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Wintertime Airborne Measurements of Ice Nucleating Particles in the High Arctic: A Hint to a Marine, Biogenic Source for Ice Nucleating Particles

机译:冬季核心的冰成核颗粒的冬季核心粒子:含有含有冰核颗粒的植物,生物源的暗示

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摘要

Ice nucleating particles (INPs) affect the radiative properties of cold clouds. Knowledge concerning their concentration above ground level and their potential sources is scarce. Here we present the first highly temperature resolved ice nucleation spectra of airborne samples from an aircraft campaign during late winter in 2018. Most INP spectra featured low concentration levels (<3· 10~(-4) L~(-1) at -15°C). However, we also found INP concentrations of up to 1.8·10~(-2) L~(-1) at -15°C and freezing onsets as high as -7.5°C for samples mainly from the marine boundary layer. Shape and onset temperature of the ice nucleation spectra of those samples as well as heat sensitivity hint at biogenic INP. Colocated measurements additionally indicate a local marine influence rather than long-range transport. Our results suggest that even in late winter above 80°N a local marine source for biogenic INP, which can efficiently nucleate ice at high temperatures, is present.
机译:冰核颗粒(Inps)影响冷云的辐射性能。关于他们浓度高于地面和潜在来源的知识是稀缺的。在这里,我们在2018年晚冬季,我们介绍了来自飞机运动的第一个高度温度分辨的飞行样本的冰核谱。大多数INP光谱特征在-15的低浓度水平(<3·10〜(-4)L〜(-1) °C)。然而,我们发现在-15°C和冻结持续高达-7.5°C的INP浓度高达1.8·10(-2)L〜(-1),主要来自海洋边界层。这些样品的冰成核光谱的形状和发作温度以及生物素INP的热敏感性暗示。 CONOCATED测量另外表示当地海洋影响而不是远程运输。我们的研究结果表明,即使在高于80°高于80°N以上的生物内INP的局部海洋来源,也可以在高温下有效地核成冰。

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    《Oceanographic Literature Review》 |2020年第9期|1894-1894|共1页
  • 作者单位

    Experimental Aerosol and Cloud Microphysics Leibniz Institute for Tropospheric Research Leipzig Germany;

    Experimental Aerosol and Cloud Microphysics Leibniz Institute for Tropospheric Research Leipzig Germany;

    Experimental Aerosol and Cloud Microphysics Leibniz Institute for Tropospheric Research Leipzig Germany;

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