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The sensitivity of secondary organic aerosol component partitioning to the predictions of component properties – Part 1: A systematic evaluation of some available estimation techniques

机译:二次有机气溶胶组分分配对组分特性预测的敏感性 - 第1部分:对一些可用估计技术的系统评价

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A large number of calculations of the absorptive partitioning of organic compounds have been made using a number of methods to predict the component vapour pressures, p0, and activity coefficients, γi, required in the calculations. The sensitivities of the predictions in terms of the condensed component masses, volatility, O:C ratio, molar mass and functionality distributions to the choice of p0 and γi models and to the number of components to represent the organic mixture have been systematically compared. The condensed component mass was found to be highly sensitive to the vapour pressure model, and less sensitive to both the activity coefficient model and the number of components used to represent the mixture although the sensitivity to the change in property estimation method increased substantially with increased simplification in the treatment of the organic mixture. This was a general finding and was also clearly evident in terms of the predicted component functionality, O:C ratio, molar mass and volatility distributions of the condensed organic components. Within the limitations of the study, this clearly demonstrates the requirement for more accurate representation of the p0 and γi of the semi-volatile organic proxy components used in simplified models as the degree of simplification increases. This presents an interesting paradox, since such reduction in complexity necessarily leads to divergence from the complex behaviour of real multicomponent atmospheric aerosol.
机译:已经使用许多方法制备了大量计算有机化合物的有机化合物的分析,以预测计算中所需的组分蒸汽压力,P0和活性系数γi。系统地比较了缩合组分质量,挥发性,o:c比,摩尔质量和功能分布的预测的敏感性,以选择P0和γi模型以及代表有机混合物的组分的数量。发现冷凝的组分质量对蒸气压模型非常敏感,并且对活性系数模型的敏感性较小,并且用于表示混合物的组分数量,尽管对性能估计方法变化的敏感性大大增加了简化在处理有机混合物中。这是一般的发现,并且在预测的组分官能团,O:C比,凝聚的有机组分的摩尔质量和挥发性分布方面也清楚明显。在该研究的局限内,这清楚地证明了在简化程度上增加的简化模型中使用的半挥发性有机代理部件的更准确表示的要求。这提出了一个有趣的悖论,因为这种复杂性的降低必然导致来自真实多组分大气气溶胶的复杂行为的分歧。

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