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首页> 外文期刊>Journal of Aerosol Science >Relative humidity non-uniformities in Hygroscopic Tandem Differential Mobility Analyzer measurements
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Relative humidity non-uniformities in Hygroscopic Tandem Differential Mobility Analyzer measurements

机译:吸湿串联差动分析仪测量中的相对湿度不均匀性

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摘要

Hygroscopic Tandem Differential Mobility Analyzers (HTDMAs) are widely used to measure the water uptake characteristics of aerosol particles. As has been shown experimentally in the past, potential differences in the relative humidity (RH) between the aerosol and the sheath flow of the second Differential Mobility Analyzer (DMA) can lead to erroneous estimates of the apparent hygroscopic behavior of the sampled particles. A prompt phase transition, for example, may become smeared and be erroneously interpreted as non-prompt. Using a particle-tracking model, here we simulate the trajectories and the state of the particles classified in a DMA with non-uniform RH and temperature profiles. Our simulations corroborate earlier observations proving that such an experimental artifact can induce particle growth within the second DMA. Given the importance of maintaining uniform RH and temperature inside the second DMA of HTDMA systems and the limitations of existing RH and temperature sensors, we further provide suggestions for their operation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:吸湿串联差动分析仪(HTDMAs)被广泛用于测量气溶胶颗粒的吸水特性。如过去的实验所示,气溶胶和第二差分迁移率分析仪(DMA)的鞘流之间的相对湿度(RH)可能存在差异,可能会导致对所采样颗粒的表观吸湿行为的错误估计。例如,迅速的相变可能会变得模糊不清,并被错误地解释为不及时。使用粒子跟踪模型,在这里我们模拟RH和温度分布不均匀的DMA中分类的粒子的轨迹和状态。我们的模拟证实了较早的观察结果,证明了这种实验性伪像可以诱导第二个DMA中的粒子生长。考虑到在HTDMA系统的第二个DMA中保持均匀的相对湿度和温度的重要性以及现有相对湿度和温度传感器的局限性,我们进一步为它们的操作提供了建议。 (C)2016 Elsevier Ltd.保留所有权利。

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