肖旸, 郭涛, 赵婧昱, 李青蔚, 吕慧菲. 气煤恒温氧化动力学特性研究[J]. 煤矿安全, 2019, 50(9): 51-56,60.
    引用本文: 肖旸, 郭涛, 赵婧昱, 李青蔚, 吕慧菲. 气煤恒温氧化动力学特性研究[J]. 煤矿安全, 2019, 50(9): 51-56,60.
    XIAO Yang, GUO Tao, ZHAO Jingyu, LI Qingwei, LYU Huifei. Study on Kinetics of Constant Temperature Oxidation of Gas Coal[J]. Safety in Coal Mines, 2019, 50(9): 51-56,60.
    Citation: XIAO Yang, GUO Tao, ZHAO Jingyu, LI Qingwei, LYU Huifei. Study on Kinetics of Constant Temperature Oxidation of Gas Coal[J]. Safety in Coal Mines, 2019, 50(9): 51-56,60.

    气煤恒温氧化动力学特性研究

    Study on Kinetics of Constant Temperature Oxidation of Gas Coal

    • 摘要: 为了研究煤在氧浓度为5%和21%条件下的恒温氧化特性,以山东兴隆庄矿3#煤层煤样作为研究对象,采用同步热分析仪进行实验,得出不同温度下的热分析曲线(TG、DTG、DSC),掌握煤样在升温和恒温氧化阶段的质量和放热量的变化情况,同时采用Coats-Redfern动力学方程和lnln分析法,分别计算了吸氧增重段和恒温段的活化能。结果表明:在持续升温阶段,当温度低于103.1 ℃时,氧浓度为5%和21%时均对质量变化量影响较小,但氧浓度为21%的吸热量较氧浓度为5%时减少;温度高于103.1 ℃时,21%氧浓度对煤样的质量变化、放热量、活化能的影响大于氧气浓度为5%的条件下。在恒温阶段,随着恒温温度的升高,煤样质量变化率、氧化放热量和活化能呈现增大趋势,且氧浓度为21%大于氧浓度为5%的参数;同一温度条件下,21%氧浓度比5%氧浓度的煤样质量变化更为明显。

       

      Abstract: In order to study the constant temperature oxidation characteristics of coal under the oxygen concentration of 5% and 21%, the coal sample of 3# coal seam in Xinglongzhuang Coal Mine of Shandong Province was taken as the research object, and the experiment was carried out by synchronous thermal analyzer to obtain the thermal analysis curves (TG, DTG, DSC) at different temperatures, and grasp the change of mass and heat release of coal sample in the temperature rising and constant temperature oxidation stage, simultaneously, using the Coats-Redfern dynamic equation and lnln analysis method to caculate the activation energy during the oxygen absorption and weight increase stage and the constant temperature stage. The results show that in the continuous heating stage, when the temperature is below 103.1 ℃, both the oxygen concentration of 5% and 21% have little effect on the mass change, and comparing with the oxygen concentration of 5%, the heat absorption when the oxygen concentration is 21% is reduced. When the temperature is higher than 103.1 °C, the effect of 21% oxygen concentration on the mass change, heat release and activation energy of the coal sample is greater than the oxygen concentration of 5%. In the constant temperature stage, with the increase of the constant temperature, the mass change rate, oxidation heat release and activation energy of the coal sample showed an increasing trend, and the parameter under the oxygen concentration of 21% was greater than the oxygen concentration of 5%; in the same temperature, the quality change of coal sample under the oxygen concentration of 21% is more obvious than the oxygen concentration of 5%.

       

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