Experimental investigation on the impact of water immersion time and particle size on the ignition characteristics of coal dust

IF 3.6 3区 工程技术 Q2 ENGINEERING, CHEMICAL Journal of Loss Prevention in The Process Industries Pub Date : 2024-08-23 DOI:10.1016/j.jlp.2024.105411
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Abstract

After drying, water-immersed coal is more prone to spontaneous combustion than raw coal. However, the influence mechanisms of particle size and water immersion duration on the physicochemical properties of coal dust, as well as the explosion and fire hazards of water-immersed coal dust, have not been sufficiently investigated. In this study, two particle sizes of coal dust were selected, and experiments were conducted using the Godbert-Greenwald furnace, Hartmann tube, Muffle furnace, and Fourier Transform Infrared Spectrometer. The study investigated the impact of different water immersion times, dust particle sizes, and dust concentrations on the sensitivity of coal dust fires and explosions, analyzed the process of functional group changes in coal dust particles in water and other mechanisms of transformation. The results indicated that the water immersion process increased the number of active functional groups on the surface of coal dust, significantly reducing the Minimum Ignition Temperature (MIT) and Minimum Ignition Energy (MIE) values for different samples, and also enhancing the ignition sensitivity and peak temperature of coal dust layer fires. This study contributes to a deeper understanding of the characteristics of coal dust and is of great significance for improving the prevention and control of coal dust fires and explosions.

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浸水时间和粒度对煤粉着火特性影响的实验研究
干燥后的水浸煤比原煤更容易自燃。然而,粒度和浸水时间对煤粉理化性质的影响机理以及水浸煤粉的爆炸和火灾危险性的研究还不够充分。本研究选取了两种粒度的煤粉,使用戈伯特-格林沃尔德炉、哈特曼管、马弗炉和傅立叶变换红外光谱仪进行了实验。研究考察了不同浸水时间、粉尘粒径、粉尘浓度对煤尘起火爆炸敏感性的影响,分析了煤尘颗粒在水中官能团变化过程及其他转化机理。结果表明,浸水过程增加了煤粉表面活性官能团的数量,显著降低了不同样品的最低着火温度(MIT)和最低着火能量(MIE)值,同时也提高了煤粉层火灾的着火敏感性和峰值温度。这项研究有助于加深对煤尘特性的理解,对提高煤尘火灾和爆炸的预防和控制能力具有重要意义。
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来源期刊
CiteScore
7.20
自引率
14.30%
发文量
226
审稿时长
52 days
期刊介绍: The broad scope of the journal is process safety. Process safety is defined as the prevention and mitigation of process-related injuries and damage arising from process incidents involving fire, explosion and toxic release. Such undesired events occur in the process industries during the use, storage, manufacture, handling, and transportation of highly hazardous chemicals.
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