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Sensitivities of the absorptive partitioning model of secondary organic aerosol formation to the inclusion of water

机译:次生有机气溶胶形成的吸收分配模型对水分吸收的敏感性

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The predicted distribution of semi-volatile organic components between the gaseous and condensed phase as a function of ambient relative humidity and the specific form of the partitioning model used has been investigated. A mole fraction based model, modified so as not to use molar mass in the calculation, was found to predict identical RH dependence of component partitioning to that predicted by the conventional mass-based partitioning model which uses a molar mass averaged according to the number of moles in the condensed phase. A recently reported third version of the partitioning model using individual component molar masses was shown to give significantly different results to the other two models. Further sensitivities to an assumed pre-existing particulate loading and to parameterised organic component non-ideality are explored and shown to contribute significantly to the variation in predicted secondary organic particulate loading.
机译:已经研究了气态和冷凝态之间半挥发性有机组分作为环境相对湿度的函数的预测分布以及所用分配模型的特定形式。发现基于摩尔分数的模型经过修改,因此在计算中不使用摩尔质量,可以预测组分分配的RH依赖性与传统的基于质量的分配模型所预测的RH依赖性相同,传统的基于质量的分配模型使用根据摩尔数平均的摩尔质量缩合相中的摩尔数。最近显示的使用单独组分摩尔质量的分区模型的第三版显示出与其他两个模型明显不同的结果。探索了对假定的预先存在的颗粒物负荷和对参数化的有机组分非理想性的进一步敏感性,并显示出它们对预测的次级有机颗粒物负荷的变化有显着贡献。

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