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The Impact of Divalent Cations on the Enrichment of Soluble Saccharides in Primary Sea Spray Aerosol

机译:二价阳离子对初级海水喷雾气溶胶中可溶性糖富集的影响

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Field measurements have shown that sub-micrometer sea spray aerosol (SSA) is significantly enriched in organic material, of which a large fraction has been attributed to soluble saccharides. Existing mechanistic models of SSA production struggle to replicate the observed enhancement of soluble organic material. Here, we assess the role for divalent cation mediated co-adsorption of charged surfactants and saccharides in the enrichment of soluble organic material in SSA. Using measurements of particle supersaturated hygroscopicity, we calculate organic volume fractions for molecular mimics of SSA generated from a Marine Aerosol Reference Tank. Large enhancements in SSA organic volume fractions (X org 0.2) were observed for 50 nm dry diameter ( d p ) particles in experiments where cooperative ionic interactions were favorable (e.g., palmitic acid, Mg 2+ , and glucuronic acid) at seawater total organic carbon concentrations (1.15 mM C) and ocean pH. Significantly smaller SSA organic volume fractions (X org 1.5 × 10 ?3 ) were derived from direct measurements of soluble saccharide concentrations in collected SSA with dry diameters 250 nm, suggesting that organic enrichment is strongly size dependent. The results presented here indicate that divalent cation mediated co-adsorption of soluble organics to insoluble surfactants at the ocean surface may contribute to the enrichment of soluble saccharides in SSA. The extent to which this mechanism explains the observed enhancement of saccharides in nascent SSA depends strongly on the concentration, speciation, and charge of surfactants and saccharides in the sea surface microlayer.
机译:现场测量表明,亚微米级的海雾气溶胶(SSA)大量富含有机物质,其中很大一部分归因于可溶性糖。现有的SSA生产的机理模型难以复制观察到的可溶性有机物质的增强。在这里,我们评估带电表面活性剂和糖类的二价阳离子介导的共吸附在SSA中可溶性有机物质富集中的作用。使用颗粒超饱和吸湿性的测量,我们计算了从海洋气溶胶参考罐产生的SSA分子模拟物的有机体积分数。在海水总有机量有利于协同离子相互作用(例如棕榈酸,Mg 2+和葡萄糖醛酸)的实验中,对于50 nm干径(dp)的颗粒,SSA有机体积分数(X org> 0.2)大大提高。碳浓度(<1.15 mM C)和海洋pH值。直接测量收集到的干直径<250 nm的SSA中可溶性糖的浓度,得出的SSA有机体积分数明显较小(X org <1.5×10?3),这表明有机物富集强烈依赖于大小。此处给出的结果表明,二价阳离子介导的可溶性有机物与海洋表面不溶性表面活性剂的共吸附可能有助于SSA中可溶性糖的富集。该机制解释了在新生的SSA中观察到的糖类增强的程度在很大程度上取决于海表微层中表面活性剂和糖类的浓度,物种和电荷。

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