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Cirrus Cloud Formation and the Role of Heterogeneous Ice Nuclei

机译:Cirrus云形成和异质冰核的作用

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Composition, size, and phase are key properties that define the ability of an aerosol particle to initiate ice in cirrus clouds. Properties of cirrus ice nuclei (IN) have not been well constrained due to a lack of systematic measurements in the upper troposphere. We have analyzed the size and composition of sublimated cirrus particles sampled from a high altitude research aircraft using both in situ and offline techniques. Mineral dust and metallic particles are the most enhanced residue types relative to background aerosol. Using a combination of cirrus residue composition, relative humidity, and cirrus particle concentration measurements, we infer that heterogeneous nucleation is a dominant cirrus formation mechanism for the mid-latitude, subtropical, and tropical regions under study. Other proposed heterogeneous IN including biomass burning particles, elemental carbon, and biological material were not abundant in cirrus residuals.
机译:组成,尺寸和相是关键性质,其定义气溶胶颗粒在卷云中引发冰的能力。由于上层对流层缺乏系统测量,卷曲冰核(IN)的性质尚未得到很好的限制。我们分析了使用原位和离线技术从高海拔研究飞机上采样的升华卷曲颗粒的大小和组成。矿物粉尘和金属颗粒是相对于背景气溶胶的残留物类型最强。使用卷心残留物组合物,相对湿度和卷曲颗粒浓度测量的组合,我们推断出异构成核是用于中纬度,亚热带和热带地区的主要卷曲形成机制。其他提出的非均相包括生物质燃烧颗粒,元素碳和生物材料在卷曲残留物中并不丰富。

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