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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental study on the thermal properties of coal during pyrolysis, oxidation, and re-oxidation
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Experimental study on the thermal properties of coal during pyrolysis, oxidation, and re-oxidation

机译:热解,氧化和重新氧化过程中煤热特性的实验研究

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摘要

During heat transfer in coal, the thermal properties parameters (thermal diffusivity, specific heat capacity, and thermal conductivity) play a key role. The thermal properties of coal during pyrolysis, oxidation, and re-oxidation were investigated by laser-flash apparatus LFA457 from 30 to 300 degrees C. Thermogravimetric (TG) experiments were conducted to analyze the variation of coal mass. The results showed that during oxidation, the thermal properties of coal presented stage characteristics. As temperature increased, the thermal diffusivity decreased first and then increased; the specific heat capacity rose first and then performed steadily; the thermal conductivity presented a slow increment first and then rapidly grew. During pyrolysis and re-oxidation, the thermal diffusivity decreased as temperature increased, while the specific heat capacity and thermal conductivity increased. The thermal diffusivity and thermal conductivity during re-oxidation were higher than those during primary oxidation, while the specific heat capacity was lower. Meanwhile, the sensitivity of thermal diffusivity to temperature during re-oxidation decreased, while the sensitivity of thermal conductivity increased compared with that during pyrolysis and oxidation. The results are meaningful for an understanding of heat transfer in coal seam during spontaneous combustion of coal and fire spread. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在煤中的热传递过程中,热性能参数(热扩散性,比热容量和导热率)起到关键作用。通过激光闪光装置LFA457从30至300摄氏度的激光闪光装置LFA457研究了热解,氧化和重新氧化过程中的热性质。进行热量标语(TG)实验以分析煤质量的变化。结果表明,在氧化过程中,煤呈现阶段特征的热性能。随着温度的增加,热扩散率首先降低,然后增加;具体的热容量首先升高,然后稳定地进行;首先呈现导热率慢速增量,然后迅速增长。在热解和重新氧化过程中,随着温度的增加,热扩散率降低,而比热容量和导热率增加。再氧化过程中的热扩散性和导热率高于初级氧化期间的热传导率高,而比热容量较低。同时,热氧化期间热扩散率与温度的敏感性降低,而导热率的敏感性与热解和氧化期间相比增加。结果对煤炭和火煤炭自燃期间煤层中的传热的理解有意义。 (c)2016 Elsevier Ltd.保留所有权利。

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