Tingxiang Chu, Chunxi Wu, Boning Jiang, Tianru Zhu, Xi Zhang, Yuexia Chen, Lei Li
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引用次数: 0
摘要
随着开采深度的增加,煤受到地应力和采动应力的影响越来越大。为了研究不同应力条件下煤自燃特性及活化特征,利用新研制的应力加载破碎煤多场加载渗透性实验装置,进行了6种不同应力条件下的低温氧化实验。实验结果表明,随着轴向应力从0 ~ 15 MPa的增加,CO、CO2、C2H4的生成量和耗氧量均先呈增加趋势,在9 MPa时达到最大值,然后呈下降趋势。在轴向应力从0 ~ 15 MPa逐渐增大的i(20℃< T < 80℃)、II(90℃< T < 120℃)和III(120℃< T < 150℃)3个温度阶段,表观活化能(AAE)均呈现先减小后相对增大的趋势。在9 MPa下,3个温度阶段的AAE分别达到最小值9.60、60.57和19.61 kJ mol−1。结合承压破碎煤低温氧化过程中的产气、耗氧量及AAE变化特征,发现应力加载在一定程度上促进了CSC的发生。
Low-Temperature Oxidation Characteristics and Apparent Activation Energy of Pressurized Crushed Coal Under Stress Loading
With increasing mining depth, coal is more affected by ground and mining stresses. In order to study the characteristics and activation features of coal spontaneous combustion (CSC) under different stress conditions, experiments on low-temperature oxidation under six different stress conditions were conducted using a newly developed multi-field loading and permeability experimental device for stress-loaded and crushed coal. The experimental results showed that, with increase in axial stress from 0 to 15 MPa, the amounts of CO, CO2, C2H4 generated and the rate of oxygen consumption all first followed an increasing trend, reached maximum at 9 MPa, and then a decreasing trend. In three temperature stages—I (20 ℃ < T < 80 ℃), II (90 ℃ < T < 120 ℃), and III (120 ℃ < T < 150 ℃)—all under increasing axial stress from 0 to 15 MPa, the apparent activation energy (AAE) followed a decreasing and then relatively increasing trend. The AAE in all three temperature stages reached a minimum of 9.60 kJ mol−1, 60.57 kJ mol−1, and 19.61 kJ mol−1, respectively, at 9 MPa. Combining the characteristics of gas generation, oxygen consumption, and changes in AAE during the low-temperature oxidation of stress-bearing crushed coal, it was found that stress loading to a certain extent promotes the occurrence of CSC.
期刊介绍:
This journal publishes quantitative studies of natural (mainly but not limited to mineral) resources exploration, evaluation and exploitation, including environmental and risk-related aspects. Typical articles use geoscientific data or analyses to assess, test, or compare resource-related aspects. NRR covers a wide variety of resources including minerals, coal, hydrocarbon, geothermal, water, and vegetation. Case studies are welcome.