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In-situ atomic force microscopy investigation of aerosols exposed to different humidities

机译:暴露于不同湿度的气溶胶的原位原子力显微镜研究

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In-situ atomic force microscopy (AFM) studies were performed on aerosol samples showing the potential of a topochemical approach for gaining information on chemical and physical aerosol properties. The behavior of single sub-micron particles has been investigated with respect to changing humidity in the surrounding atmosphere. Volume calculations allowed monitoring of these changes on a quantitative basis. As expected these in-situ experiments showed the restructuring of particles with highly agglomerated chain-like structures induced by condensation and evaporation on a nanometer scale. The particle volumes decreased as the branched chain-like structure changed into a more regular clump-like structure. The degree of restructuring was clearly depending on the chemical surface properties as could be proven for soot-like test aerosol particles. The collapse of the chain-like structure on a nanometer scale was found to be significantly more pronounced for soot particles previously exposed to ozone. Furthermore, in-situ studies were performed on ammonium sulfate test aerosol., Though a distinct deliquescence point typical for salts could not be detected, neither in the topography nor in the phase image, ammonium sulfate test aerosol particles seemed to partially dissolve in humid atmosphere and hence to decrease in volume. Thus, the volume decrease induced by purging with humid nitrogen and subsequent drying which was also observed for a considerable fraction of urban aerosol, could be interpreted in terms of composition and surface properties considering the geometrical structure (i.e. state of agglomeration) of the particles.
机译:在气溶胶样品上进行了原位原子力显微镜(AFM)研究,显示了使用拓扑化学方法获得化学和物理气溶胶特性信息的潜力。关于周围大气中湿度的变化,已经研究了单个亚微米颗粒的行为。体积计算允许对这些变化进行定量监测。正如预期的那样,这些原位实验显示了纳米级缩合和蒸发引起的具有高度团聚的链状结构的颗粒的重组。随着支链状结构变为更规则的块状结构,颗粒体积减小。改组的程度显然取决于化学表面性质,对于烟尘状测试气雾剂颗粒可以证明这一点。对于先前暴露于臭氧的烟灰颗粒,发现纳米级链状结构的崩溃明显更为明显。此外,对硫酸铵测试气雾剂进行了原位研究。尽管无法检测到典型的盐分明显的潮解点,但无论是在形貌还是在相图中,硫酸铵测试气雾剂颗粒似乎都部分溶解在潮湿的气氛中因此体积减小。因此,考虑到颗粒的几何结构(即团聚状态),可以用组成和表面性质来解释由湿氮气吹扫并随后干燥引起的体积减小,这在相当大比例的城市气溶胶中也观察到。

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