宋申, 邬剑明, 王俊峰, 王涌宇, 郭亚军. 水浸煤二次氧化特性研究[J]. 煤矿安全, 2017, 48(7): 32-35.
    引用本文: 宋申, 邬剑明, 王俊峰, 王涌宇, 郭亚军. 水浸煤二次氧化特性研究[J]. 煤矿安全, 2017, 48(7): 32-35.
    SONG Shen, WU Jianming, WANG Junfeng, WANG Yongyu, GUO Yajun. Study on Secondary Oxidation Characteristics of Soaked Coal[J]. Safety in Coal Mines, 2017, 48(7): 32-35.
    Citation: SONG Shen, WU Jianming, WANG Junfeng, WANG Yongyu, GUO Yajun. Study on Secondary Oxidation Characteristics of Soaked Coal[J]. Safety in Coal Mines, 2017, 48(7): 32-35.

    水浸煤二次氧化特性研究

    Study on Secondary Oxidation Characteristics of Soaked Coal

    • 摘要: 为了研究水浸煤二次氧化特性参数,对实验的6种煤样进行程序升温实验,检测其比表面积及孔径并进行分析。结果表明:预氧化后的水浸煤较预氧化后的原煤二次氧化气体生成速率及放热强度均有所增大,并且随着预氧化的温度升高,气体生成速率及放热强度也有所增大;预氧化后的水浸煤活化能较预氧化后的原煤和未氧化的原煤均低,随着预氧化温度的升高,活化能也有所降低,导致其自燃倾向性增加;水浸煤比表面积在同等条件下远大于原煤,随着预氧化温度的提高,原煤和水浸煤的比表面积均呈现下降趋势;二次氧化对实验所用的原煤、水浸煤的最可几孔径几乎没有影响,均为4 nm,在最可几孔径下,煤的微分孔体积/平均孔径随着预氧化的温度升高而逐渐降低。

       

      Abstract: In order to study the secondary oxidation characteristics of soaked coal, 6 kinds of coal samples were used for temperature rising programmed test and specific surface area, pore size and analyzed, the experimental results show that the formation rate and exothermic intensity of secondary oxidation gases of the pre-oxidized soaked coal are higher than that of the pre-oxidized raw coal, and the gas production rate and the heat liberation intensity increase with the increase of the pre-oxidation temperature; the activation energy of soaked coal after pre-oxidation is lower than that of the pre-oxidized raw coal and the un-oxidized coal. With the increase of the pre-oxidation temperature, the activation energy is also reduced, which leads to the increase of spontaneous combustion tendency; the specific surface area of raw coal and soaked coal is decreased with the increase of the pre-oxidation temperature, and the secondary oxidation has little effect on the most probable pore size of the raw coal and soaked coal used in the experiment, which are both about 4 nm. However, the differential pore volume / average pore size of the coal gradually decreases with the increases of pre-oxidation temperature at the same most probable pore size.

       

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