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铁-磷反馈驱动波罗的海缺氧现象的数十年振荡。

Iron-Phosphorus Feedbacks Drive Multidecadal Oscillations in Baltic Sea Hypoxia.

作者信息

Jilbert Tom, Gustafsson Bo G, Veldhuijzen Simon, Reed Daniel C, van Helmond Niels A G M, Hermans Martijn, Slomp Caroline P

机构信息

Aquatic Biogeochemistry Research Unit (ABRU) Ecosystems and Environment Research Program Faculty of Biological and Environmental Sciences University of Helsinki Helsinki Finland.

Tvärminne Zoological Station University of Helsinki Hanko Finland.

出版信息

Geophys Res Lett. 2021 Dec 28;48(24):e2021GL095908. doi: 10.1029/2021GL095908. Epub 2021 Dec 13.

Abstract

Hypoxia has occurred intermittently in the Baltic Sea since the establishment of brackish-water conditions at ∼8,000 years B.P., principally as recurrent hypoxic events during the Holocene Thermal Maximum (HTM) and the Medieval Climate Anomaly (MCA). Sedimentary phosphorus release has been implicated as a key driver of these events, but previous paleoenvironmental reconstructions have lacked the sampling resolution to investigate feedbacks in past iron-phosphorus cycling on short timescales. Here we employ Laser Ablation (LA)-ICP-MS scanning of sediment cores to generate ultra-high resolution geochemical records of past hypoxic events. We show that in-phase multidecadal oscillations in hypoxia intensity and iron-phosphorus cycling occurred throughout these events. Using a box model, we demonstrate that such oscillations were likely driven by instabilities in the dynamics of iron-phosphorus cycling under preindustrial phosphorus loads, and modulated by external climate forcing. Oscillatory behavior could complicate the recovery from hypoxia during future trajectories of external loading reductions.

摘要

自约8000年前咸淡水环境形成以来,波罗的海间歇性地出现缺氧现象,主要表现为全新世高温期(HTM)和中世纪气候异常期(MCA)反复出现的缺氧事件。沉积物磷释放被认为是这些事件的关键驱动因素,但以往的古环境重建缺乏采样分辨率,无法在短时间尺度上研究过去铁 - 磷循环中的反馈。在此,我们采用激光烧蚀(LA)-电感耦合等离子体质谱(ICP-MS)扫描沉积物岩芯,以生成过去缺氧事件的超高分辨率地球化学记录。我们表明,在这些事件中,缺氧强度和铁 - 磷循环存在同步的数十年振荡。使用箱式模型,我们证明这种振荡可能是由工业化前磷负荷下铁 - 磷循环动力学的不稳定性驱动的,并受外部气候强迫调节。振荡行为可能会使未来外部负荷减少轨迹中从缺氧状态恢复的过程变得复杂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a25b/9285756/22d7e770e845/GRL-48-0-g002.jpg

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