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首页> 外文期刊>Journal of Hazardous Materials >The upper explosion limit of lower alkanes and alkenes in air at elevated pressures and temperatures
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The upper explosion limit of lower alkanes and alkenes in air at elevated pressures and temperatures

机译:高压和高温下空气中低级烷烃和烯烃的爆炸上限

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The upper explosion limit (UEL) of ethane-air, propane-air, n-butane-air, ethylene-air and propylene-air mixtures is determined experimentally at initial pressures up to 30 bar and temperatures up to 250℃. The experiments are performed in a closed spherical vessel with an internal diameter of 200 mm. The mixtures are ignited by fusing a coiled tungsten wire, placed at the centre of the vessel, by electric current. Flame propagation is said to have taken place if there is a pressure rise of at least 1% of the initial pressure after ignition of the mixture. In the pressure-temperature range investigated, a linear dependence of UEL on temperature and a bilinear dependence on pressure are found except in the vicinity of the auto-ignition range. A comparison of the UEL data of the lower alkanes shows that the UEL expressed as equivalence ratio (the actual fuel/air ratio divided by the stoichiometric fuel/air ratio) increases with increasing carbon number in the homologous series of alkanes.
机译:乙烷-空气,丙烷-空气,正丁烷-空气,乙烯-空气和丙烯-空气混合物的爆炸上限(UEL)由实验确定,初始压力最高为30 bar,温度最高为250℃。实验在内径为200 mm的密闭球形容器中进行。通过用电流熔化放置在容器中心的盘绕钨丝来点燃混合物。如果混合物着火后压力升高至少为初始压力的1%,则据说发生了火焰蔓延。在研究的压力-温度范围内,除了自燃范围附近,发现UEL对温度的线性依赖性和对压力的双线性依赖性。低级烷烃的UEL数据的比较表明,当量链​​烷烃的同源系列中的碳数增加时,用当量比表示的UEL(实际燃料/空气比除以化学计量的燃料/空气比)会增加。

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