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Concentration measurement and counting efficiency of the aerodynamic particle sizer 3321

机译:空气动力学粒度仪3321的浓度测量和计数效率

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The aerodynamic particle sizer (APS) model 3321 (TSI, Inc., St. Paul, MN) aims to resolve issues identified with an earlier APS, model 3320. These issues include discrepancies between concentrations measured in summing and in corerlated modes, and the creation of "anomaloous", large particles caused by recirculation within the detection region. In the present work, the number concentration of a laboratory aerosol was measured with the APS 3321 to be statistically the same in summing mode and in correlated mode for all particles except those in bin 1, < 0.523 mum. Further, anomalous large particles were not measured with the APS 3321. The counting efficiency of the APS 3321 was lower than that for the APS 3320 and ranged from 40% to 60% for particles from 0.8 to 4 mum, respectively. Thus, concentrations reported by the APS 3321 were lower than those measured by the impactor. However, because counting efficiencies were roughly constant with particle size and anomalous particles were absent, the shape of the size distribution was similar to that obtained using the impactor.
机译:空气动力学粒度仪(APS)3321模型(TSI,Inc.,圣保罗,明尼苏达州)旨在解决早期APS 3320模型所发现的问题。这些问题包括以求和和相关模式测量的浓度之间的差异,以及产生“异常”的大颗粒,这是由检测区域内的再循环引起的。在目前的工作中,用APS 3321测量的实验室气雾剂的浓度在统计模式下对除仓位1中那些<0.523微米以外的所有粒子而言,在求和模式和相关模式下均相同。另外,用APS 3321未测量到异常大颗粒。APS3321的计数效率低于APS 3320的计数效率,并且对于0.8至4μm的颗粒,计数效率分别为40%至60%。因此,APS 3321报告的浓度低于撞击器测量的浓度。但是,由于计数效率随粒径而大致恒定,并且不存在异常颗粒,因此粒径分布的形状类似于使用撞击器获得的形状。

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