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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Aging of black carbon in outflow from anthropogenic sources using a mixing state resolved model: 2. Aerosol optical properties and cloud condensation nuclei activities
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Aging of black carbon in outflow from anthropogenic sources using a mixing state resolved model: 2. Aerosol optical properties and cloud condensation nuclei activities

机译:使用混合状态解析模型从人为来源流出的黑碳老化:2.气溶胶光学特性和云凝结核活动

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The Model of Aerosol Dynamics, Reaction, Ionization, and Dissolution with resolution of a mixing state of black carbon (BC) (referred to as MADRID-BC hereinafter) has recently been developed to accurately simulate the time evolution of the entire BC mixing statd. In this study, we apply MADRID-BC to evaluate the influence of changes in BC mixing state on aerosol optical properties and cloud condensation nuclei (CCN) activities in air parcels horizontally transported out from an urban area in Japan within the planetary boundary layer (PBL) over the ocean. The evaluation shows that the coatings on BC particles enhance light absorption at a wavelength of 550 nm by 38% in air leaving the source region and by 59% after transport over the ocean for half a day. When the model treats aerosols using the conventional size-resolved sectional representation that does not resolve BC mixing states, the simulated absorption coefficients and single scattering albedos are greater by 35-44% and smaller by 7-13%, respectively, than those from a simulation that resolves the BC mixing state. These results indicate that it is essential to take into account BC-free particles in atmospheric models for accurate prediction of aerosol optical properties, because the conventional representation cannot separately treat BC-containing and BC-free particles in each size section. The evaluation also shows that BC-containing particles having 55% and 83% of the BC mass can act as CCN at a supersaturation of 0.05% when they leave the source region and after transport for half a day, respectively. These results suggest the importance of the uplifting of BC particles from the PBL near source regions for their efficient long-range transport in the free troposphere. Results from comparisons with aerosol optical measurements conducted during various campaigns, such as the Asian Aerosol Characterization Experiment (ACE Asia) and the Indian Ocean Experiment (INDOEX), suggest that MADRID-BC simulations can capture general features of aerosol optical properties in outflow from anthropogenic sources.
机译:最近已经开发出具有黑碳(BC)混合状态分辨率的气溶胶动力学,反应,电离和溶解模型(以下称为MADRID-BC),以精确模拟所陈述的整个BC混合的时间演变。在这项研究中,我们应用MADRID-BC评估了BC混合状态的变化对从日本市区内行星边界层(PBL)水平运出的空气中气溶胶光学特性和云凝结核(CCN)活动的影响。 )在海洋上。该评估表明,BC颗粒上的涂层在离开源区域的空气中在550 nm波长处的光吸收提高了38%,并且在海洋上运输了半天后提高了59%。当模型使用无法解决BC混合状态的常规尺寸解析截面表示法处理气溶胶时,模拟吸收系数和单散射反照率分别比来自BC的那些大35-44%和小7-13%。解决BC混合状态的模拟。这些结果表明,必须准确地考虑大气模型中不含BC的颗粒,才能准确预测气溶胶的光学性能,因为常规表示无法分别处理每个尺寸区域中的含BC和不含BC的颗粒。该评估还表明,当具有BC质量的55%和83%的含BC颗粒离开源区域和运输半天后,它们可以以0.05%的过饱和度充当CCN。这些结果表明,BC粒子从源区域附近的PBL隆起对于它们在自由对流层中有效远距离传输的重要性。在各种活动(例如亚洲气溶胶表征实验(ACE Asia)和印度洋实验(INDOEX))中进行的气溶胶光学测量结果的比较结果表明,MADRID-BC模拟可以捕获人为流出物中气溶胶光学特性的一般特征资料来源。

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