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Evaluation on explosion characteristics and parameters of pulverized coal for low-quality coal: experimental study and analysis

机译:低质煤粉爆炸特性及参数评价:试验研究与分析

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Fully utilizing the energy generated by the explosion of pulverized coal will contribute to realize the clean and efficient exploitation of coal resources. The pulverized coal explosion characteristics will be a far-reaching and important task to explore. In this paper, ten kinds of low-quality coals such as high sulfur, high ash, and low metamorphic degree coals were investigated and the minimum ignition energy (MIE), lower explosion limit (LEL), and explosion intensity (EI) parameters under different particle sizes and coal powder concentration conditions were also analyzed combined with a 1.2-L Hartmann tube and a 20-L explosion sphere experimental system. Finally, the morphological characteristics of the exploded coal powder surface were evaluated by scanning electron microscopy (SEM). The results show that the particle size is positively correlated with MIE. LEL shows an inverted "U"-shaped trend with the increasing degree of coal deterioration. The low-rank coal is more flammable and explosive. The maximum pressure P-Max at the LEL concentration and maximum pressure rise rate (dP/dt)(Max) overall value is small. Here, optimum pulverized coal particle size (75 mu m) for explosive utilization of low-quality coal was determined. Within 50-225 g/m(3) of pulverized coal concentration range, the explosion intensity increases with increasing concentration. The smaller the particle size of pulverized coal, the greater the possibility of agglomeration of pulverized coal particles. The surface of the exploded coal particles produces more developed pores. They are irregularly shaped and have more rounded edges than the original coal.
机译:充分利用煤粉爆炸产生的能量,有助于实现煤炭资源的清洁高效开发。煤粉爆炸特性将是一项影响深远、意义重大的探索任务。本文研究了高硫煤、高灰分煤、低变质煤等10种劣质煤,并结合1.2 L哈特曼管和20 L爆炸球实验系统分析了不同粒径和煤粉浓度条件下的最小点火能量(MIE)、爆炸下限(LEL)和爆炸强度(EI)参数。最后,采用扫描电镜(SEM)对爆炸煤粉表面的形貌特征进行了评价。结果表明,粒径与MIE呈正相关。随着煤炭劣化程度的提高,LEL呈倒“U”型趋势。低阶煤更易燃易爆。LEL浓度下的最大压力P-Max和最大压力上升速率(dP/dt)(Max)总体值较小。在这里,确定了低质量煤爆炸利用的最佳煤粉粒径(75 μ m)。在煤粉浓度范围50-225 g/m(3)范围内,爆炸强度随浓度的增加而增加。煤粉粒径越小,煤粉颗粒结块的可能性越大。爆炸的煤颗粒表面产生更发达的孔隙。它们的形状不规则,边缘比原来的煤更圆润。

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