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首页> 外文期刊>Journal of Chemical Engineering of Japan >Effects of Filter Packing Density and Particle Deposit on Classification Performance of Inertial Filter for Sampling of PM0.1
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Effects of Filter Packing Density and Particle Deposit on Classification Performance of Inertial Filter for Sampling of PM0.1

机译:过滤器装填密度和颗粒沉积对惯性过滤器PM0.1采样性能的影响

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References(16) Cited-By(3) Sampling of particles smaller than 100 nm is of great concern for assessing the adverse health effects of airborne nanoparticles in both atmosphere and workplaces. Inertial filter (IF) is a new application of air filter, which is recently developed by the present authors to classify nanoparticles by passing aerosol through an air filter at a high filtration velocity. In the present work, we investigated the effects of fiber packing density and particle deposit on classification performance of IF to achieve 50% cut-off diameter of 100 nm for sampling nanoparticles. Unwoven stainless steel (SUS) fiber mat with diameter of 8 μm is used as a filter medium. It was found that, in inertial regime, the collection efficiency changes markedly with the packing density due to the interactions of neighboring fibers. As a result, by adjusting the filtration velocity to achieve 50% cut-off diameter of 100 nm, IF with various packing densities had almost the same classification performance, and a compressed filter is advantageous because it had a lower pressure drop. The influence of loaded particles on the classification performance was also investigated. It was found that, up to the collected particle mass of 1 mg, the effect of dust load is not significant. Therefore IF with a higher packing density is superior in achieving 50% cut-off diameter of 100 nm from the viewpoints of both initial and dust-loaded classification performance.
机译:参考文献(16)引用(3)小于100 nm的颗粒的采样对于评估空气中的纳米颗粒在大气和工作场所中对健康的不利影响非常重要。惯性过滤器(IF)是空气过滤器的一项新应用,本作者最近开发了它,通过使气溶胶以高过滤速度通过空气过滤器来对纳米颗粒进行分类。在当前的工作中,我们研究了纤维堆积密度和颗粒沉积对IF分级性能的影响,以实现对纳米颗粒的50%截止直径为100 nm。直径为8μm的非编织不锈钢(SUS)纤维毡用作过滤介质。结果发现,在惯性状态下,由于邻近纤维的相互作用,收集效率随堆积密度而显着变化。结果,通过调节过滤速度以达到100nm的50%截止直径,具有不同堆积密度的IF具有几乎相同的分级性能,并且压缩过滤器是有利的,因为它具有较低的压降。还研究了负载颗粒对分类性能的影响。已经发现,直到收集的颗粒质量为1mg,粉尘负荷的影响并不显着。因此,从初始和粉尘分级性能的观点来看,具有较高堆积密度的IF在达到100nm的50%截止直径方面是优异的。

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