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Experimental Determination of Self-Ignition Delay of Mixtures of Methane with Light Alkanes

机译:轻质烷烃混合物自燃延迟的实验测定

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摘要

This paper describes the study of self-ignition delays of stoichiometric binary, triple, and multicomponent mixtures of methane with the addition of up to 10% of normal C-2-C-6 alkanes in air at temperatures of 523-1000 K and a pressure of 1 atm. It is determined that the additives of all C-2-C-6 alkanes can reduce the self-ignition delay of methane already at a level of 1%. With the addition of 10%, the ignition delay of this mixture virtually becomes equal to that of the added alkane itself. In binary mixtures with methane, ethane additives have an accelerating effect that is no lower than that of propane and butane additives. In triple and more complex mixtures, the self-ignition delay is determined by the total sum of added alkanes and is virtually independent within the framework of a determination error on their particular ratio.
机译:本文介绍了甲烷的化学计量二元,三重和多组分混合物的自燃延迟的研究,在523-1000 k和a的温度下在空气中加入高达10%的正常C-2-C-6烷烃。 1 atm的压力。 确定所有C-2-C-6烷烃的添加剂可以降低甲烷的自燃延迟,甲烷已经在1%的水平。 随着10%的加入,该混合物的点火延迟几乎变得等于添加的烷烃本身的点火延迟。 在甲烷的二元混合物中,乙烷添加剂具有不低于丙烷和丁烷添加剂的加速效果。 在三倍和更复杂的混合物中,自点火延迟由添加的烷烃的总和确定,并且在其特定比率的确定误差框架内实际上是独立的。

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