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工业气溶胶热点地区液态云的冰川作用、降雪及云量减少。

Glaciation of liquid clouds, snowfall, and reduced cloud cover at industrial aerosol hot spots.

作者信息

Toll Velle, Rahu Jorma, Keernik Hannes, Trofimov Heido, Voormansik Tanel, Manshausen Peter, Hung Emma, Michelson Daniel, Christensen Matthew W, Post Piia, Junninen Heikki, Murray Benjamin J, Lohmann Ulrike, Watson-Parris Duncan, Stier Philip, Donaldson Norman, Storelvmo Trude, Kulmala Markku, Bellouin Nicolas

机构信息

Institute of Physics, University of Tartu, Tartu, Estonia.

Department of Physics, University of Oxford, Oxford, UK.

出版信息

Science. 2024 Nov 15;386(6723):756-762. doi: 10.1126/science.adl0303. Epub 2024 Nov 14.

Abstract

The ability of anthropogenic aerosols to freeze supercooled cloud droplets remains debated. In this work, we present observational evidence for the glaciation of supercooled liquid-water clouds at industrial aerosol hot spots at temperatures between -10° and -24°C. Compared with the nearby liquid-water clouds, shortwave reflectance was reduced by 14% and longwave radiance was increased by 4% in the glaciation-affected regions. There was an 8% reduction in cloud cover and an 18% reduction in cloud optical thickness. Additionally, daily glaciation-induced snowfall accumulations reached 15 millimeters. Glaciation events downwind of industrial aerosol hot spots indicate that anthropogenic aerosols likely serve as ice-nucleating particles. However, rare glaciation events downwind of nuclear power plants indicate that factors other than aerosol emissions may also play a role in the observed glaciation events.

摘要

人为气溶胶使过冷云滴冻结的能力仍存在争议。在这项研究中,我们提供了在工业气溶胶热点地区,温度介于-10°C至-24°C之间的过冷液态水云发生冰化的观测证据。与附近的液态水云相比,受冰化影响的区域短波反射率降低了14%,长波辐射增加了4%。云量减少了8%,云光学厚度减少了18%。此外,每日因冰化导致的降雪累积量达到15毫米。工业气溶胶热点地区下风处的冰化事件表明,人为气溶胶可能充当了冰核粒子。然而,核电站下风处罕见的冰化事件表明,除气溶胶排放外的其他因素可能也在观测到的冰化事件中发挥了作用。

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