Krug Jonathan, Long Russell, Colón Maribel, Habel Andrew, Urbanski Shawn, Landis Matthew S
US EPA, Office of Research and Development, Research Triangle Park, NC, USA.
Jacobs Technology Inc., Research Triangle Park, NC, USA.
Atmos Environ (1994). 2021 Nov;265:1-8. doi: 10.1016/j.atmosenv.2021.118718.
Wildland fire activity and associated emission of particulate matter air pollution is increasing in the United States over the last two decades due primarily to a combination of increased temperature, drought, and historically high forest fuel loading. The regulatory monitoring networks in the Unites States are mostly concentrated in larger population centers where anthropogenic air pollution sources are concentrated. Smaller population centers in areas more likely to be impacted by wildland fire smoke in many instances lack adequate observational air quality data. Several commercially available small form factor filter-based PM samplers (SFFFS) were evaluated under typical ambient and simulated near-to mid-field wildland fire smoke conditions to evaluate their accuracy for use in temporary deployments during prescribed and wildfire events. The performance of all the SFFFS tested versus the designated federal reference methods (FRM) was acceptable in determining PM concentration in both ambient (2.7-14.0 μg m) and chamber smoke environments (24.6-3044.6 μg m) with accuracies ranging from ~92 to 98%. However, only the ARA Instruments model N-FRM Sampler was found to provide PM mass measurement accuracies that meet FRM guideline performance specifications under both typical ambient (97.3 ± 1.9%) and simulated wildland fire conditions (98.2 ± 1.4%).
在过去二十年中,美国的野火活动以及相关的颗粒物空气污染排放一直在增加,这主要是由于气温升高、干旱以及历史高位的森林燃料负荷共同作用的结果。美国的监管监测网络大多集中在人为空气污染源集中的较大人口中心。在许多情况下,更有可能受到野火烟雾影响的较小人口中心缺乏足够的观测空气质量数据。对几种市售的基于小型过滤器的颗粒物采样器(SFFFS)在典型环境和模拟的近场至中场野火烟雾条件下进行了评估,以评估它们在规定火灾和野火事件期间临时部署中使用的准确性。在确定环境(2.7 - 14.0微克/立方米)和烟雾箱环境(24.6 - 3044.6微克/立方米)中的颗粒物浓度时,所有测试的SFFFS与指定的联邦参考方法(FRM)相比表现均可接受,准确度范围约为92%至98%。然而,仅发现ARA Instruments公司的N - FRM采样器在典型环境(97.3 ± 1.9%)和模拟野火条件(98.2 ± 1.4%)下都能提供符合FRM指南性能规格的颗粒物质量测量准确度。