Department of Marine Biology and Oceanography, Institute of Marine Sciences (CSIC), Pg. Marítim de la Barceloneta, 37-49, E-08003 Barcelona, Catalonia, Spain.
Department of Marine Biology and Oceanography, Institute of Marine Sciences (CSIC), Pg. Marítim de la Barceloneta, 37-49, E-08003 Barcelona, Catalonia, Spain.
Sci Total Environ. 2022 Jul 20;831:154772. doi: 10.1016/j.scitotenv.2022.154772. Epub 2022 Mar 29.
Within the Southern Ocean, the greatest warming is occurring on the Antarctic Peninsula (AP) where clear cryospheric and biological consequences are being observed. Antarctic coastal systems harbour a high diversity of marine and terrestrial ecosystems heavily influenced by Antarctic seaweeds (benthonic macroalgae) and bird colonies (mainly penguins). Primary sea spray aerosols (SSA) formed by the outburst of bubbles via the sea-surface microlayer depend on the organic composition of the sea water surface. In order to gain insight into the influence of ocean biology and biogeochemistry on atmospheric aerosol, we performed in situ laboratory aerosol bubble chamber experiments to study the effect of different leachates of biogenic material - obtained from common Antarctic seaweeds as well as penguin guano - on primary SSA. The addition of different leachate materials on a seawater sample showed a dichotomous effect depending on the leachate material added - either suppressing (up to 52%) or enhancing (22-88%) aerosol particle production. We found high ice nucleating particle number concentrations resulting from addition of guano leachate material. Given the evolution of upper marine polar coastal ecosystems in the AP, further studies on ocean-atmosphere coupling are needed in order to represent the currently poorly understood climate feedback processes.
在南大洋,南极半岛(AP)的变暖幅度最大,在那里观察到了明显的冰冻圈和生物后果。南极沿海系统拥有丰富的海洋和陆地生态系统,这些生态系统受到南极海藻(底栖大型藻类)和鸟类群体(主要是企鹅)的强烈影响。通过海表面微层的气泡爆发形成的初级海喷雾气溶胶(SSA)取决于海水表面的有机成分。为了深入了解海洋生物和生物地球化学对大气气溶胶的影响,我们进行了现场实验室气溶胶气泡室实验,以研究不同生物材料浸出液(从常见的南极海藻以及企鹅粪便中获得)对初级 SSA 的影响。向海水样本中添加不同的浸出材料会产生二分效应,具体取决于添加的浸出材料——要么抑制(高达 52%),要么促进(22-88%)气溶胶颗粒的产生。我们发现,由于添加了鸟粪浸出物,冰核颗粒的数量浓度很高。鉴于 AP 中上层海洋极地沿海生态系统的演变,需要进一步研究海洋-大气耦合,以代表目前对气候反馈过程了解甚少的情况。