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Atmospheric organic and bio-aerosols as cloud condensation nuclei (CCN): A review

机译:大气有机和生物气溶胶作为云凝结核(CCN):综述

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摘要

Organic substances have been recognized as active cloud condensation and ice formation nuclei for several decades. In some regions of the world, these organic compounds (OC) consist predominantly of suspended matter mass, which can have local (e.g. toxicity, health hazards) and global (e.g. climate change) impacts. However, due to the complexity of their chemical nature, the significance of organic molecules in driving physical and chemical atmospheric processes is still very uncertain and poorly understood. The aim of this review paper is to assess the current state of knowledge regarding the role of organic aerosols (including bioaerosols) as cloud condensation nuclei (CCN), as well as to compare the existing theoretical and experimental data. It seems that classical Kohler theory does not adequately describe the hygroscopic behaviour of predominantly identified organic CCN such as pure dicarboxylic acid particles. Factors such as surface tension, impurities, volatility, morphology, contact angle, deliquescence, and the oxidation process should be considered in the theoretical prediction of the CCN ability of OC and the interpretation of experimental results. Major identified constituents of organic CCN, their main sources and their CCN properties will be herein reviewed. We will also discuss areas of uncertainty and expose key issues deserving of future research.
机译:几十年来,有机物质已被公认为是活跃的云凝结和冰形成核。在世界上的某些地区,这些有机化合物(OC)主要由悬浮物质组成,这些物质可能会产生局部(例如毒性,健康危害)和全球(例如气候变化)影响。然而,由于其化学性质的复杂性,有机分子在驱动物理和化学大气过程中的重要性仍是非常不确定的,并且了解甚少。本文的目的是评估有关有机气溶胶(包括生物气溶胶)作为云凝结核(CCN)的作用的当前知识状态,并比较现有的理论和实验数据。似乎经典的科勒理论不能充分描述主要识别的有机CCN(例如纯二羧酸颗粒)的吸湿性能。在理论上预测OC的CCN能力和解释实验结果时,应考虑诸如表面张力,杂质,挥发性,形态,接触角,潮解和氧化过程等因素。本文将对有机CCN的主要鉴定成分,其主要来源及其CCN特性进行审查。我们还将讨论不确定性领域,并揭示值得未来研究的关键问题。

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