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首页> 外文期刊>Environmental Science: Processes & Impacts >Primary and secondary organics in the tropical Amazonian rainforest aerosols: chiral analysis of 2-methyltetraols
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Primary and secondary organics in the tropical Amazonian rainforest aerosols: chiral analysis of 2-methyltetraols

机译:热带亚马逊雨林气溶胶中的主要和次要有机物:2-甲基四醇的手性分析

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摘要

This work presents the application of a new method to facilitate the distinction between biologically produced (primary) and atmospherically produced (secondary) organic compounds in ambient aerosols based on their chirality. The compounds chosen for this analysis were the stereomers of 2-methyltetraols, (2R,3S)- and (2S,3R)-methylerythritol, (l- and D-form, respectively), and (2S,3S)- and (2R,3R)-methylthreitol (l- and D-form), shown previously to display some enantiomeric excesses in atmospheric aerosols, thus to have at least a partial biological origin. In this work PM_(10) aerosol fractions were collected in a remote tropical rainforest environment near Manaus, Brazil, between June 2008 and June 2009 and analysed. Both 2-methylerythritol and 2-methylthreitol displayed a net excess of one enantiomer (either the l- or the D-form) in 60 to 72% of these samples. These net enantiomeric excesses corresponded to compounds entirely biological but accounted for only about 5% of the total 2-methyltetrol mass in all the samples. Further analysis showed that, in addition, a large mass of the racemic fractions (equal mixtures of d- and L-forms) was also biological. Estimating the contribution of secondary reactions from the isomeric ratios measured in the samples (=ratios 2-methylthreitol over 2-methylerythritol), the mass fraction of secondary methyltetrols in these samples was estimated to a maximum of 31% and their primary fraction to a minimum of 69%. Such large primary fractions could have been expected in PM_(10) aerosols, largely influenced by biological emissions, and would now need to be investigated in finer aerosols. This work demonstrates the effectiveness of chiral and isomeric analyses as the first direct tool to assess the primary and secondary fractions of organic aerosols.
机译:这项工作提出了一种新方法的应用,该方法可促进基于手性的环境气溶胶中生物产生的(主要)有机化合物和大气产生的(辅助)有机化合物之间的区别。选择用于该分析的化合物是2-甲基四醇,(2R,3S)-和(2S,3R)-甲基赤藓糖醇(分别为1和D型),(2S,3S)-和(2R (3R)-甲基苏糖醇(1-和D-形式),先前显示在大气气溶胶中显示出一些对映体过量,因此至少具有部分生物学起源。在这项工作中,在2008年6月至2009年6月之间,在巴西马瑙斯附近的一个偏远热带雨林环境中收集了PM_(10)气溶胶组分,并进行了分析。在这些样品的60%至72%中,2-甲基赤藓糖醇和2-甲基苏糖醇均显示净过量的一种对映体(L型或D型)。这些净对映体过量对应于完全生物的化合物,但仅占所有样品中2-甲基四醇总量的约5%。进一步的分析表明,此外,大量的外消旋组分(d和L形式的均等混合物)也是生物学的。根据样品中测得的同分异构率(=比例2-甲基苏糖醇对2-甲基赤藓糖醇)估算次级反应的贡献,估算这些样品中次级甲基四醇的质量分数最大为31%,初级伯克四醇的最小分数为最小占69%。如此大的主要成分在PM_(10)气溶胶中可能是预期的,很大程度上受到生物排放的影响,现在需要在更细的气溶胶中进行研究。这项工作证明了手性和异构体分析作为评估有机气溶胶主要和次要组分的第一个直接工具的有效性。

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