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Improving the characterization of dissolved organic carbon in cloud water: Amino acids and their impact on the oxidant capacity

机译:改善云水中溶解的有机碳的表征:氨基酸及其对氧化剂容量的影响

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摘要

Improving our understanding of cloud chemistry depends on achieving better chemical characterization (90% of the organic carbon [OC] fraction remains uncharacterized) and, consequently, assessing the reactivity of this complex system. In this manuscript, we report for the first time the concentrations of 16 amino acids (AAs) in 25 cloud water samples. The concentrations of individual AAs ranged from a few nM up to ~2.0 μM, and the average contribution of AAs corresponded to 9.1% (4.4 to 21.6%) of the dissolved OC (DOC) concentration. Considering their occurrence and concentrations, AAs were expected to represent an important hydroxyl radical (HO) sink in aqueous cloud samples. In this work, we estimated that approximately 17% (from 7 to 36%) of the hydroxyl radical-scavenging ability of the DOC could be attributed to the presence of AAs, whereas comparing the AAs suggested that an average of 51% (from 22 to 80%) of their reactivity with HO could account for the presence of tryptophan. These results clearly demonstrate that the occurrence and reactivity of AAs must be considered to better estimate the chemical composition and oxidant capacity of the cloud aqueous phase.
机译:增进我们对云化学的理解取决于获得更好的化学表征(有机碳[OC]组分的90%仍未表征),因此,评估了这个复杂系统的反应性。在本手稿中,我们首次报告了25个云水中样品中16种氨基酸(AAs)的浓度。单个AA的浓度范围从几nM到〜2.0μm,并且AA的平均贡献相当于溶解OC(DOC)浓度的9.1%(4.4至21.6%)。考虑到它们的出现和浓度,AA有望代表水云样品中一个重要的羟基自由基(HO )汇。在这项工作中,我们估计DOC清除羟自由基的能力约有17%(从7%到36%)可归因于AA的存在,而比较AA则表明平均为51%(从22%与HO 有80%的反应性可以解释色氨酸的存在。这些结果清楚地表明,必须考虑AA的发生和反应性,以更好地估算云水相的化学组成和氧化能力。

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