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Exploration of the influence of environmental conditions on secondary organic aerosol formation and organic species properties using explicit simulations: development of the VBS-GECKO parameterization

机译:利用明确模拟探讨了环境条件对次级有机气溶胶形成和有机物种性能的影响:VBS-Gecko参数化的发展

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Atmospheric chambers have been widely used to study secondary organic aerosol (SOA) properties and formation from various precursors under different controlled environmental conditions and to develop parameterization to represent SOA formation in chemical transport models (CTMs). Chamber experiments are however limited in number, performed under conditions that differ from the atmosphere and can be subject to potential artefacts from chamber walls. Here, the Generator for Explicit Chemistry and Kinetics of Organics in the Atmosphere (GECKO-A) modelling tool has been used in a box model under various environmental conditions to (i) explore the sensitivity of SOA formation and properties to changes on physical and chemical conditions and (ii) develop a volatility basis set (VBS)-type parameterization. The set of parent hydrocarbons includes n-alkanes and 1-alkenes with 10, 14, 18, 22 and 26 carbon atoms, α-pinene, β-pinene and limonene, benzene, toluene, o-xylene, m-xylene and p-xylene. Simulated SOA yields and their dependences on the precursor structure, organic aerosol load, temperature and NOx levels are consistent with the literature. GECKO-A was used to explore the distribution of molar mass, vaporization enthalpy, OH reaction rate and Henry's law coefficient of the millions of secondary organic compounds formed during the oxidation of the different precursors and under various conditions. From these explicit simulations, a VBS-GECKO parameterization designed to be implemented in 3-D air quality models has been tuned to represent SOA formation from the 18 precursors using GECKO-A as a reference. In evaluating the ability of VBS-GECKO to capture the temporal evolution of SOA mass, the mean relative error is less than 20% compared to GECKO-A. The optimization procedure has been automated to facilitate the update of the VBS-GECKO on the basis of the future GECKO-A versions, its extension to other precursors and/or its modification to carry additional information.
机译:大气腔室已被广泛用于研究二次有机气溶胶(SOA)性质,并在不同受控环境条件下从各种前体形成,并开发参数化以在化学传输模型(CTMS)中表示SOA形成。然而,室内实验的数量限制在与大气不同的条件下进行,并且可以受到腔室壁的潜在伪成物。这里,在各种环境条件下,在大气中用于大气中的明确化学和有机动力学的发电机(Gecko-A)建模工具,以(i)探讨SOA形成和性质对物理和化学物质的变化的敏感性条件和(ii)开发波动性基础集(VBS) - 型参数化。该组母体烃包括N-烷烃和1-烯烃,其中10,18,18,22和26个碳原子,α-凸烯,β-焦烯和柠檬烯,苯,甲苯,O-二甲苯,M-二甲苯和P-二甲苯。模拟SOA产量及其对前体结构的依赖性,有机气溶胶载荷,温度和NOx水平与文献一致。 Gecko-A用于探讨摩尔质量,汽化焓,OH反应速率和亨利律系数的数百万次级有机化合物的分布,在不同前体和各种条件下形成的数百万次级有机化合物。从这些显式模拟中,设计用于在3-D空气质量模型中实现的VBS-Gecko参数化已经调整以表示使用Gecko-A作为参考的18个前体的SOA形成。在评估VBS-Gecko捕获SOA质量的时间演化的能力时,与Gecko-a相比,平均相对误差小于20%。优化过程已经自动化,以便在未来的壁虎 - 一个版本的基础上促进VBS-Gecko的更新,其向其他前体和/或其修改以进行额外信息。

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