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首页> 外文期刊>Aerosol and Air Quality Research >Correction Factor for Continuous Monitoring of Wood Smoke Fine Particulate Matter
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Correction Factor for Continuous Monitoring of Wood Smoke Fine Particulate Matter

机译:连续监测木材烟雾细颗粒物的校正因子

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摘要

The US Environmental Protection Agency (EPA) has designated a handful of instruments as Federal Reference or Federal Equivalency Methods (FRM and FEM, respectively) for the monitoring of fine particulate matter (PM2.5). More commonly used for indoor exposure assessment studies are optical scanning devices such as the DustTrak (TSI) due to their portability and affordability. It is recommended by the manufacturer of these instruments that a “correction factor” be applied when assessing source-specific conditions. In this study, DustTraks were collocated with multiple samplers in various environments in an effort to establish an indoor, wood smoke-source specific correction factor. The DustTrak was found to report PM2.5 levels on average 1.6 times higher than a filter based method in two indoor sampling programs. The DustTrak also reported indoor PM2.5 concentrations 1.7 times higher than a FRM sampler during a regional forest fire event. These real-world scenarios give a correction factor within a reasonable range of the results of a controlled laboratory experiment in which DustTraks reported PM2.5 approximately 2 times higher than a FEM. Our indoor wood smoke-specific correction factor of 1.65 will allow for DustTraks to be confidently used in quantifying PM2.5 exposures within indoor environments predominantly impacted by wood smoke.
机译:美国环境保护署(EPA)已指定了一些仪器作为联邦参考或联邦等效方法(分别为FRM和FEM)来监视细颗粒物(PM2.5)。由于其便携性和价格可承受性,更常见于室内暴露评估研究的是光学扫描设备,例如DustTrak(TSI)。这些仪器的制造商建议在评估源特定条件时应使用“校正因子”。在这项研究中,DustTraks与各种环境中的多个采样器并置在一起,以建立室内木质烟源特定校正因子。在两个室内采样程序中,发现DustTrak的PM2.5水平平均比基于过滤器的方法高1.6倍。 DustTrak还报告了在区域性森林火灾期间,室内PM2.5浓度比FRM采样器高1.7倍。这些实际场景给出了在受控实验室实验结果的合理范围内的校正因子,在该实验中,DustTraks报告的PM2.5大约是FEM的2倍。我们专用于室内烟尘的校正系数为1.65,因此DustTraks可以放心地用于量化主要受烟尘影响的室内环境中PM2.5的暴露。

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