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Extensive Soot Compaction by Cloud Processing from Laboratory and Field Observations

机译:通过实验室和现场观察通过云处理进行广泛的烟灰压实

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摘要

Soot particles form during combustion of carbonaceous materials and impact climate and air quality. When freshly emitted, they are typically fractal-like aggregates. After atmospheric aging, they can act as cloud condensation nuclei, and water condensation or evaporation restructure them to more compact aggregates, affecting their optical, aerodynamic, and surface properties. Here we survey the morphology of ambient soot particles from various locations and different environmental and aging conditions. We used electron microscopy and show extensive soot compaction after cloud processing. We further performed laboratory experiments to simulate atmospheric cloud processing under controlled conditions. We find that soot particles sampled after evaporating the cloud droplets, are significantly more compact than freshly emitted and interstitial soot, confirming that cloud processing, not just exposure to high humidity, compacts soot. Our findings have implications for how the radiative, surface, and aerodynamic properties, and the fate of soot particles are represented in numerical models.
机译:碳质材料燃烧期间会形成烟尘颗粒,并影响气候和空气质量。当新鲜散发出来时,它们通常是分形的聚集体。在大气老化之后,它们可以充当云凝结核,并且水凝结或蒸发会将其重组为更紧密的聚集体,从而影响其光学,空气动力学和表面性质。在这里,我们调查了来自不同位置以及不同环境和老化条件的环境烟灰颗粒的形态。我们使用电子显微镜检查并显示了云处理后的大量烟灰压实。我们进一步进行了实验室实验,以模拟受控条件下的大气云处理。我们发现,蒸发了云滴后采样的烟灰颗粒比新鲜散发的烟灰要紧密得多,这证实了云处理(不仅仅是暴露于高湿度下)会压实烟灰。我们的发现对数值模型如何表示辐射,表面和空气动力学特性以及烟尘颗粒的结局具有影响。

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