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單軸應力下煙煤氧化?自燃災變溫度

Catastrophic temperature of oxidation-spontaneous-combustion for bituminous coal under uniaxial stress

  • 摘要: 為探究不同埋藏深度裂隙煤體氧化?自燃過程在單軸應力作用下的影響規律,本文通過荷載加壓煤自燃特性實驗平臺,采用新疆硫磺溝礦區煙煤煤樣,開展了施加單軸應力在0~8 MPa下的貧氧環境程序升溫試驗。根據加壓試驗中煙煤產生氣體隨溫度的變化關系,計算了煙煤在單軸應力下升溫過程表觀活化能和耗氧速率。結合煤自燃氧化動力學和熱解參數,闡述了單軸應力下煤體由緩慢氧化到快速氧化的非線性發展過程,并基于突變理論解算出試驗條件下煙煤氧化?燃燒過程的突變溫度和臨界溫度,確定出4個特征參數:突變溫度 T_\mathrmC\mathrmO (CO表征)和 T_\mathrmH\mathrmY (耗氧速率表征),臨界溫度 T_\mathrmC\mathrmO^' (CO表征)和 T_\mathrmH\mathrmY^' (耗氧速率表征),并分析了不同特征參數隨單軸應力的變化規律。結果表明:熱解氣體濃度、表觀活化能和耗氧速率隨單軸應力增大呈先增大后減小再增大的三次函數規律(其中1.8和5.5 MPa時為臨界軸壓),1.8 MPa時表觀活化能和各項特征參數數值最低,煤氧反應速率最快,耗氧速率最高;單軸應力為5.5 MPa時耗氧速率最大,煤體新生裂隙最多;單軸應力對 T_\mathrmC\mathrmO 特征參數影響最大,煤自燃緩慢過渡到快速氧化的溫度指標,由CO濃度表征的突變溫度 T_\mathrmC\mathrmO 表征最為準確。該研究結果對于礦井不同埋深煤自燃預警和防控具有重要理論指導意義。

     

    Abstract: To explore the influence of the oxidation and spontaneous combustion process of fractured coal at different burial depths under uniaxial stress, the spontaneous combustion characteristics of coal under loading was studied within the testing device of coal spontaneous combustion and loading. Bituminous coal from the Liuhuanggou mining area in Xinjiang was selected and oxidized in the oxygen-lean environment loaded at the range of 0–8 MPa. Based on the relationship between the gas generated in the experiment and the temperature, we calculated the apparent activation energy and oxygen consumption rate of coal samples under uniaxial stress. We combined the oxidation kinetics and pyrolysis parameters of spontaneous coal combustion to describe the nonlinear development of coal from slow to rapid oxidation under uniaxial stress. Based on catastrophe theory, the catastrophic temperature and critical temperature of bituminous coal oxidation-combustion process under test conditions were calculated, and four characteristic parameters were determined: catastrophic temperature T_\mathrmC\mathrmO (characterization of CO) and T_\mathrmH\mathrmY (characterization of oxygen consumption rate), and critical temperature T_\mathrmC\mathrmO^' (characterization of CO) and T_\mathrmH\mathrmY^' (characterization of oxygen consumption rate), and analyzed the variation of different characteristic parameters with uniaxial stress. The analysis results show that the pyrolysis gas concentration, apparent activation energy, and oxygen consumption rate follow a cubic function law that first increases, then decreases, and then increases with increases in the uniaxial stress (the critical axial pressures at 1.8 and 5.5 MPa). At 1.8 MPa, the apparent activation energy and various parameter values are lowest, the oxygen reaction rate of coal is fastest, and the oxygen consumption rate is the highest. When the uniaxial stress is 5.5 MPa, the oxygen consumption rate is the highest, the greatest number of new cracks is created, and the characteristic T_\mathrmC\mathrmO parameters have the greatest impact. The temperature index of spontaneous coal combustion slowly transitions to rapid oxidation, and the catastrophic temperature T_\mathrmC\mathrmO characterized by the CO concentration is the most accurate. The research results have important theoretical guiding significance for the early warning and prevention and control of spontaneous combustion of coal at different buried depths.

     

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