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Real-time measurement of submicron aerosol particles having a log-normal size distribution by simultaneously using unipolar diffusion charger and unipolar field charger

机译:通过同时使用单极扩散充电器和单极场充电器实时测量具有对数正态尺寸分布的亚微米气溶胶颗粒

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摘要

Recently, Park et al. [(2007). Development and performance test of a unipolar diffusion charger for real-time measurements of submicron aerosol particles having a log-normal size distribution. Journal of Aerosol Science, 38, 420-430] have introduced a methodology for performing simple and fast measurements of submicron aerosol particles having a log-normal size distribution, using a unipolar diffusion charger, an electrometer, and a condensation particle counter (CPC). The methodology can be applied to particles of 30-700 nm and requires an assumption of their geometric standard deviation in size. In this paper we propose a much cheaper but faster method which involves substituting a unipolar field charger and another electrometer for the CPC. With the data obtained using this dual-charger system, we developed a data inversion algorithm and estimated the particle size distribution by minimizing the differences between the measured aerosol currents and the calculated values. To compare the size distribution with the data measured using a scanning mobility particle sizer (SMPS), sodium chloride (NaCl) particles smaller than 0.1 μm in diameter, and dioctyl sebacate (DOS) particles with a diameter of 0.1-0.7 μm, were used. The estimated results for the NaCl and DOS particles were within 10% of the data measured with the SMPS, while a 33% deviation from the SMPS results was obtained in Park et al. [(2007). Development and performance test of a unipolar diffusion charger for real-time measurements of submicron aerosol particles having a log-normal size distribution. Journal of Aerosol Science, 38, 420-430]. Furthermore, the detection time obtained with the use of our dual-charger system was faster (< 3 s) than the 5 s obtained by Park et al. [(2007). Development and performance test of a unipolar diffusion charger for real-time measurements of submicron aerosol particles having a log-normal size distribution. Journal of Aerosol Science, 38, 420-430].
机译:最近,Park等人。 [(2007)。用于实时测量具有对数正态尺寸分布的亚微米气溶胶颗粒的单极扩散充电器的开发和性能测试。 Journal of Aerosol Science,38,420-430]引入了一种方法,该方法使用单极扩散充电器,静电计和冷凝粒子计数器(CPC)对具有对数正态尺寸分布的亚微米气溶胶粒子进行简单,快速的测量。该方法可以应用于30-700 nm的粒子,并且需要假设其尺寸的几何标准偏差。在本文中,我们提出了一种更便宜但速度更快的方法,该方法包括用单极场充电器和另一个静电计代替CPC。利用使用该双增压器系统获得的数据,我们开发了一种数据反演算法,并通过最小化测得的气溶胶电流与计算值之间的差异来估算粒径分布。为了将尺寸分布与使用扫描迁移率粒度仪(SMPS)测量的数据进行比较,使用了直径小于0.1μm的氯化钠(NaCl)颗粒和直径为0.1-0.7μm的癸二酸二辛酯(DOS)颗粒。 NaCl和DOS颗粒的估计结果在SMPS测量数据的10%以内,而Park等人获得的SMPS结果偏差为33%。 [(2007)。用于实时测量具有对数正态尺寸分布的亚微米气溶胶颗粒的单极扩散充电器的开发和性能测试。气溶胶科学学报,38,420-430]。此外,使用我们的双充电器系统获得的检测时间比Park等人获得的5 s更快(<3 s)。 [(2007)。用于实时测量具有对数正态尺寸分布的亚微米气溶胶颗粒的单极扩散充电器的开发和性能测试。气溶胶科学学报,38,420-430]。

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