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Effects of temperature gradient and particle size on self-ignition temperature of low-rank coal excavated from inner Mongolia China

机译:温度梯度和粒径对内蒙古地区低等级煤自燃温度的影响

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摘要

This study investigates the effects of temperature gradient and coal particle size on the critical self-ignition temperature TCSIT of a coal pile packed with low-rank coal using the wire-mesh basket test to estimate TCSIT based on the Frank–Kamenetskii equation. The values of TCSIT, the temperature gradient and the apparent activation energy of different coal pile volumes packed with coal particles of different sizes are measured. The supercriticality or subcriticality of the coal is assessed using a non-dimensional index IHR based on the temperature gradient at the temperature cross-point between coal and ambient temperatures for coal piles with various volumes and particle sizes. The critical value IHRC at the boundary between supercriticality and subcriticality is determined as a function of pile volume. The coal status of supercritical or subcritical can be separated by critical value of IHR as a function of pile volume. Quantitative effects of coal particle size on TCSIT of coal piles are measured for constant pile volume. It can be concluded that a pile packed with smaller coal particles is more likely to undergo spontaneous combustion, while the chemical activation energy is not sensitive to coal particle size. Finally, the effect of coal particle size on TCSIT is represented by the inclusion of an extra term in the equation giving TCSIT for a coal pile.
机译:这项研究使用钢丝网篮试验基于Frank-Kamenetskii方程估算TCSIT,研究了温度梯度和煤粒尺寸对装有低阶煤的煤堆的临界自燃温度TCSIT的影响。测量了不同体积的煤堆填充不同粒径的煤的TCSIT值,温度梯度和表观活化能。对于不同体积和粒径的煤堆,使用无量纲指数IHR基于煤与环境温度之间的温度交点处的温度梯度来评估煤的超临界或亚临界。确定超临界与次临界之间的边界处的临界值IHRC作为桩体积的函数。超临界或亚临界的煤状态可以通过IHR的临界值作为桩体积的函数来区分。对于恒定的堆体积,测量了煤颗粒尺寸对煤堆的TCSIT的定量影响。可以得出结论,装满较小煤颗粒的桩更容易自燃,而化学活化能对煤颗粒尺寸不敏感。最后,在给出煤堆TCSIT的方程式中包括一个额外的项来表示煤粉粒度对TCSIT的影响。

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