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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Investigation of airborne nanopowder agglomerate stability in an orifice under various differential pressure conditions
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Investigation of airborne nanopowder agglomerate stability in an orifice under various differential pressure conditions

机译:在不同压差条件下孔中机载纳米粉末团聚体稳定性的研究

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摘要

The stability of agglomerates is not only an important material parameter of powders but also of interest for estimating the particle size upon accidental release into the atmosphere. This is especially important when the size of primary particles is well below the agglomerate size, which is usually the case when the size of primary particles is below 100 nm. During production or airborne transportation in pipes, high particle concentrations lead to particle coagulation and the formation of agglomerates in a size range of up to some micrometers. Binding between the primary particles in the agglomerates is usually due to van der Waals forces. In the case of a leak in a pressurized vessel (e.g. reactor, transport pipe, etc.), these agglomerates can be emitted and shear forces within the leak can cause agglomerates to breakup. In order to simulate such shear forces and study their effect on agglomerate stability within the airborne state, a method was developed where agglomerate powders can be aerosolized and passed through an orifice under various differential pressure conditions. First results show that a higher differential pressure across the orifice causes a stronger fragmentation of the agglomerates, which furthermore seems to be material dependent.
机译:附聚物的稳定性不仅是粉末的重要材料参数,而且对于估算意外释放到大气中时的粒径也很重要。当初级颗粒的尺寸远低于附聚物尺寸时,这尤其重要,这在初级颗粒的尺寸低于100 nm时通常是这种情况。在管道中的生产或空中运输过程中,高浓度的颗粒会导致颗粒凝结,并会形成尺寸高达几微米的附聚物。附聚物中初级颗粒之间的结合通常是由于范德华力引起的。在加压容器(例如反应堆,运输管等)发生泄漏的情况下,这些团块可能会散发出去,泄漏点内的剪切力会导致团块破裂。为了模拟这样的剪切力并研究其对在空气中的团聚体稳定性的影响,开发了一种方法,其中可以将团聚体粉末雾化并通过各种压差条件下的孔。最初的结果表明,孔口上更高的压差会导致团块的破碎更强,这似乎与材料有关。

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