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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Hygroscopic growth of ultrafine sodium chloride particles
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Hygroscopic growth of ultrafine sodium chloride particles

机译:超细氯化钠颗粒的吸湿生长

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The hygroscopic growth properties of ultrafine NaCl particles between 8 and 50 nm in mobility diameter have been studied using an ultrafine tandem differential mobility analyzer. The data include determination of hygroscopic growth curves, deliquescence behavior, and hysteresis. The measured growth factors are clearly smaller for the nanometer-sized particles compared with particles in the size range of 0.1 Mm and larger. While this behavior of the ultrafine particles can be qualitatively predicted by accounting for the Kelvin effect, quantitative differences to the experimental data remain even after the differential mobility analyzer data have been corrected to account for the cubic shape of the particles. We conclude that the differences are related to size-dependent density and/or shape/structure of nanometer-sized NaCl crystals. The deliquescence relative humidities obtained in this work for nanometer-sized particles also show clear differences from the literature value obtained for large particles. The quantitative values of hygroscopic growth factors and deliquescence relative humidities for small particles have not been available previously, and our data are important in studies of the formation and properties of atmospheric aerosols. [References: 14]
机译:使用超细串联差动迁移率分析仪研究了迁移率直径在8至50 nm之间的超细NaCl颗粒的吸湿生长特性。数据包括吸湿生长曲线,潮解行为和滞后的确定。与尺寸范围为0.1 Mm和更大的颗粒相比,纳米颗粒的测量生长因子明显更小。尽管可以通过考虑开尔文效应来定性地预测超细颗粒的这种行为,但即使在校正了差分迁移率分析仪数据以说明颗粒的立方形状之后,仍保留了与实验数据的定量差异。我们得出的结论是,差异与纳米级NaCl晶体的尺寸依赖性密度和/或形状/结构有关。在这项工作中获得的纳米级颗粒的潮解相对湿度也与大颗粒的文献值显示出明显的差异。以前尚无小颗粒的吸湿性生长因子和潮解性相对湿度的定量值,我们的数据对于研究大气气溶胶的形成和性质非常重要。 [参考:14]

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