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Brown Carbon Production by Aqueous-Phase Interactions of Glyoxal and SO_2

机译:乙二醛与SO_2的水相相互作用产生褐碳

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摘要

Oxalic acid and sulfate salts are major components of aerosol particles. Here, we explore the potential for their respective precursor species, glyoxal and SO_2 to form atmospheric brown carbon via aqueous-phase reactions in a series of bulk aqueous and flow chamber aerosol experiments. In bulk aqueous solutions, UV- and visible-light-absorbing products are observed at pH 3-4 and 5-6, respectively, with small but detectable yields of hydroxyquinone and polyketone products formed, especially at pH 6. Hydroxymethanesulfonate (HMS), C_2, and C_3 sulfonates are major products detected by electrospray ionization mass spectrometry (ESI-MS) at pH 5. Past studies have assumed that the reaction of formaldehyde and sulfite was the only atmospheric source of HMS. In flow chamber experiments involving sulfite aerosol and gas-phase glyoxal with only 1 min residence times, significant aerosol growth is observed. Rapid brown carbon formation is seen with aqueous aerosol particles at >80% relative humidity (RH). Brown carbon formation slows at 50-60% RH and when the aerosol particles are acidified with sulfuric acid but stops entirely only under dry conditions. This chemistry may therefore contribute to brown carbon production in cloud-processed pollution plumes as oxidizing volatile organic compounds (VOCs) interact with SO_2 and water.
机译:草酸和硫酸盐是气溶胶颗粒的主要成分。在这里,我们探索了一系列各自的水相和流室气溶胶实验中,它们各自的前体物质,乙二醛和SO_2通过水相反应形成大气棕碳的潜力。在散装水溶液中,分别在pH 3-4和5-6处观察到吸收紫外线和可见光的产物,形成的羟基醌和聚酮产物的收率小但可检测到,尤其是在pH 6时。羟基甲烷磺酸盐(HMS) C_2和C_3磺酸盐是通过电喷雾电离质谱(ESI-MS)在pH 5下检测到的主要产物。过去的研究假设甲醛和亚硫酸盐的反应是HMS的唯一大气来源。在涉及亚硫酸盐气溶胶和气相乙二醛且停留时间仅为1分钟的流室实验中,观察到明显的气溶胶生长。在> 80%相对湿度(RH)的情况下,水性气溶胶颗粒会迅速形成棕色碳。在50-60%RH时以及当气雾剂颗粒被硫酸酸化时,棕色碳的形成会减慢,但仅在干燥条件下才能完全停止。因此,由于氧化性挥发性有机化合物(VOC)与SO_2和水相互作用,因此这种化学物质可能有助于云处理的污染羽流中褐碳的产生。

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