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首页> 外文期刊>Chimia >UVB-irradiated Laboratory-generated Secondary Organic Aerosol Extracts Have Increased Cloud Condensation Nuclei Abilities: Comparison with Dissolved Organic Matter and Implications for the Photomineralization Mechanism
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UVB-irradiated Laboratory-generated Secondary Organic Aerosol Extracts Have Increased Cloud Condensation Nuclei Abilities: Comparison with Dissolved Organic Matter and Implications for the Photomineralization Mechanism

机译:UVB辐射的实验室生成的二次有机气溶胶提取物具有增加的云凝结核能力:与溶解的有机物的比较及其对光矿化机理的启示

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During their atmospheric lifetime, organic compounds within aerosols are exposed to sunlight and undergo photochemical processing. This atmospheric aging process changes the ability of organic aerosols to form cloud droplets and consequently impacts aerosol-cloud interactions. We recently reported changes in the cloud forming properties of aerosolized dissolved organic matter (DOM) due to a photomineralization mechanism, transforming high-molecular weight compounds in DOM into organic acids, CO and CO_2. To strengthen the implications of this mechanism to atmospheric aerosols, we now extend our previous dataset and report identical cloud activation experiments with laboratory-generated secondary organic aerosol (SOA) extracts. The SOA was produced from the oxidation of α-pinene and naphthalene, a representative biogenic and anthropogenic source of SOA, respectively. Exposure of aqueous solutions of SOA to UVB irradiation increased the dried organic material's hygroscopicity and thus its ability to form cloud droplets, consistent with our previous observations for DOM. We propose that a photomineralization mechanism is also at play in these SOA extracts. These results help to bridge the gap between DOM and SOA photochemistry by submitting two differently-sourced organic matter materials to identical experimental conditions for optimal comparison.
机译:在大气寿命中,气溶胶中的有机化合物会暴露在阳光下并进行光化学处理。这种大气老化过程改变了有机气溶胶形成云滴的能力,因此影响了气溶胶与云的相互作用。我们最近报道了由于光矿化机制,雾化的溶解有机物(DOM)的云形成特性发生了变化,将DOM中的高分子量化合物转化为有机酸,CO和CO_2。为了加强该机制对大气气溶胶的影响,我们现在扩展以前的数据集,并报告使用实验室产生的二次有机气溶胶(SOA)提取物进行的相同的云活化实验。 SOA分别由α-pine烯和萘的氧化产生,α-pine烯和萘分别是SOA的代表生物源和人为源。 SOA水溶液暴露于UVB辐射下会增加干燥有机材料的吸湿性,从而增加其形成云滴的能力,这与我们之前对DOM的观察一致。我们建议在这些SOA提取物中还存在光矿化机制。这些结果通过将两种来源不同的有机物质提交到相同的实验条件下进行最佳比较,有助于弥合DOM和SOA光化学之间的差距。

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