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A Cascade Air Sampler with Multi-nozzle Inertial Filters for PM0.1

机译:用于PM 0.1 的带有多喷嘴惯性过滤器的级联空气采样器

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We applied a 3-nozzle geometry to the inertial filter unit of a previously developed cascade air sampler, which originally consisted of a 4-stage (PM_(10/2.5/1/0.5)) impactor, and an inertial filter unit embedded in a single circular nozzle (for PM_(0.1)), and compared its performance against that of a single-nozzle inertial filter unit. The multi-nozzle design enabled the collection of multiple samples and the analysis of multi-chemical particle components in the size range of 0.1–0.5 μm. The total carbon was analyzed to determine the uniformity of the PM_(0.1) collected on a filter downstream from the inertial filter unit in both samplers, and the differences between the individual nozzles of the 3-nozzle unit as well as those between the 1- and 3-nozzle units were identified based on the chemical composition. After adjusting the quantity of the fibers in each inertial filter (one per nozzle) of the 3-nozzle sampler with care on the fiber packing uniformity , the 3-nozzle and 1-nozzle units exhibited similar separation performance, with approximately a 5% lower pressure drop for the former. The differences in the collected particle mass and the total carbon between the individual nozzles of the multi-nozzle unit and between the single- and multi-nozzle units were found to be less than 10%. However, the 3-nozzle unit uniformly collected particles regardless of the loaded particle mass, whereas its 1-nozzle counterpart exhibited non-uniform collection with higher loads. These data, together with the lower pressure drop, show that the multi-nozzle design has practical applicability, thus opening possibilities for chemically analyzing PM_(0.1).
机译:我们将3喷嘴的几何形状应用于先前开发的级联空气采样器的惯性过滤器单元,该组件最初由一个4级(PM_(10 / 2.5 / 1 / 0.5))撞击器和一个嵌入在过滤器中的惯性过滤器单元组成单个圆形喷嘴(对于PM_(0.1)),并将其性能与单个喷嘴惯性过滤器单元的性能进行了比较。多喷嘴设计可以收集多个样品,并可以分析尺寸范围为0.1–0.5μm的多种化学颗粒成分。分析总碳以确定在两个采样器中从惯性过滤器单元下游的过滤器上收集的PM_(0.1)的均匀性,以及3-喷嘴单元的各个喷嘴之间以及1-喷嘴之间的喷嘴之间的差异。根据化学成分确定3喷嘴单位。调整好三根喷嘴采样器的每个惯性过滤器(每根喷嘴一个)中的纤维数量并注意纤维堆积均匀度后,三根喷嘴和一根喷嘴的分离性能相似,降低了约5%前者压力下降。发现在多喷嘴单元的各个喷嘴之间以及在单喷嘴和多喷嘴单元之间的收集的颗粒质量和总碳的差异小于10%。然而,无论负载颗粒的质量如何,三喷嘴单元均一地收集颗粒,而其一喷嘴单元在较高负荷下表现出不均匀的收集。这些数据以及较低的压降表明,多喷嘴设计具有实际适用性,因此为化学分析PM_(0.1)提供了可能性。

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