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Efficacy of a portable, moderate-resolution, fast-scanning differential mobility analyzer for ambient aerosol size distribution measurements

机译:用于环境气溶胶尺寸分布测量的便携式,适度分辨率,快速扫描差分移动分析仪的功效

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Ambient aerosol size distributions obtained with a compact scanning mobility analyzer, the “Spider” differential mobility analyzer (DMA), are compared to those obtained with a conventional mobility analyzer, with specific attention to the effect of mobility resolution on the measured size distribution parameters. The Spider is a 12?cm diameter radial differential mobility analyzer that spans the 10–500?nm size range with 30?s mobility scans. It achieves its compact size by operating at a nominal mobility resolution R =3 (sheath flow? = ?0.9?L?min ?1 ; aerosol flow? = ?0.3?L?min ?1 ) in place of the higher ratio of sheath flow to aerosol flow commonly used. The question addressed here is whether the lower resolution is sufficient to capture key characteristics of ambient aerosol size distributions. The Spider, operated at R =3 with 30?s up- and downscans, was co-located with a TSI 3081 long-column mobility analyzer, operated at R =10 with a 360?s sampling duty cycle. Ambient aerosol data were collected over 26 consecutive days of continuous operation, in Pasadena, CA. Over the 17–500?nm size range, the two instruments exhibit excellent correlation in the total particle number concentrations and geometric mean diameters, with regression slopes of 1.13 and 1.00, respectively. Our results suggest that particle sizing at a lower resolution than typically employed may be sufficient to obtain key properties of ambient size distributions, at least for these two moments of the size distribution. Moreover, it enables better counting statistics, as the wider transfer function for a given aerosol flow rate results in a higher counting rate.
机译:使用紧凑型扫描迁移率分析仪获得的环境气溶胶尺寸分布,“蜘蛛”差分移动分析仪(DMA)与用常规移动分析仪获得的那些进行比较,具体关注迁移率分辨率对测量的尺寸分布参数的影响。蜘蛛是12?CM直径的径向差分移动性分析仪,其跨越30-500?NM尺寸范围,具有30倍的移动性扫描。它通过以标称迁移率r = 3(鞘流θ=0.9≤1≤m≤1;气溶胶流动?=Δ=0.3≤1≤min≤1)来实现其紧凑尺寸的尺寸流向常用的气溶胶流量。这里解决的问题是较低的分辨率是否足以捕获环境气溶胶尺寸分布的关键特性。在r = 3的蜘蛛用30?s上和下透露的速度操作,与TSI 3081长柱移动性分析仪共同定位,在r = 10上,具有360秒的采​​样占空比。在帕萨迪纳,加利福尼亚州连续26天连续26天收集环境气溶胶数据。在17-500?NM尺寸范围内,两种仪器在总粒子数浓度和几何平均直径中表现出优异的相关性,分别回归斜坡为1.13和1.00。我们的研究结果表明,在较低分辨率下粒度比通常使用的粒度可以足以获得环境尺寸分布的关键特性,至少对于尺寸分布的这两个时刻。此外,它能够更好地计数统计数据,因为给定的气溶胶流速的更宽传递函数导致更高的计数率。

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