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Does the dust explosion risk increase when moving from μm-particle powders to powders of nm-particles?

机译:从微米级粉末转移到纳米级粉末时,粉尘爆炸的风险会增加吗?

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摘要

Based on experience with powders of particle sizes down to the 1-0.1 μm range one might expect that dust clouds from combustible nm-particle powders would exhibit extreme ignition sensitivities (very low MIEs) and extreme explosion rates (very high K_(st)-values). However, there are two basic physical reasons why this may not be the case. Firstly, complete transformation of bulk powders consisting of nm-particles into dust clouds consisting of well-dispersed primary particles is extremely difficult to accomplish, due to very strong inter-particle cohesion forces. Secondly, should perfect dispersion nevertheless be achieved, the extremely fast coagulation process in clouds of explosive mass concentrations would transform the primary nm-particles into much larger agglomerates within fractions of a second. Furthermore, for organic dusts and coal the basic mechanism of flame propagation in dust clouds suggests that increased cloud explosion rates would not be expected as the particle size decreases into the <1 μm range. An overall conclusion is that dust clouds consisting of nm primary particles are not expected to exhibit more severe K_(st)-values than clouds of μm primary particles, in agreement with recent experimental evidence. In the case of the ignition sensitivity recently published evidence indicates that MIEs of clouds in air of some metal powders are significantly lower for nm particles than for μm particles. A possible reason for this is indicated in the paper.
机译:根据对粒径在1-0.1μm范围内的粉末的经验,人们可能会期望可燃纳米颗粒粉末产生的尘云会表现出极高的点火敏感性(极低的MIE)和极高的爆炸率(极高的K_(st)-值)。但是,有两个基本的物理原因导致可能并非如此。首先,由于非常强的粒子间内聚力,将由纳米粒子组成的散装粉末完全转化为由良好分散的初级粒子组成的尘云非常困难。其次,如果仍要实现完美的分散,则爆炸性质量浓度云中极快的凝聚过程将在几分之一秒内将原生纳米粒子转变为更大的团聚体。此外,对于有机粉尘和煤炭,火焰在粉尘云中传播的基本机理表明,随着粒径减小到<1μm范围,不会期望增加云爆炸率。总的结论是,与最近的实验证据一致,预计由nm初级粒子组成的尘云不会比μm初级粒子云表现出更严重的K_(st)值。在点火敏感性的情况下,最近发表的证据表明,某些金属粉末的空气中云的MIE对于nm粒子而言明显低于μm粒子。本文中指出了可能的原因。

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