欧亚北极冰核粒子的陆地和海洋来源。

IF 3.3 3区 化学 Q2 CHEMISTRY, PHYSICAL
Guangyu Li, André Welti, Arianna Rocchi, Germán Pérez Fogwill, Manuel Dall'Osto, Zamin A Kanji
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引用次数: 0

摘要

冰成核粒子(INPs)在北极低层混合相云中催化初级冰的形成,影响其持久性和辐射特性。由于数据覆盖范围有限,特别是在欧亚北极地区,对遥远的北冰洋上INP的丰度和来源的了解很少。本研究展示了2021年8月和9月,以船为基础的北极世纪考察队对海水、雾水和空气中INP浓度的夏季测量结果,该考察队对巴伦支海、卡拉海和拉普捷夫海以及邻近的北极高纬度岛屿和群岛进行了考察。对环境气溶胶的热敏性测试表明,在-20°C以上的温度下,易热的生物源性INP占北极INP种群的大多数,在-25°C以下的温度下占较小比例。发现雾水中的INP含量与周围气溶胶相似,表明海洋空气中的INP也可能起到云凝结核的作用。使用船上的海上喷雾气溶胶气泡罐发生器测量雾化的INP,结果显示与环境中的INP浓度呈正相关,但与海水样品中的INP丰度无关。从海水样品中提取的空气中的INP浓度(使用代表北极的NaCl转换因子)明显低于环境空气或气泡罐实验中测量的浓度。气泡池实验中INP浓度与水中磷酸盐和荧光信号正相关。这表明气溶胶机制在优先分配生物INPs到大气中的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Terrestrial and marine sources of ice nucleating particles in the Eurasian Arctic.

Ice nucleating particles (INPs) catalyze primary ice formation in Arctic low-level mixed-phase clouds, influencing their persistence and radiative properties. Knowledge of the abundance and sources of INP over the remote Arctic Ocean is scarce due to limited data coverage, particularly in the Eurasian Arctic. This study presents summertime measurements of INP concentrations in seawater, fog water and air from the ship-based Arctic Century Expedition, exploring the Barents, Kara, and Laptev Seas, and the adjacent high Arctic islands and archipelagos in August and September 2021. Heat sensitivity tests of ambient aerosols revealed that heat-liable, biogenic INPs make up the majority of Arctic INP populations at temperatures above -20 °C, and to a lesser extent down to -25 °C. INP content in fog water is found to be similar to ambient aerosol, indicating that INP in marine air could also act as cloud condensation nuclei. Measurements of aerosolized INPs using an on-board sea-spray aerosol bubble tank generator exhibit a positive correlation with ambient INP concentrations, but not with INP abundance in seawater samples. INP concentrations in air derived from sea water samples (using a NaCl conversion factor representative for the Arctic) were significantly lower than those measured in ambient air or bubble tank experiments. INP concentrations in bubble tank experiments positively correlated with the phosphate and fluorescence signals in the water. This suggests an important role of the aerosolization mechanism for preferentially partitioning biogenic INPs to the atmosphere.

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来源期刊
Faraday Discussions
Faraday Discussions 化学-物理化学
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期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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