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Efflorescence of Ammonium Sulfate and Coated Ammonium Sulfate Particles: Evidence for Surface Nucleation

机译:硫酸铵和包覆的硫酸铵颗粒的风化:表面成核的证据。

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摘要

Using optical microscopy, we investigated the efflorescence of ammonium sulfate (AS) in aqueous AS and in aqueous 1:1 and 8:1 (by dry weight) poly(ethylene glycol)-400 (PEG-400)/AS particles deposited on a hydrophobically coated slide. Aqueous PEG-400/AS particles exposed to decreasing relative humidity (RH) exhibit a liquid−liquid phase separation below 90% RH with the PEG-400-rich phase surrounding the aqueous AS inner phase. Pure aqueous AS particles effloresced in the RH range from 36.3% to 43.7%, in agreement with literature data (31−48% RH). In contrast, aqueous 1:1 (by dry weight) PEG-400/AS particles with diameters of the AS phase from 7.2 to 19.2 μm effloresced between 26.8% and 33.9% RH and aqueous 8:1 (by dry weight) PEG-400/AS particles with diameters of the AS phase from 1.8 to 7.3 μm between 24.3% and 29.3% RH. Such low efflorescence relative humidity (ERH) values have never been reached before for AS particles of this size range. We show that these unprecedented low ERHs of AS in PEG-400/AS particles could not possibly be explained by the presence of low amounts of PEG-400 in the aqueous AS phase, by a potential inhibition of water evaporation via anomalously slow diffusion through the PEG coating, or by different time scales between various experimental techniques. High-speed photography of the efflorescence process allowed the development of the AS crystallization fronts within the particles to be monitored with millisecond time resolution. The nucleation sites were inferred from the initial crystal growth sites. Analysis of the probability distribution of initial sites of 31 and 19 efflorescence events for pure AS and 1:1 (by dry weight) PEG-400/AS particles, respectively, showed that the particle volume can be excluded as the preferred nucleation site in the case of pure AS particles. For aqueous 1:1 (by dry weight) PEG-400/AS particles preferential AS nucleation in the PEG phase and at the PEG/AS/substrate contact line can be excluded. On the basis of this probability analysis of efflorescence events together with the AS ERH values of pure aqueous AS and aqueous PEG-400/AS particles aforementioned, we suggest that in pure aqueous AS particles nucleation starts at the surface of the particles and attribute the lower ERH values observed for aqueous PEG-400/AS particles to the suppression of the surface-induced nucleation process. Our results suggest that surface-induced nucleation is likely to also occur during the efflorescence of atmospheric AS aerosol particles, possibly constituting the dominating nucleation pathway.
机译:使用光学显微镜,我们研究了硫酸铵(AS)在AS水溶液中以及在1:1和8:1(以干重计)的聚(乙二醇)-400(PEG-400)/ AS颗粒中沉积的风化作用。疏水涂层的载玻片。暴露于相对湿度(RH)降低的水性PEG-400 / AS颗粒在RH低于90%时表现出液-液相分离,富含PEG-400的相包围了AS内相。与相对湿度(31-48%RH)相一致,在RH处开花的纯净AS颗粒水化度为36.3%至43.7%。相反,AS相直径为7.2至19.2μm的1:1(按干重计)的PEG-400 / AS水溶液颗粒相对湿度为26.8%至33.9%,而PEG-400的水溶液为8:1(按干重计) / AS颗粒的AS相直径在1.8%到7.3μm之间,相对湿度在24.3%和29.3%之间。对于这种尺寸范围的AS颗粒,以前从未达到过如此低的风化相对湿度(ERH)值。我们表明,PEG-400 / AS颗粒中AS的这些空前的低ERHs不可能由AS水溶液中少量PEG-400的存在,通过异常缓慢扩散通过水的潜在抑制水蒸发来解释。 PEG包衣,或通过各种实验技术之间的不同时间标度。风化过程的高速照相允许以毫秒的时间分辨率监视颗粒内AS结晶前沿的发展。从最初的晶体生长位点推断出成核位点。对纯AS和1:1(以干重计)的PEG-400 / AS颗粒分别进行31和19个风化事件的初始位点的概率分布分析,结果表明,可以将颗粒体积排除为优选的成核位点。纯AS粒子的情况。对于水性1:1(以干重计)的PEG-400 / AS颗粒,可以排除PEG相中以及PEG / AS /底物接触线的优先AS成核。根据风化事件的概率分析以及上述纯水性AS和水性PEG-400 / AS颗粒的AS ERH值,我们建议在纯水性AS颗粒中成核始于颗粒表面,并归因于较低观察到水性PEG-400 / AS颗粒的ERH值可抑制表面诱导的成核过程。我们的结果表明,表面诱导的成核也可能在大气AS气溶胶颗粒的起花过程中发生,可能构成了主要的成核途径。

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