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Partitioning of Black Carbon between ultrafine and fine particle modes in an urban airport vs. urban background environment

机译:城市机场中黑碳在超细颗粒模式与细颗粒模式之间的分配与城市背景环境的关系

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In this work, we characterize the Black Carbon (BC) aerosol in an urban airport vs. urban background environment with the objective to evaluate when and how the ultrafine BC dominates the bulk aerosol. Aerosol optical and microphysical properties were measured in a Mediterranean urban area (Rome) at sites impacted by BC sources including fossil fuels (FF), and biomass burning (BB). Experimental BC data were interpreted through measurement-constrained simulations of BC microphysics and optical properties. A "scheme" to separate the ultrafine BC was experimented on the basis of the relation found between changes in the BC partitioning between Aitken and accumulation mode particles, and relevant changes in particle size distribution and optical properties of the bulk aerosol. This separation scheme, applied to experimental data, proved useful to reveal the impact of airport and road traffic emissions. Findings may have important atmospheric implications. The experimented scheme can help separating different BC sources (FF, BB, "aged" BC) when BC size distributions may be very difficult to obtain (satellite, columnar observations, routine monitoring). Indeed, separating the ultrafine BC from the fine BC may provide significant benefits in addressing BC impact on air quality and climate.
机译:在这项工作中,我们对城市机场与城市背景环境中的黑碳(BC)气溶胶进行了表征,目的是评估超细BC何时以及如何在主体气溶胶中占主导地位。在地中海市区(罗马),在受不列颠哥伦比亚资源(包括化石燃料(FF)和生物质燃烧(BB))影响的地点测量了气溶胶的光学和微物理性质。通过测量约束的BC微观物理和光学特性模拟来解释BC实验数据。基于发现Aitken和累积模式颗粒之间的BC分配变化与散装气溶胶的粒径分布和光学特性的相关变化之间的关系,对分离超细BC的“方案”进行了实验。将该分离方案应用于实验数据,证明对揭示机场和道路交通排放的影响非常有用。调查结果可能会对大气产生重要影响。当可能很难获得BC大小分布时(卫星,柱状观测,常规监测),该实验方案可以帮助分离不同的BC源(FF,BB,“老化” BC)。的确,将超细BC与细BC分开可能在解决BC对空气质量和气候的影响方面提供显着优势。

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