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Oxidation kinetics regularity in spontaneous combustion of gas coal 被引量:13
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作者 WANG Lanyun JIANG Shuguang +4 位作者 WU Zhengyan SHAO Hao ZHANG Weiqing CHEN Yueqin ZOU Lili 《Mining Science and Technology》 EI CAS 2010年第1期59-63,共5页
In order to investigate the oxidation kinetics of gas coal at low temperatures, we derived a rate equation of oxygen consumption during low-temperature oxidation of gas coal and deduced an E-c equation, expressing the... In order to investigate the oxidation kinetics of gas coal at low temperatures, we derived a rate equation of oxygen consumption 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 ℃ which has been experimentally validated as the key turning point during low-temperature spontaneous combustion of gas coal. 展开更多
关键词 static oxygen consumption test system reaction order active energy kinetic compensation effect isokinetic temperature
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