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Impact of fatty acid coating on the CCN activity of sea salt particles

机译:脂肪酸涂层对海盐粒子CCN活性的影响

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摘要

This study investigates the impact of fatty acids on the cloud condensation nuclei (CCN) activity of sea salt aerosol of initial size 30, 50, 70 or 90 nm. Two of the major fatty acids in the marine environment, palmitic acid (C16) and stearic acid (C18), were investigated along with their unsaturated analogues palmitoleic acid and oleic acid, respectively. Sea salt seed particles were generated by aeration through a diffuser placed inside a sea spray tank. Fatty acids were added to the particles via condensation of fatty acid vapours in a heated flask at different temperatures. The diameters and CCN activity of particles before and after condensation of fatty acids were monitored. Based on the change in mobility diameter, a coating thickness and an organic volume fraction were inferred. Addition of the unsaturated acids to the core sea salt particles did not result in hindered water uptake for any organic volume fractions studied (25–96%) and critical supersaturations generally followed the kappa addition rule assuming a kappa value of zero for the fatty acids and assuming a constant surface tension equal to that of water. For the saturated fatty acids, a deviation from the Zdanovskii, Stokes and Robinson assumption (kappa mixing rule) in the direction of hindered water uptake was observed for organic volume fractions corresponding to thick (25–29 nm) coatings of palmitic acid and even thinner coatings of stearic acid.
机译:本研究研究了脂肪酸对初始尺寸30,50,70或90nm的海盐气雾溶解核(CCN)活性的影响。研究了海洋环境中的两种主要脂肪酸,棕榈酸(C16)和硬脂酸(C18),分别与其不饱和类似物棕榈酰酸和油酸一起研究。海盐种子颗粒通过曝气通过放置在海喷雾罐内的扩散器产生。通过在不同温度下的加热烧瓶中的脂肪酸蒸汽缩合将脂肪酸加入颗粒中。监测脂肪酸缩合前后颗粒的直径和CCN活性。基于迁移率直径的变化,推断涂层厚度和有机体积分数。向核心海盐颗粒中加入不饱和酸并未导致所研究的任何有机体积级分的受阻水吸收(25-96%)和临界超饱和的耐受性,通常遵循脂肪酸的kappa值为零的kappa增值假设恒定的表面张力等于水的表面张力。对于饱和脂肪酸,对于对应于棕榈酸的厚(25-29nm)涂层的有机体积级分,观察到Zdanovskii,Stokes和罗宾逊假设(Kappa混合规则)的偏差是对应于棕榈酸的厚(25-29nm)涂层的有机体积分数硬脂酸涂层。

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