Polar Biological Oceanography, Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research (AWI), Am Handelshafen 12, Bremerhaven, Bremen 27570, Germany.
Amundsen Science, Pavillon Alexandre-Vachon, Université Laval, Québec, Québec, Canada G1 V 0A6.
Philos Trans A Math Phys Eng Sci. 2020 Oct 2;378(2181):20190368. doi: 10.1098/rsta.2019.0368. Epub 2020 Aug 31.
Two mooring arrays carrying sediment traps were deployed from September 2011 to August 2012 at ∼83°N on each side of the Gakkel Ridge in the Nansen and Amundsen Basins to measure downward particle flux below the euphotic zone (approx. 250 m) and approximately 150 m above seafloor at approximately 3500 and 4000 m depth, respectively. In a region that still experiences nearly complete ice cover throughout the year, export fluxes of total particulate matter (TPM), particulate organic carbon (POC), particulate nitrogen (PN), biogenic matter, lithogenic matter, biogenic particulate silica (bPSi), calcium carbonate (CaCO), protists and biomarkers only slightly decreased with depth. Seasonal variations of particulate matter fluxes were similar on both sides of the Gakkel Ridge. Somewhat higher export rates in the Amundsen Basin and differences in the composition of the sinking TPM and bPSi on each side of the Gakkel Ridge probably reflected the influence of the Lena River/Transpolar Drift in the Amundsen Basin and the influence of Atlantic water in the Nansen Basin. Low variations in particle export with depth revealed a limited influence of lateral advection in the deep barren Eurasian Basin. This article is part of the theme issue 'The changing Arctic Ocean: consequences for biological communities, biogeochemical processes and ecosystem functioning'.
自 2011 年 9 月至 2012 年 8 月,在南森海盆和阿蒙森海盆内的加克勒断裂带两侧约 83°N 处部署了两个带有沉积物捕集器的系泊阵列,以测量透光层(约 250 m)以下和海底上方约 150 m 处的向下颗粒通量,深度分别约为 3500 和 4000 m。在一个全年几乎完全被冰覆盖的区域,总颗粒物(TPM)、颗粒有机碳(POC)、颗粒氮(PN)、生物物质、生源物质、生物颗粒硅(bPSi)、碳酸钙(CaCO)、原生动物和生物标志物的总输出通量仅略有减少随着深度的增加。加克勒断裂带两侧的颗粒物质通量的季节性变化相似。在阿蒙森海盆中,出口率略高,以及在加克勒断裂带两侧沉降的 TPM 和 bPSi 的组成存在差异,这可能反映了勒拿河/极区漂流在阿蒙森海盆中的影响,以及大西洋水在南森海盆中的影响。颗粒输出随深度的变化很小,表明在贫瘠的欧亚大陆深海中侧向平流的影响有限。本文是主题为“变化的北极海洋:对生物群落、生物地球化学过程和生态系统功能的影响”的一部分。