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首页> 外文期刊>Journal of the Atmospheric Sciences >Predicting particle critical supersaturation from hygroscopic growth measurements in the humidified TDMA. part I: Theory and sensitivity studies
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Predicting particle critical supersaturation from hygroscopic growth measurements in the humidified TDMA. part I: Theory and sensitivity studies

机译:根据加湿的TDMA中的吸湿性生长预测值预测颗粒的临界过饱和度。第一部分:理论与敏感性研究

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摘要

A method is described to estimate the critical supersaturation of quasi-monodisperse, dry particles using measurements of hygroscopic growth at relative humidities below 100%. Kohler theory is used to derive two chemical composition-dependent parameters, with appropriate accounting for solution effects through a simplified model of the osmotic coefficient. The two unknown chemical parameters are determined by fitting the Kohler model to data obtained from humidified tandem differential mobility analyzer (HTDMA) measurements, and used to calculate the critical supersaturation for a given dry particle size. In this work the theory and methodology are presented, and sensitivity studies are performed, with respect to assumptions made and uncertainties in key input parameters to the Kohler model. Results show that for particle diameters of 40 and 100 nm, the average error between critical supersaturations derived using the proposed method and theoretical values is -7.5% (1 sigma = 10%, n = 16). This error is similar to experimental uncertainties in critical supersaturations determined from laboratory studies on particles of known chemical composition (-0.6%, 1 sigma = 11%, n = 16). [References: 45]
机译:描述了一种使用相对湿度低于100%的吸湿性测量值来估计准单分散,干燥颗粒的临界过饱和度的方法。科勒理论用于推导两个与化学成分有关的参数,并通过简化的渗透系数模型适当考虑溶液效应。通过将科勒模型拟合到从加湿串联差动迁移率分析仪(HTDMA)测量获得的数据来确定这两个未知的化学参数,并用于计算给定干粒度的临界过饱和度。在这项工作中,提出了有关理论和方法,并进行了敏感性研究,涉及科勒模型的假设和关键输入参数的不确定性。结果表明,对于40和100 nm的粒径,使用所提出的方法得出的临界过饱和与理论值之间的平均误差为-7.5%(1 sigma = 10%,n = 16)。此错误类似于通过对已知化学成分的粒子进行实验室研究得出的临界过饱和度的实验不确定性(-0.6%,1 sigma = 11%,n = 16)。 [参考:45]

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