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Visualization of airborne nanoparticle deposits onto spherical collectors

机译:空气中纳米粒子沉积在球形收集器上的可视化

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Knowing the morphology of deposit onto collectors is a key objective for predicting the performance of a granular bed during clogging. In this study, deposits of nanoparticles onto spherical collectors were visualized with digital microscopes, in predominant Brownian diffusion conditions. An original device using axially magnetized beads was developed to guarantee that the flow rate around the collectors and thus the structure of the nanoparticle deposits was not disrupted by any support. Visualizations of the clogging of a collector line exhibited a homogeneous ellipsoidal deposit all around the beads. The deposit thickness increased linearly irrespective of the bead point, and was maximal at the top and minimal at the contact points. Moreover, microscope viewings of a collector layer during its clogging by nanoparticles were carried out. Results highlighted that the pressure drop increased as a function of the pore closure degree, similarly for all generated agglomerates, and consequently independently of the porosity and the localization of the deposit. These observations were confirmed by theoretical modelling, and suggested that the airflow rate passes mainly through open zones, and not through particle deposits. (C) 2016 Elsevier B.V. All rights reserved.
机译:了解收集者存款的形态是预测颗粒状床堵塞期间的性能的关键目标。在该研究中,用数字显微镜将纳米颗粒沉积在球形收集器上,以数字显微镜在主要的褐色扩散条件下被视为。开发了使用轴向磁化珠的原始装置以保证收集器周围的流速,从而保证纳米颗粒沉积物的结构不会被任何载体中断。收集线堵塞的可视化表现出珠子周围的均匀椭圆形沉积物。沉积物厚度与珠子点无关紧要,并且在顶部和最小的接触点处的最小值。此外,进行了纳米颗粒堵塞期间收集层的显微镜观察。结果强调压降随着孔隙闭合程度的函数而增加,类似于所有产生的附聚物,因此独立于孔隙率和沉积物的定位。通过理论建模证实了这些观察结果,并建议气流率主要通过开口区域,而不是通过颗粒沉积物来通过。 (c)2016年Elsevier B.v.保留所有权利。

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