煤炭工程 ›› 2020, Vol. 52 ›› Issue (10): 143-148.doi: 10.11799/ce202010028

• 研究探讨 • 上一篇    下一篇

粒径对煤低温氧化阶段表观活化能影响试验研究

翟小伟,成倬,徐启飞,余林,尚博,宋波波   

  1. 西安科技大学
  • 收稿日期:2019-08-08 修回日期:2019-10-24 出版日期:2020-10-16 发布日期:2020-12-11
  • 通讯作者: 成倬 E-mail:274496039@qq.com

Experimental study on the effect of particle size on apparent activation energy of coal at low temperature oxidation stage

  • Received:2019-08-08 Revised:2019-10-24 Online:2020-10-16 Published:2020-12-11

摘要: 为探究不同粒径对煤自燃表观活化能的影响,对青龙煤矿三个煤层的不同粒径煤样进行程序升温试验,分析其耗氧速率、CO和C2H4产生规律,得到不同煤样的临界温度点和干裂温度点,并据此将煤低温氧化过程分为3个阶段。通过建立的基于耗氧速率的阿伦尼乌斯公式对试验数据进行处理,得出各煤样不同阶段的表观活化能和指前因子。结果表明:处于相同变化阶段的煤样表观活化能随粒径的增大而增大|对相同粒径煤样而言,若S1阶段的指前因子变化较小,其表观活化能随反应的进行而增大,若S1阶段的指前因子变化较大,则其S1阶段表观活化能大于S2阶段。5~7mm粒径作为临界粒径,其S1、S2阶段表观活化能相较大于其他粒径。混合粒径煤样各阶段的表观活化能较小。对比各组煤样的表观活化能可知,在相同的情况下,18#煤层发生自燃的难度相对较大,16#煤层次之,17#煤层难度相对较小。

关键词: 煤自燃, 低温氧化, 表观活化能, 指前因子, 程序升温

Abstract: In order to explore the effect of particle size of different coal seams on the apparent activation energy of coal spontaneous combustion, combined with the coal spontaneous combustion program temperature system, the programmed temperature rise test was carried out on coal samples of different sizes in three coal seams of Qinglong Coal Mine. At the same time, the oxygen consumption rate, CO and C2H4 generation law of each group of coal samples are analyzed, and the critical temperature point and dry cracking temperature point of different coal samples can be obtained. According to the result, the low temperature oxidation process of coal is divided into three stages. The apparent activation energy and pre-exponential factors of different stages of each coal sample can be obtained by processing the experimental data by the established oxygen-dependent rate Arrhenius formula. The results show that for the coal samples in the same stage of change, the apparent activation energy will increase with the increase of the particle size. For coal samples of the same particle size, if the pre-exponential factor of the S1 phase changes little, the apparent activation energy will gradually increase as the reaction progresses;If the pre-exponential factor of the S1 phase changes greatly, the apparent activation energy of the S1 phase are greater than the energy of the S2 phase. The 5~7mm particle size is used as the critical particle size, and the apparent activation energy of the S1 and S2 phases are relatively larger than the apparent activation energy of other particle sizes. Coal samples with mixed particle sizes have small apparent activation energy at each stage. By comparing and analyzing the apparent activation energy of coal samples from three coal seams, it can be seen that, under the same condition the difficulty of spontaneous combustion in 17# coal seam is relatively large, followed by 16# coal seam and 18# coal seam.

中图分类号: