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Mechanism of Ignition of Single Coal Particle: Effect of Heating Rate on Particle-Size Dependence of Ignition Temperature

机译:单个煤粉着火机理:加热速率对着火温度粒度依赖性的影响

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References(14) Cited-By(6) Experimental work has been undertaken using a radiation method to ignite single coal particles and to study their ignition behaviour. Particle sizes used were in the range of 600 μm–1800 μm. Effect of particle size on ignition temperature and ignition time was investigated for three types of coal under conditions of constant heating rates. Results show that under these conditions, ignition temperature increases with particle size contrary to the widely reported trend of decreasing ignition temperature with increasing particle size. It was also found that ignition temperature increases with heating rate. When particles of different sizes are heated by the same power, smaller particles experience higher heating rates than larger ones. The effect of particle size on ignition time was found to be the same as reported by other researchers where ignition time increases with particle size.
机译:参考文献(14)Cyted-By(6)已经进行了使用辐射方法点燃单个煤颗粒并研究其着火行为的实验工作。使用的颗粒大小在600 μm–1800μm的范围内。在恒定加热速率的条件下,研究了三种煤种的粒度对着火温度和着火时间的影响。结果表明,在这些条件下,点火温度随颗粒尺寸而增加,这与广泛报道的随着颗粒尺寸增加而降低点火温度的趋势相反。还发现点火温度随加热速率增加。当以相同的功率加热不同尺寸的颗粒时,较小的颗粒比较大的颗粒具有更高的加热速率。发现粒径对点火时间的影响与其他研究人员所报告的相同,后者的研究结果是点火时间随粒径增加而增加。

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