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Closure study on measured and modeled optical properties for dry and hydrated laboratory inorganic aerosols with mixtures of dicarboxylic acids

机译:干燥和水合二羧酸混合物的实验室水合无机无机气溶胶的光学模型的测量和建模的封闭研究

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摘要

A laboratory-based closure study was completed to compare measured and modeled optical properties and their dependence on controlled relative humidity (RH) for inorganic salts, dicarboxylic acids, and their mixtures. The closure between measured and modeled values of the light scattering coefficients were evaluated by calculating the average relative difference (ARD) values, which revealed agreement within 8.0% for the total scattering (σ_(sp)) and 14.8% for the back scattering (σ_(bsp)) values at dry RH conditions for all test aerosols. These ARD values were less than the total relative uncertainty based on the measurement and modeling approaches, indicating the achievement of closure for σ_(sp) and σ_(bsp). Optical properties derived from σ_(sp) including: (1) the hygroscopic growth factor,f_(σ_(sp)), (2) the backscatter ratio, b, and (3) the Angstroem exponent, a, were also compared with measured values. The ARD values between corresponding measured and modeled results for these derived optical parameters ranged from 0.1% to 30.8%. The impact of particulate organic matter (POM) on optical and hygroscopic properties of the aerosols tested here was also compared to the aerosol optical and composition measurements that occurred during the New England Air Quality Study-Intercontinental Transport and Chemical Transformation field campaign. Such comparison confirmed that a larger POM mass fraction resulted in less hygroscopicity for both the ambient and the laboratory aerosols. This study evaluated closure between laboratory measurements and model calculations and validated the reliability of the measured and modeled results with the closure analysis. Therefore, Mie-Lorentz model can be used to calculate the optical properties and their dependence on RH for other aerosols with more confidence.
机译:完成了一项基于实验室的封闭研究,比较了无机盐,二羧酸及其混合物的测量和建模光学性能及其对受控相对湿度(RH)的依赖性。通过计算平均相对差(ARD)值来评估光散射系数的测量值与模型值之间的闭合,这表明总散射(σ_(sp))在8.0%内,反散射(σ_)在14.8%以内(bsp))在所有干燥测试条件下的相对湿度。这些ARD值小于基于测量和建模方法的总相对不确定度,表明σ_(sp)和σ_(bsp)的闭合效果得以实现。由σ_(sp)得出的光学特性包括:(1)吸湿性生长因子f_(σ_(sp)),(2)后向散射比b,(3)Angstroem指数a与测量值进行了比较价值观。这些导出的光学参数在相应的测量结果和建模结果之间的ARD值范围为0.1%至30.8%。还将颗粒有机物(POM)对此处测试的气溶胶的光学和吸湿性能的影响与新英格兰空气质量研究-洲际运输和化学转化野外活动期间进行的气溶胶光学和成分测量进行了比较。这样的比较证实,较大的POM质量分数导致环境和实验室气溶胶的吸湿性降低。这项研究评估了实验室测量结果与模型计算之间的闭合度,并通过闭合度分析验证了测量和建模结果的可靠性。因此,Mie-Lorentz模型可用于更可靠地计算其他气溶胶的光学特性及其对RH的依赖性。

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  • 来源
    《Atmospheric environment 》 |2013年第12期| 177-187| 共11页
  • 作者单位

    Institute of Urban Environment, Chinese Academy of Sciences, 1799 Jimei Road, Xiamen, Fujian 361021, China;

    Institute of Urban Environment, Chinese Academy of Sciences, 1799 Jimei Road, Xiamen, Fujian 361021, China,Department of Mechanical and Manufacturing Engineering, University of Calgary, Calgary, AB T4N 1N4, Canada;

    Department of Civil & Environmental Engineering, University of Illinois, 205 N Mathews Ave., Urbana, IL 61801, USA;

    Department of Civil & Environmental Engineering, University of Illinois, 205 N Mathews Ave., Urbana, IL 61801, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optical property; Dicarboxylic acid; Closure study; Hygroscopic property;

    机译:光学性质;二羧酸封闭研究;吸湿性;

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