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配备明胶滤材用于收集多尺寸颗粒物的两级串联撞击器的研制与性能评估

Development and performance evaluation of a two-stage cascade impactor equipped with gelatin filter substrates for the collection of multi-sized particulate matter.

作者信息

Aldekheel Mohammad, Farahani Vahid Jalali, Tohidi Ramin, Altuwayjiri Abdulmalik, Sioutas Constantinos

机构信息

University of Southern California, Department of Civil and Environmental Engineering, Los Angeles, California, USA.

Kuwait University, Department of Civil Engineering, P.O Box 5969, Safat 13060, Kuwait.

出版信息

Atmos Environ (1994). 2023 Feb 1;294. doi: 10.1016/j.atmosenv.2022.119493. Epub 2022 Nov 17.

Abstract

This study presents the development and evaluation of a high flow rate gelatin cascade impactor (GCI) to collect different PM particle sizes on water-soluble gelatin substrates. The GCI operates at a flow rate of 100 lpm, and consists of two impaction stages, followed by a filter holder to separate particles in the following diameter ranges: >2.5 μm, 0.2-2.5 μm, and <0.2 μm. Laboratory characterization of the GCI performance was conducted using monodisperse polystyrene latex (PSL) particles as well as polydisperse ammonium sulfate, sodium chloride, and ammonium nitrate aerosols to obtain the particle collection efficiency curves for both impaction stages. In addition to the laboratory characterization, we performed concurrent field experiments to collect PM employing both GCI equipped with gelatin filter and personal cascade impactor sampler (PCIS) equipped with PTFE filter for further toxicological analysis using macrophage-based reactive oxygen species (ROS) and dithiothreitol consumption (DTT) assays. Our results showed that the experimentally determined cut-point diameters for the first and second impaction stages were 2.4 μm and 0.21 μm, respectively, which agreed with the theoretical predictions. Although the GCI has been developed primarily to collect particles on gelatin filters, the use of a different type of substrate (i.e., quartz) led to similar particle separation characteristics. The findings of the field tests demonstrated the advantage of using the GCI in toxicological studies due to its ability to collect considerable PM-toxic constituents, as corroborated by the DTT and ROS values for the GCI-collected particles which were 26.44 nmoles/min/mg PM and 8813.2 μg Zymosan Units/mg PM, respectively. These redox activity values were more than twice those of particles collected concurrently on PTFE filter using the PCIS. This high-flow-rate impactor can collect considerable amounts of size-fractionated PM on water-soluble filters (i.e., gelatin), which can completely dissolve in water allowing for the extraction of soluble and insoluble PM species for further toxicological analysis.

摘要

本研究介绍了一种高流量明胶级联冲击器(GCI)的开发和评估,该冲击器用于在水溶性明胶基质上收集不同粒径的颗粒物。GCI的运行流量为100升/分钟,由两个冲击阶段组成,随后是一个滤器支架,用于分离以下直径范围的颗粒:>2.5μm、0.2 - 2.5μm和<0.2μm。使用单分散聚苯乙烯乳胶(PSL)颗粒以及多分散硫酸铵、氯化钠和硝酸铵气溶胶对GCI性能进行实验室表征,以获得两个冲击阶段的颗粒收集效率曲线。除了实验室表征外,我们还进行了同步现场实验,使用配备明胶滤器的GCI和配备聚四氟乙烯滤器的个人级联冲击器采样器(PCIS)收集颗粒物,以便使用基于巨噬细胞的活性氧(ROS)和二硫苏糖醇消耗(DTT)测定法进行进一步的毒理学分析。我们的结果表明,实验确定的第一和第二冲击阶段的切割点直径分别为2.4μm和0.21μm,这与理论预测相符。尽管GCI主要是为在明胶滤器上收集颗粒而开发的,但使用不同类型的基质(即石英)会导致类似的颗粒分离特性。现场测试结果表明,由于GCI能够收集大量的PM毒性成分,因此在毒理学研究中使用GCI具有优势,GCI收集颗粒的DTT和ROS值分别为26.44纳摩尔/分钟/毫克PM和8813.2微克酵母聚糖单位/毫克PM,这证实了这一点。这些氧化还原活性值是使用PCIS在聚四氟乙烯滤器上同时收集颗粒的两倍多。这种高流量冲击器可以在水溶性滤器(即明胶)上收集大量按粒径分级的PM,这些滤器可以完全溶解在水中,从而可以提取可溶性和不可溶性PM物种以进行进一步的毒理学分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab8c/9733700/1bbb9e2e3a8d/nihms-1853180-f0001.jpg

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