Oxidation kinetics regularity in spontaneous combustion of gas coal

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WANG Lanyun JIANG Shuguang WU Zhengyan SHAO Hao ZHANG Weiqing CHEN Yueqin ZOU Lili State Key Laboratory of Coal Resources and Mine Safety China University of Mining Technology Xuzhou China School of Safety Engineering China University of Mining Technology Xuzhou China [1 ,2 ,1 ,2 ,2 ,1 ,2 ,1 ,2 ,1 ,2 ,1 ,2 ,1 ,221008 ,2 ,221008 ]
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In order to investigate the oxidation kinetics of gas coal at low temperatures, we derived a rate equation of oxygen con-sumption during low-temperature oxidation of gas coal and deduced an E-c equation, expressing the relation between active energy E and oxygen concentration c. The reaction order n and active energy E were calculated with this equation based on experiments of static oxygen consumption tests. In addition, we proved the rationality of the E-c equation using a kinetic compensation effect and obtained the isokinetic temperature Tc. The results show that: 1) the gas coal oxidizes easily with increasing temperature and the oxidation tends to be spontaneous at higher temperatures; 2) the oxygen concentration c affects oxygen consumption very much at lower temperatures but has only a small effect at higher temperatures; 3) the isokinetic temperature Tc was 127 °C which has been experimentally validated as the key turning point during low-temperature spontaneous combustion of gas coal.
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页码:59 / 63
页数:5
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