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细菌从沿海水域向大气的转移。

The sea to air bacteria transfer from the coastal waters.

作者信息

Marks R, Jankowska K, Michalska M, Królska M

机构信息

Institute of Oceanology, Polish Academy of Sciences in Sopot. marks@ocean,iopan,gda.pl

出版信息

Bull Inst Marit Trop Med Gdynia. 1996;47(1-4):93-103.

PMID:9101057
Abstract

Bacteria transfer from the water into the air may play an important role in bioaerosol cycle. Bubbles raising through the water column collect bacteria but also other suspended material and transport them towards water surface. When the bubble burst at the water surface collected material are skimmed off the bubble to become highly enriched in jet and film drops. After ejection airborne droplets can evaporate and as small droplets can be transported even to remote locations. Such a stream of aerosol droplets may carry stream of bacteria scavenged from the water column. The fate of bacteria in the air may possibly depend on the environmental conditions like intensity of sunlight or ambient air humidity. In addition the wind speed might be responsible for both wave/bubble mediated production of marine originated droplets and their transport in the atmosphere. The evidences that bacteria are transferred from the breaking waves, in particular in the coastal zone, were observed during several field experiments conducted in 1994 and 1995 over the Gulf of Gdansk and the Baltic Sea coast. Enhanced sea to air bacteria transfer were noticed over the polluted waters where in addition gas supersaturations in the water were recorded. Further laboratory investigations of bacteria scavenge via bubbles produced by single capillary and by plume of bubbles produced by ceramic stone indicated high enrichment within both mesophile and psychrophile bacteria categories.

摘要

细菌从水体向空气的转移可能在生物气溶胶循环中发挥重要作用。气泡在水柱中上升时会收集细菌以及其他悬浮物质,并将它们输送到水面。当气泡在水面破裂时,收集到的物质会从气泡上被撇下,在喷射流和薄膜状液滴中高度富集。喷射到空气中的液滴会蒸发,而且小液滴甚至可以被输送到遥远的地方。这样一股气溶胶液滴流可能携带从水柱中捕获的细菌流。细菌在空气中的命运可能取决于环境条件,如阳光强度或环境空气湿度。此外,风速可能既与海浪/气泡介导的海洋源液滴的产生有关,也与它们在大气中的传输有关。在1994年和1995年于格但斯克湾和波罗的海沿岸进行的几次实地实验中,观察到了细菌从破碎海浪中转移的证据,特别是在沿海地区。在受污染水域上空,观察到海-气细菌转移增强,此外还记录到水中的气体过饱和度。通过单毛细管产生的气泡以及陶瓷石块产生的气泡羽流对细菌捕获的进一步实验室研究表明,嗜温菌和嗜冷菌类别中的细菌富集程度都很高。

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