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颗粒混合状态对内部混合的氯化钠-硫酸铵单液滴吸湿性的影响:一项理论与实验研究

Impact of the particle mixing state on the hygroscopicity of internally mixed sodium chloride-ammonium sulfate single droplets: a theoretical and experimental study.

作者信息

Tobon Yeny A, El Hajj Danielle, Seng Samantha, Bengrad Ferdaous, Moreau Myriam, Visez Nicolas, Chiapello Isabelle, Crumeyrolle Suzanne, Choël Marie

机构信息

Univ. Lille, CNRS, UMR 8516 - LASIRE - LAboratoire de Spectroscopie pour les Interactions, la Réactivité et l'Environnement, F-59000 Lille, France.

Univ. Lille, CNRS, UMR 8518 - LOA - Laboratoire d'Optique Atmosphérique, F-59000 Lille, France.

出版信息

Phys Chem Chem Phys. 2021 Jul 7;23(26):14391-14403. doi: 10.1039/d1cp01574e.

Abstract

Sodium chloride (NaCl) is the main constituent of sea-salt aerosols. During atmospheric transport, sea-salt aerosols can interact with gases and other particles including secondary aerosols containing ammonium sulfate ((NH4)2SO4). This paper reports on the deliquescence relative humidity (DRH) of internally mixed sodium chloride-ammonium sulfate (NaCl/(NH4)2SO4) coarse particles by means of an acoustic levitation system fitted with a confocal Raman microscope (CRM). The chemical composition and physical state of individual levitated particles of different initial NaCl mole fractions were monitored during the deliquescence cycle by CRM. Experimental results were compared to the data predicted by the thermodynamic model E-AIM (Extended-Aerosol Inorganics Model). We demonstrated that NH4Cl, Na2SO4 and NH4NaSO4·2H2O are formed in recrystallized particles and coexist with NaCl and (NH4)2SO4. All these products are randomly distributed within the particles. Deliquescence curves described two or three-stage phase transitions depending on the initial composition of the droplet. Significant discrepancies between the model and the laboratory experiments were observed for NaCl mole fractions varying between 0.40 and 0.77 due to a divergence between the predicted and the truly present products in the particles' solid fraction during the humidification cycle.

摘要

氯化钠(NaCl)是海盐气溶胶的主要成分。在大气传输过程中,海盐气溶胶可与气体及其他颗粒相互作用,这些颗粒包括含有硫酸铵((NH₄)₂SO₄)的二次气溶胶。本文借助配备共焦拉曼显微镜(CRM)的声悬浮系统,报告了内部混合的氯化钠 - 硫酸铵(NaCl/(NH₄)₂SO₄)粗颗粒的潮解相对湿度(DRH)。在潮解循环过程中,通过CRM监测了不同初始NaCl摩尔分数的单个悬浮颗粒的化学成分和物理状态。将实验结果与热力学模型E - AIM(扩展气溶胶无机物模型)预测的数据进行了比较。我们证明,在重结晶颗粒中形成了氯化铵、硫酸钠和硫酸氢钠·2H₂O,并与NaCl和(NH₄)₂SO₄共存。所有这些产物在颗粒内随机分布。潮解曲线描述了取决于液滴初始组成的两阶段或三阶段相变。由于在加湿循环过程中颗粒固体部分中预测产物与实际存在产物之间存在差异,对于NaCl摩尔分数在0.40至0.77之间变化的情况,观察到模型与实验室实验之间存在显著差异。

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