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Application of Group Contribution Methods to the Partitioning of Semi-volatile Organic Compounds on Atmospheric Particulate Matter

机译:基团贡献法在大气颗粒物半挥发性有机物分配中的应用

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The gas-particle partitioning of a semi-volatile organic compound (SOC) to atmospheric aerosols with organic coating is strongly influenced by temperature (vapor pressure), relative humidity (RH), the chemical composition of the particulate matter, and the amount of organic material in the particulate matter. Experimental partitioning coefficients (K_p) of SOCs were measured using the outdoor Teflon~circleR film chambers and compared to theoretical calculated K_p values as determined from SOC vapor pressures and associated activity coefficients. A thermodynamic model based on group contribution methods was used to estimate the activity coefficients of SOCs in the organic liquid layer of different types of aerosols. Because the true K_p of an SOC in a given medium includes the activity coefficient term, the linearity between log K_p and log P deg_((L)) can be obtained by correcting measured K_p values by the activity coefficient of given SOC at a given temperature and humidity. In this work the partitioning of different types of SOCs on atmospheric particles consisting of liquid-like organic component, such as wood smoke, diesel soot, and secondary aerosol, was studied as a function of temperature and relative humidity in outdoor experimental chambers.
机译:半挥发性有机化合物(SOC)在带有有机涂层的大气气溶胶中的气体颗粒分配受到温度(蒸气压),相对湿度(RH),颗粒物质的化学组成和有机物含量的强烈影响颗粒物质中的物质。使用室外的Teflon-circleR薄膜腔室测量SOC的实验分配系数(K_p),并将其与从SOC蒸气压和相关活度系数确定的理论计算的K_p值进行比较。利用基于基团贡献法的热力学模型估算了不同类型气溶胶在有机液层中SOC的活度系数。因为给定介质中SOC的真实K_p包括活度系数项,所以可以通过在给定温度下用给定SOC的活度系数校正测得的K_p值来获得log K_p和log P deg _((L))之间的线性关系。和湿度。在这项工作中,研究了在室外实验室内温度和相对湿度的函数下,不同类型的SOC在由液体状有机成分(例如木烟,柴油烟灰和二次气溶胶)组成的大气颗粒上的分配。

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