首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Effects of particle size, dust concentration and dust-dispersion-air pressure on rock dust inertant requirement for coal dust explosion suppression in underground coal mines
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Effects of particle size, dust concentration and dust-dispersion-air pressure on rock dust inertant requirement for coal dust explosion suppression in underground coal mines

机译:粒径,粉尘浓度和除尘 - 气压对地下煤矿煤尘爆炸抑制岩体尘埃式要求的影响

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Coal dust explosion constitutes an ever-present hazard in underground coal mines worldwide. This study examines the effects of important parameters, such as, dust particle size, dust concentration and dust-dispersion-air pressure on rock dust inertant requirement for suppressing coal dust explosion using a Godbert-Greenwald (GG) furnace. It also elucidates the underlying mechanism involved in the coal dust explosion and its propagation. The study revealed that the proportion of rock dust required to inert the coal dust explosion increases with the decrease in the coal dust size and increase in the rock dust size. The finest size coal dust (<38 mu m) and the coarsest mine size coal dust (<850 mu m) required 90% and 72% rock dust inertant respectively for suppressing the coal dust explosion. The optimal coal dust concentration that causes a violent explosion and requires maximum proportion of rock dust inertant for explosion suppression was determined to be 427 g/m(3). The inertant requirement increased with the increase in dust-dispersion-air pressure up to 62 kPa. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:煤尘爆炸构成全球地下煤矿的危险。本研究研究了重要参数的影响,例如尘埃粒度,粉尘浓度和灰尘分散 - 气压对岩尘惰性要求,用于使用Godbert-Greenwald(GG)炉抑制煤粉爆炸。它还阐明了煤粉爆炸涉及的潜在机制及其繁殖。该研究表明,惰性煤尘爆炸所需的岩石粉尘的比例随着煤尘尺寸的降低和岩尘尺寸的增加而增加。最好的大小煤尘(<38 mu m)和粗矿煤尘(<850 mu m),分别需要90%和72%的岩尘惰性,用于抑制煤粉爆炸。导致剧烈爆炸的最佳煤尘浓度,并且需要最大比例的爆炸抑制爆炸抑制,为427g / m(3)。随着灰尘分散空气压力的增加,惰性要求增加了62kPa。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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