GSTDTAP  > 地球科学
DOI10.5194/acp-18-15437-2018
Simulating the influence of primary biological aerosol particles on clouds by heterogeneous ice nucleation
Hummel, Matthias1,3; Hoose, Corinna1; Pummer, Bernhard2; Schaupp, Caroline1; Froehlich-Nowoisky, Janine2; Moehler, Ottmar1
2018-10-26
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2018
卷号18期号:20页码:15437-15450
文章类型Article
语种英语
国家Germany; Norway
英文摘要

Primary ice formation, which is an important process for mixed-phase clouds with an impact on their lifetime, radiative balance, and hence the climate, strongly depends on the availability of ice-nucleating particles (INPs). Super-cooled droplets within these clouds remain liquid until an INP immersed in or colliding with the droplet reaches its activation temperature. Only a few aerosol particles are acting as INPs and the freezing efficiency varies among them. Thus, the fraction of supercooled water in the cloud depends on the specific properties and concentrations of the INPs. Primary biological aerosol particles (PBAPs) have been identified as very efficient INPs at high subzero temperatures, but their very low atmospheric concentrations make it difficult to quantify their impact on clouds.


Here we use the regional atmospheric model COSMO-ART to simulate the heterogeneous ice nucleation by PBAPs during a 1-week case study on a domain covering Europe. We focus on three highly ice-nucleation-active PBAP species, Pseudomonas syringae bacteria cells and spores from the fungi Cladosporium sp. and Mortierella alpina. PBAP emissions are parameterized in order to represent the entirety of bacteria and fungal spores in the atmosphere. Thus, only parts of the simulated PBAPs are assumed to act as INPs. The ice nucleation parameterizations are specific for the three selected species and are based on a deterministic approach. The PBAP concentrations simulated in this study are within the range of previously reported results from other modeling studies and atmospheric measurements. Two regimes of PBAP INP concentrations are identified: a temperature-limited and a PBAP-limited regime, which occur at temperatures above and below a maximal concentration at around -10 degrees C, respectively. In an ensemble of control and disturbed simulations, the change in the average ice crystal concentration by biological INPs is not statistically significant, suggesting that PBAPs have no significant influence on the average state of the cloud ice phase. However, if the cloud top temperature is below -15 degrees C, PBAP can influence the cloud ice phase and produce ice crystals in the absence of other INPs. Nevertheless, the number of produced ice crystals is very low and it has no influence on the modeled number of cloud droplets and hence the cloud structure.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000448475400005
WOS关键词GLOBAL CLIMATE MODEL ; MIXED-PHASE CLOUDS ; FUNGAL SPORES ; DESERT DUST ; PART 1 ; NUCLEI ; PARAMETERIZATION ; BACTERIA ; POLLEN ; RAIN
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/30459
专题地球科学
作者单位1.Karlsruhe Inst Technol, Inst Meteorol & Climate Res, Karlsruhe, Germany;
2.Max Planck Inst Chem, Dept Multiphase Chem, Mainz, Germany;
3.Univ Oslo, Dept Geosci, Oslo, Norway
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Hummel, Matthias,Hoose, Corinna,Pummer, Bernhard,et al. Simulating the influence of primary biological aerosol particles on clouds by heterogeneous ice nucleation[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2018,18(20):15437-15450.
APA Hummel, Matthias,Hoose, Corinna,Pummer, Bernhard,Schaupp, Caroline,Froehlich-Nowoisky, Janine,&Moehler, Ottmar.(2018).Simulating the influence of primary biological aerosol particles on clouds by heterogeneous ice nucleation.ATMOSPHERIC CHEMISTRY AND PHYSICS,18(20),15437-15450.
MLA Hummel, Matthias,et al."Simulating the influence of primary biological aerosol particles on clouds by heterogeneous ice nucleation".ATMOSPHERIC CHEMISTRY AND PHYSICS 18.20(2018):15437-15450.
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