Korea Polar Research Institute, 26, Songdomirae-ro, Yeonsu-gu, Incheon 21990, Republic of Korea.
Korea Polar Research Institute, 26, Songdomirae-ro, Yeonsu-gu, Incheon 21990, Republic of Korea.
Sci Total Environ. 2023 Jun 20;878:162969. doi: 10.1016/j.scitotenv.2023.162969. Epub 2023 Mar 22.
Sea spray aerosol (SSA) particles strongly influence clouds and climate but the potential impact of ocean microbiota on SSA fluxes is still a matter of active research. Here-by means of in situ ship-borne measurements-we explore simultaneously molecular-level chemical properties of organic matter (OM) in oceans, sea ice, and the ambient PM aerosols along a transect of 15,000 km from the western Pacific Ocean (36°13'N) to the Southern Ocean (75°15'S). By means of orbitrap mass spectrometry and optical characteristics, lignin-like material (24 ± 5 %) and humic material (57 ± 8 %) were found to dominate the pelagic Pacific Ocean surface, while intermediate conditions were observed in the Pacific-Southern Ocean waters. In the marine atmosphere, we found a gradient of features in the aerosol: lignin-like material (31 ± 9 %) dominating coastal areas and the pelagic Pacific Ocean, whereas lipid-like (23 ± 16 %) and protein-like (11 ± 10 %) OM controlled the sympagic Southern Ocean (sea ice-influence). The results of this study showed that the OM composition in the ocean, which changes with latitude, affects the OM in aerosol compositions in the atmosphere. This study highlights the importance of the global-scale OM monitoring of the close interaction between the ocean, sea ice, and the atmosphere. Sympagic primary marine aerosols in polar regions must be treated differently from other pelagic-type oceans.
海雾气溶胶(SSA)粒子对云和气侯有强烈影响,但海洋微生物群对 SSA 通量的潜在影响仍然是一个活跃的研究课题。在这里——通过现场船载测量——我们同时探索了有机物(OM)在海洋、海冰和沿 15000 公里的大气 PM 气溶胶中的分子水平化学性质,这条路线从西太平洋(36°13'N)到南大洋(75°15'S)。通过轨道阱质谱仪和光学特性,发现木质素样物质(24±5%)和腐殖质物质(57±8%)是海洋浮游带太平洋表面的主要物质,而在太平洋-南大洋水域则存在中间条件。在海洋大气中,我们发现气溶胶中存在特征梯度:木质素样物质(31±9%)在沿海地区和太平洋浮游带占主导地位,而类脂(23±16%)和类蛋白(11±10%)则控制着南大洋的冰缘(海冰影响)。本研究结果表明,海洋中的 OM 组成随纬度变化,影响大气中气溶胶 OM 组成。本研究强调了海洋、海冰和大气之间相互作用的全球规模 OM 监测的重要性。极地地区的冰缘海洋初级气溶胶必须与其他海洋浮游带海洋区分开来对待。