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首页> 外文期刊>Journal of the air & waste management association >What Have We Learned from Highly Time-Resolved Measurements during EPA's Supersites Program and Related Studies?
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What Have We Learned from Highly Time-Resolved Measurements during EPA's Supersites Program and Related Studies?

机译:在EPA的超级站点计划和相关研究期间,我们从高度解析的测量中学到了什么?

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A wide range of new and exciting highly time-resolved instruments were deployed during the U.S. Environmental Protection Agency (EPA) Supersite program and related studies that occurred during the same time period. These measurements elucidated the temporal variation of a suite of gas-phase species, particle physical properties, and size-resolved particulate chemical composition. Because the temporal resolution was so high, concentration and size distribution changes as short as 1 min or less were discerned. Often data from multiple instruments were correlated with each other and with meteorological measurements, and these correlations enabled conclusions to be drawn about the photochemical activity of the atmosphere, the location of point sources, and even the emissions characteristics of these sources. For instance, rapid changes in particulate matter (PM) concentration were due to meteorological conditions, emissions, and plume excursions that led to increases in nitrate, sulfate, and organic carbon concentrations. This paper summarizes the conclusions that have been reached, to date, using these new, highly time-resolved instruments, and demonstrates their promise for future studies.
机译:在美国环境保护署(EPA)的“超级站点”计划和同一时期进行的相关研究中,部署了各种新的,令人兴奋的高度解决时间问题的仪器。这些测量结果阐明了一系列气相物质,颗粒物理性质和尺寸分辨的颗粒化学成分的时间变化。由于时间分辨率很高,因此可以看出浓度和尺寸分布的变化时间短至1分钟或更短。通常,来自多种仪器的数据相互之间以及与气象测量值相关联,这些相关性可以得出关于大气的光化学活性,点源的位置,甚至这些源的排放特征的结论。例如,颗粒物(PM)浓度的快速变化是由于气象条件,排放和羽流偏移导致的硝酸盐,硫酸盐和有机碳浓度增加。本文总结了迄今为止使用这些新的,时间分辨力强的仪器得出的结论,并证明了它们对未来研究的希望。

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