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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Deposition and Filtration of Nanoparticles in the Composites of Nano-and Microsized Fibers
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Deposition and Filtration of Nanoparticles in the Composites of Nano-and Microsized Fibers

机译:纳米和超细纤维复合材料中纳米颗粒的沉积和过滤

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摘要

Filtration of aerosol particles using composites of nano-and microsized fibrous structures is a promising method of effective separation of nanoparticles from gases.The multiscale physical system describing the flow pattern and particles deposition in it requires other than a continuous approach for the process analysis.The Iattice-Boltzmann method was used for the calculation of deposition efficiency on nanosized particles for the system consisting of two nano-and microsized fibers.The proposed method allows to calculate the deposition efficiency of nanoparticles on both fibers for a very wide range of Knudsen numbers in the case of each nanofiber considering molecular,slip,and continuous flow patterns.The nanoflber is a significant attractor for collecting particles as an element of multiscale fibers of the filtration composite.The results of particle deposition efficiency calculated for the niicrofiber,using proposed method,are similar to those obtained from the classical continuum approach(Filippova and Hanel 1997;Przekop et al.2003).The proposed model was extended to calculate the performance of bilayer filter structures consisting of a nanofi-brous front layer and a microfibrous backing layer of the filter.Filtration efficiency,pressure drop and quality factors for uniform and non-uniform distributions of nanoflber s in the front filter layer were calculated for a wide range of Knudsen and Peclet numbers.
机译:使用纳米和微米级纤维结构的复合材料过滤气溶胶颗粒是一种有效地将纳米颗粒与气体分离的有前途的方法,描述流型和颗粒沉积的多尺度物理系统需要连续的过程分析方法。用Iattice-Boltzmann方法计算由两根纳米级和微米级纤维组成的系统在纳米级颗粒上的沉积效率,该方法可以计算出在很宽的Knudsen数范围内纳米颗粒在两种纤维上的沉积效率。考虑到分子,滑移和连续流动模式的每一种纳米纤维的情况。纳米纤维是用于收集颗粒的重要吸引剂,是过滤复合材料中多尺度纤维的组成部分。使用提出的方法计算出的镍纤维的颗粒沉积效率结果,与从经典连续体获得的相似(Filippova and Hanel 1997; Przekop et al.2003)。扩展了该模型以计算双层过滤器结构的性能,该结构由过滤器的纳米纤维前层和微纤维衬里层组成。过滤效率,压降和对于宽范围的努德森数和佩克列数,计算了前过滤层中纳米纤维均匀和不均匀分布的质量因子。

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