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Liquid-liquid phase separation in particles containing secondary organic material free of inorganic salts

机译:含有二次有机材料的颗粒中的液 - 液相分离,不含无机盐

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Particles containing secondary organic material (SOM) are ubiquitous in the atmosphere and play a role in climate and air quality. Recently, research has shown that liquid-liquid phase separation (LLPS) occurs at high relative humidity (RH) (greater than ~95 %) in α-pinene-derived SOM particles free of inorganic salts, while LLPS does not occur in isoprene-derived SOM particles free of inorganic salts. We expand on these findings by investigating LLPS at 290±1K in SOM particles free of inorganic salts produced from ozonolysis of α-caryophyllene, ozonolysis of limonene, and photo-oxidation of toluene. LLPS was observed at greater than ~95% RH in the biogenic SOM particles derived from α-caryophyllene and limonene while LLPS was not observed in the anthropogenic SOM particles derived from toluene. This work combined with the earlier work on LLPS in SOM particles free of inorganic salts suggests that the occurrence of LLPS in SOM particles free of inorganic salts is related to the oxygen-to-carbon elemental ratio (O : C) of the organic material. These results help explain the difference between the hygroscopic parameter κ of SOM particles measured above and below water saturation in the laboratory and field, and have implications for predicting the cloud condensation nucleation properties of SOM particles.
机译:含有二次有机材料(SOM)的颗粒在大气中普遍存在,在气候和空气质量中起作用。最近,研究表明,液 - 液相分离(LLP)在α-突烯 - 衍生的Som颗粒中的高相对湿度(RH)(大于〜95%),而LLP不会发生在异戊二烯 - 衍生的Som颗粒,不含无机盐。我们通过在SOM颗粒中调查LLP,在SOM颗粒中的290±1K中,从α-芳丙烯溶液的臭氧溶解,柠檬酸臭氧溶解和甲苯的光氧化,通过在SOM颗粒中调查MOM颗粒的290±1K进行扩展。在衍生自α-亚芳基烯基和柠檬烯的生物生成Som颗粒中,在大于〜95%RH下观察到LLP,而在衍生自甲苯的人为OM颗粒中未观察到LLP。这项工作与早期的工作LLPS在SOM颗粒中,没有无机盐,表明,来自无机盐的SOM颗粒中的LLP的发生与有机材料的氧 - 碳元素比(O:C)有关。这些结果有助于解释在实验室和领域中测量的上述和低于水饱和度的SOM颗粒的吸湿参数κ之间的差异,并对预测SOM颗粒的云凝结成核特性有影响。

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