物扩散中具有重要调控作用。随着煤炭开采逐步向深部延伸,深部热环境下焦煤源DOM的释放行为尚缺乏系统研究。以焦煤为研究对象,构建25、50℃的煤-水微宇宙反应体系,结合溶解性有机碳(DOC)测定、三维荧光光谱(EEM)及傅里叶变换离子回旋共振质谱(FT-ICR MS),系统分析了焦煤源DOM的光学特征与分子结构组成。结果表明,高温显著促进了DOM的释放和复杂化,50℃条件下DOC浓度较25℃时提高43%,EEM向类胡敏结构转化,FT-ICR MS揭示了DOM分子式以CHO、CHON类为主、结构类型集中于木质素、脂类和芳香缩合类区域,整体特征趋向于芳香性与极性增强。研究结果揭示了地温条件对焦煤DOM释放行为与分子结构特征的调控作用,为矿井水资源化利用、有机质迁移风险评估及煤矿区地下碳迁移机制研究提供理论基础。

     

    Abstract: Coal-derived dissolved organic matter (Coal-DOM) plays a critical role in subsurface carbon migration and pollutant transport in groundwater systems. However, its release behavior under deep subsurface thermal conditions remains poorly understood,despite the increasing trend of coal mining at greater depths. In this study,coking coal was used to establish coal-water microcosm systems at 25 ℃ and 50 ℃. Dissolved organic carbon (DOC) analysis,excitation-emission matrix (EEM) spectroscopy,and Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) were employed to systematically characterize the optical properties and molecular composition of JM-DOM. The results showed that elevated temperature significantly promoted DOM release and molecular complexity. At 50 ℃, the DOC concentration increased by 43% compared with that at 25 ℃. EEM spectra shifted toward humic-like components,while FT-ICR MS revealed that DOM was dominated by CHO and CHON formulas,with structural types mainly distributed in lignin-like,lipid-like,and condensed aromatic-like regions. Overall,DOM exhibited enhanced aromaticity and polarity under higher temperature. These findings highlight the regulatory role of geothermal conditions on the release behavior and molecular characteristics of Coal-DOM,providing a theoretical basis for the resource utilization of mine water,risk assessment of organic matter migration,and investigation of subsurface carbon cycling in coal mining areas.

     

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