139 / 2023-06-29 12:21:35
Study on the Underground Coal Fire-Surface Carbon Flux Response Mechanism under Complex Conditions
coal spontaneous combustion; CO2 flux; goaf; gas emission
全文录用
Yongjun Wang / Liaoning Technical University
Hemeng Zhang / Liaoning Technical University
Qian Zheng / Liaoning Technical University
Jiaxing Cai / CHN Energy Shendong Coal Grop
Jinyu Li / Liaoning Technical University
Xiaoming Zhang / Liaoning Technical University
Yuichi Sugai / Kyushu University
Kyuro Sasaki / Institute for Future Engineering (Tokyo Japan)
Based on the CCS/CCUS surface leakage monitoring method, this study takes the compound coal left spontaneous combustion area formed by the Haizhou Open pit Mine and the surrounding underground goaf as the object, and uses the intelligent Soil gas flux monitoring system to conduct seasonal, long-term, multi measurement point continuous monitoring of the CO2 gas flux on the overlying surface. The dynamic gas chamber method, statistical quantification method, Spatial analysis and other experimental methods are used to study the influence of residual coal combustion degree, formation fractures, environmental wind speed, soil moisture and other factors on the CO2 release, migration and surface response characteristics of underground coal fire, and then quantify the monitoring of regional CO2 emission. The results show that the burning of underground residual coal is the fundamental factor that triggers the abnormal response of surface carbon, and the carbon flux is positively correlated with the distribution of surface temperature caused by underground coal fires; Cracks are the main factor affecting the distribution of surface carbon flux, and wind speed is generally positively correlated with surface CO2 flux. The response of surface carbon flux caused by underground coal combustion is generally not affected by soil moisture, but the surge in soil moisture can cause significant fluctuations in surface carbon flux. The conclusion of this study has important practical significance for the control of natural fires, the prevention of geological disasters, the governance of living environments, and the suppression of greenhouse gas emission.
重要日期
  • 会议日期

    08月18日

    2023

    08月20日

    2023

  • 07月07日 2023

    初稿截稿日期

  • 08月20日 2023

    注册截止日期

主办单位
International Committee of Mine Safety Science and Engineering
承办单位
Heilongjiang University of Science and Technology
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