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A larger pool of ozone-forming carbon compounds in urban atmospheres

机译:城市大气中形成臭氧的碳化合物总量更大

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Volatile organic compounds play a central role in the processes that generate both urban photochemical smog and tropospheric ozone. For successful and accurate prediction of these pollution episodes, identification of the dominant reactive species within the volatile organic carbon pool is needed. At present, lack of resolution inherent in single-column chromatographic analysis limits such a detailed chemical characterization of the complex urban atmosphere. Here we present an improved method of peak deconvolution from double-column (orthogonal) gas chromatography. This has enabled us to isolate and classify more than 500 chemical species of volatile organic compounds in urban air, including over 100 multi-substituted monoaromatic and volatile oxygenated hydrocarbons. We suggest that previous assessments of reactive carbon species may therefore have underestimated the contribution made by volatile organic compounds to urban pollution, particularly for compounds with more than six carbon atoms. Incorporating these species in predictive models should greatly improve our understanding of photochemical ozone yields and the formation of harmful secondary organic aerosols.
机译:挥发性有机化合物在产生城市光化学烟雾和对流层臭氧的过程中起着核心作用。为了成功,准确地预测这些污染事件,需要确定挥发性有机碳库中主要的反应物种。目前,单柱色谱分析固有的分辨率不足限制了复杂城市大气的详细化学特征。在这里,我们提出了一种从双柱(正交)气相色谱峰去卷积的改进方法。这使我们能够对城市空气中500多种挥发性有机化合物的化学种类进行分离和分类,包括100多种多取代的单芳烃和挥发性氧化烃。我们建议,以前对活性碳物质的评估可能低估了挥发性有机化合物对城市污染的贡献,特别是对于碳原子数超过六个的化合物。将这些物种纳入预测模型应大大改善我们对光化学臭氧产量和有害的次级有机气溶胶形成的理解。

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