双极多出口差分迁移率分析仪(BiMoDMA)性能评价

IF 2.9 3区 环境科学与生态学 Q2 ENGINEERING, CHEMICAL
Shipeng Kang , Tongzhu Yu , Yixin Yang , Huaqiao Gui , Jianguo Liu , Da-Ren Chen
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引用次数: 0

摘要

事实证明,通过测量两个极性的粒子的电迁移率,而不是仅测量一个极性的粒子(在目前的实践中),DMA技术收集的细颗粒尺寸分布数据的准确性不太容易受到粒子带电离子的不确定性的影响。单极DMA需要将DMA电压从一个极性极限扫描到另一个极性极限,以完成上述测量任务。因此,需要双极dma来减少单极dma的电压扫描时间。当所有出口都连接到单个颗粒浓度检测器时,dma具有多个出口(具有不同的颗粒分类距离)的特点,可以进一步缩短测量周期。因此,设计了双极多出口DMA(即BiMoDMA)。虽然有多对出口,但本研究的重点是BiMoDMA仅打开一个出口对时的性能评价。该样机采用板对板(或平行板)结构,具有单个气溶胶入口狭缝和四个成对的气溶胶取样出口狭缝(从离气溶胶入口最近的分类距离标记为A1B1-A4B4对到离气溶胶入口最远的分类距离)。在电压为50 ~ 9000 v、护套流量为36L/min的条件下,该BiMoDMA可对A1B1、A2B2、A3B3和A4B4出口对分别进行2 ~ 30nm、4 ~ 55nm、7 ~ 104nm和10 ~ 155nm的颗粒分类。在给定的粒子电迁移率下,采用TDMA设置来校准BiMoDMA的施胶电压,并评估不同护套流速和粒径下的DMA传递函数。结果表明,实测的尺寸-电压关系与二维DMA模型计算的总趋势基本一致。为了更好地将计算电压与实测数据相关联,引入了校正因子。BiMoDMA传递函数的半高宽度和面积随护套流量的增大而减小,传递函数的半高宽度和面积随粒径的增大而增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of a bipolar multi-outlet differential mobility analyzer (BiMoDMA)
It has been evidenced that the accuracy of fine particle size distribution data collected by the DMA technique would be less prone to the uncertainty of particle charging ions by measuring electrical mobility of particles in both polarities instead of only measuring particles charged in one polarity (in the current practice). Unipolar DMAs are required to scan the DMA voltage from one polarity limit to the opposite polarity limit to fulfill the above measurement task. Bipolar DMAs are thus desired for reducing the voltage scanning time of unipolar DMAs. The measuring cycle of DMAs can be further reduced with the feature of multiple outlets (having different particle classification distances) when all the outlets are connected to individual particle concentration detectors. A Bipolar multi-outlet DMA (i.e., BiMoDMA) is thus designed. Although featured with multiple pairs of outlets, this study focused on the performance evaluation of BiMoDMA with only one outlet pair open. The prototype is in the plate-to-plate (or parallel-plate) configuration with a single aerosol inlet slit and four paired aerosol sampling outlet slits (labeled as A1B1-A4B4 from the pair at the nearest classification distance to that at the farthest distance from the aerosol inlet). For the voltage in the range of 509,000V, and sheath flowrate of 36L/min, this BiMoDMA can classify particles in the size ranges of 230nm, 455nm, 7104nm, and 10155nm for the outlet pairs of A1B1, A2B2, A3B3 and A4B4, respectively. TDMA setup was applied to calibrate the sizing voltage of this BiMoDMA for a given particle electrical mobility, and to evaluate the DMA transfer functions at different sheath flowrates and particle sizes. It is found that the measured size-voltage relationship is in reasonable agreement with the general trend calculated by the 2D DMA model. The correction factor was introduced to better correlate calculated voltage with measured data. The half-height width and area of BiMoDMA transfer functions decreased with the increase of sheath flowrate, while the height and area of transfer functions increased with the increase of particle size.
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来源期刊
Journal of Aerosol Science
Journal of Aerosol Science 环境科学-工程:化工
CiteScore
8.80
自引率
8.90%
发文量
127
审稿时长
35 days
期刊介绍: Founded in 1970, the Journal of Aerosol Science considers itself the prime vehicle for the publication of original work as well as reviews related to fundamental and applied aerosol research, as well as aerosol instrumentation. Its content is directed at scientists working in engineering disciplines, as well as physics, chemistry, and environmental sciences. The editors welcome submissions of papers describing recent experimental, numerical, and theoretical research related to the following topics: 1. Fundamental Aerosol Science. 2. Applied Aerosol Science. 3. Instrumentation & Measurement Methods.
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