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Modelling the impact of fungal spore ice nuclei on clouds and precipitation

机译:模拟真菌孢子冰核对云层和降水的影响

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Some fungal spore species have been found in laboratory studies to be very efficient ice nuclei. However, their potential impact on clouds and precipitation is not well known and needs to be investigated. Fungal spores as a new aerosol species were introduced into the global climate model (GCM) ECHAM5-HAM. The inclusion of fungal spores acting as ice nuclei in a GCM leads to only minor changes in cloud formation and precipitation on a global level; however, changes in the liquid water path and ice water path as well as stratiform precipitation can be observed in the boreal regions where tundra and forests act as sources of fungal spores. Although fungal spores contribute to heterogeneous freezing, their impact is reduced by their low numbers as compared to other heterogeneous ice nuclei.
机译:在实验室研究中发现一些真菌孢子是非常有效的冰核。但是,它们对云和降水的潜在影响尚不为人所知,需要进行调查。真菌孢子作为一种新型的气溶胶物种被引入到全球气候模型(GCM)ECHAM5-HAM中。在GCM中包含作为冰核的真菌孢子只会导致全球范围内云的形成和降水的微小变化。然而,在苔原和森林为真菌孢子来源的北方地区,可以观察到液态水路径和冰水路径的变化以及层状降水。尽管真菌孢子有助于异质冷冻,但与其他异质冰核相比,真菌孢子的数量减少了。

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