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DOI10.5194/acp-20-2177-2020
The day-to-day co-variability between mineral dust and cloud glaciation: A proxy for heterogeneous freezing
Villanueva D.; Heinold B.; Seifert P.; Deneke H.; Radenz M.; Tegen I.
发表日期2020
ISSN1680-7316
起始页码2177
结束页码2199
卷号20期号:4
英文摘要To estimate the global co-variability between mineral dust aerosol and cloud glaciation, we combined an aerosol model reanalysis with satellite retrievals of cloud thermodynamic phase. We used the CALIPSO-GOCCP product from the A-Train satellite constellation to assess whether clouds are composed of liquid or ice and the MACC reanalysis to estimate the dust mixing ratio in the atmosphere. Night-time retrievals within a temperature range from +3 to -42ĝC for the period 2007-2010 were included. The results confirm that the cloud thermodynamic phase is highly dependent on temperature and latitude. However, at middle and high latitudes, at equal temperature and within narrow constraints for humidity and static stability, the average frequency of fully glaciated clouds increases by +5 to +10 % for higher mineral dust mixing ratios. The discrimination between humidity and stability regimes reduced the confounding influence of meteorology on the observed relationship between dust and cloud ice. Furthermore, for days with similar mixing ratios of mineral dust, the cloud ice occurrence frequency in the Northern Hemisphere was found to be higher than in the Southern Hemisphere at -30ĝC but lower at -15ĝC. This contrast may suggest a difference in the susceptibility of cloud glaciation to the presence of dust. Based on previous studies, the differences at -15ĝC could be explained by higher feldspar fractions in the Southern Hemisphere, while the higher freezing efficiency of clay minerals in the Northern Hemisphere may explain the differences at -30ĝC. © 2020. This work is distributed under the Creative Commons Attribution 4.0 License.
语种英语
scopus关键词CALIPSO; cloud; discriminant analysis; dust; freezing; glaciation; mixing ratio; Northern Hemisphere; Southern Hemisphere; static response; thermodynamics
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/247961
作者单位Leibniz Institute for Tropospheric Research (TROPOS), Leipzig, Germany
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Villanueva D.,Heinold B.,Seifert P.,et al. The day-to-day co-variability between mineral dust and cloud glaciation: A proxy for heterogeneous freezing[J],2020,20(4).
APA Villanueva D.,Heinold B.,Seifert P.,Deneke H.,Radenz M.,&Tegen I..(2020).The day-to-day co-variability between mineral dust and cloud glaciation: A proxy for heterogeneous freezing.ATMOSPHERIC CHEMISTRY AND PHYSICS,20(4).
MLA Villanueva D.,et al."The day-to-day co-variability between mineral dust and cloud glaciation: A proxy for heterogeneous freezing".ATMOSPHERIC CHEMISTRY AND PHYSICS 20.4(2020).
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