金永飞, 闫旭斌, 岳宁芳, 蒋志刚. 恒温解吸附煤样低温氧化特性试验研究[J]. 煤矿安全, 2017, 48(5): 41-45.
    引用本文: 金永飞, 闫旭斌, 岳宁芳, 蒋志刚. 恒温解吸附煤样低温氧化特性试验研究[J]. 煤矿安全, 2017, 48(5): 41-45.
    JIN Yongfei, YAN Xubin, YUE Ningfang, JIANG Zhigang. Experimental Study on Low Temperature Oxidation of Desorption Coal in Constant Temperature[J]. Safety in Coal Mines, 2017, 48(5): 41-45.
    Citation: JIN Yongfei, YAN Xubin, YUE Ningfang, JIANG Zhigang. Experimental Study on Low Temperature Oxidation of Desorption Coal in Constant Temperature[J]. Safety in Coal Mines, 2017, 48(5): 41-45.

    恒温解吸附煤样低温氧化特性试验研究

    Experimental Study on Low Temperature Oxidation of Desorption Coal in Constant Temperature

    • 摘要: 为了研究解吸附煤样的自燃特性,运用煤低温氧化试验系统测试了煤样在氮气条件下恒温解吸附及解吸附再次氧化升温特性,分析了解吸附过程的气体产物规律和解吸附煤样的自燃特性参数,研究原煤和解吸附煤样的氧化、放热特性。结果表明:恒温解吸附过程中产生CO、CO2、CH4气体,CO2的气体产生量远大于CO、CH4,随着箱温温度的升高,气体产量也增大;与原煤相比,恒温30 ℃和50 ℃解吸附煤样的耗氧速率、放热强度均小于原煤;在70 ℃之前,恒温70 ℃解吸附煤样与原煤的耗氧速率和放热强度相似,在90~110 ℃之间出现交叉温度点,交叉温度点之前原煤的耗氧速率、放热强度大于恒温70 ℃解吸附煤样,之后小于原煤,说明不同恒温解吸附过程对煤的自燃特性的影响具有一定的差异。

       

      Abstract: In order to study the spontaneous combustion characteristics of the desorption coal, the low temperature oxidation test system was used to test the constant temperature desorption process and re-oxidation temperature rise of desorption of coal samples under the condition of nitrogen gas to analyze the law of gaseous product during desorption process and spontaneous combustion characteristic parameters of desorption coal samples, to understand the oxidation and heat transfer characteristics of raw coal and desorption coal. The results show that CO, CO2 and CH4 gas is produced in the process of constant temperature desorption, and the production of CO2 is much greater than that of CO and CH4. With the increase of box temperature, the production of gas is increased. Compared with the raw coal, the oxygen consumption rate and the heat release intensity of the desorption coal in constant temperature of 30 ℃ and 50 ℃ were less than that of the raw coal. The oxygen consumption rate and the heat release intensity of the raw coal were similar to that of the constant temperature 70 ℃ when the temperature was below 70 ℃. The curves of oxygen consumption rate and heat release intensity of desorption coal and raw coal from 90 ℃ to 110 ℃ had cross temperature point. The oxygen consumption rate and the heat release intensity of the raw coal were higher that of desorption coal in constant temperature of 70 ℃ while they became smaller in opposite direction. The influence of different constant temperature desorption process on the spontaneous combustion characteristics of coal has some differences.

       

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