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Global-scale combustion sources of organic aerosols: sensitivity to formation and removal mechanisms

机译:全球规模的有机气溶胶燃烧源:对形成和去除机制的敏感性

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pstrongAbstract./strong Organic compounds from combustion sources such as biomass burning and fossil fuel use are major contributors to the global atmospheric load of aerosols. We analyzed the sensitivity of model-predicted global-scale organic aerosols (OA) to parameters that control primary emissions, photochemical aging, and the scavenging efficiency of organic vapors. We used a computationally efficient module for the description of OA composition and evolution in the atmosphere (ORACLE) of the global chemistrya??climate model EMAC (ECHAM/MESSy Atmospheric Chemistry). A global dataset of aerosol mass spectrometer (AMS) measurements was used to evaluate simulated primary (POA) and secondary (SOA) OA concentrations. Model results are sensitive to the emission rates of intermediate-volatility organic compounds (IVOCs) and POA. Assuming enhanced reactivity of semi-volatile organic compounds (SVOCs) and IVOCs with OH substantially improved the model performance for SOA. The use of a hybrid approach for the parameterization of the aging of IVOCs had a small effect on predicted SOA levels. The model performance improved by assuming that freshly emitted organic compounds are relatively hydrophobic and become increasingly hygroscopic due to oxidation./p.
机译:> >摘要。来自燃烧源(例如生物质燃烧和化石燃料使用)的有机化合物是全球大气中气溶胶负荷的主要贡献者。我们分析了模型预测的全球规模有机气溶胶(OA)对控制一次排放,光化学老化和有机蒸气清除效率的参数的敏感性。我们使用了一个计算有效的模块来描述全球化学气候模型EMAC(ECHAM / MESSy大气化学)中的OA组成和大气中的演化(ORACLE)。气溶胶质谱仪(AMS)测量的全球数据集用于评估模拟的主要(POA)和次要(SOA)OA浓度。模型结果对中等挥发性有机化合物(IVOC)和POA的排放速率敏感。假设半挥发性有机化合物(SVOC)和IVOC与OH的反应性增强,将大大改善SOA的模型性能。使用混合方法对IVOC的老化进行参数化对预测的SOA水平影响很小。假设新鲜散发的有机化合物相对疏水并且由于氧化作用而变得越来越吸湿,则模型性能得到了改善。

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