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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >High-resolution Cd isotope systematics in multiple zones of the Southern Ocean from the Antarctic Circumnavigation Expedition
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High-resolution Cd isotope systematics in multiple zones of the Southern Ocean from the Antarctic Circumnavigation Expedition

机译:来自南部海洋的多个区域的高分辨率CD同位素系统,来自南极环形航行探险

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The Southern Ocean plays a major role in determining the global distribution of trace metals such as cadmium (Cd). Here, we present 17 high-depth-resolution profiles of dissolved Cd and its stable isotope composition (delta Cd-114) over the top 1000 m of the Pacific and Atlantic sectors of the Southern Ocean, collected during the Antarctic Circumnavigation Expedition. Our dataset reinforces the view that Cd and its isotopes are dominated by shallow biological cycling in this region. A close examination of variations in Cd cycling across the different zones of the Southern Ocean reveals how the interplay between uptake and regeneration, seasonal mixing, and upwelling controls both Cd and Cd in this region. The only deviations from these systematics are due to the influence of local processes such as continental influence or Fe-fertilization, close to the Mertz Glacier and the Balleny Islands, respectively. Deep convection during winter incorporates the Southern Ocean Cd isotope signatures into Subantarctic Mode Water and Antarctic Intermediate Water during water mass formation. Incorporating published data, we present the first complete picture of how Cd is cycled through the entire Pacific Ocean, revealing the manner in which the Southern Ocean controls the global cycling of Cd and Cd; analogous to Si or Zn, we propose that Southern Ocean processes, in combination with global ocean circulation, cause a division into two separate Cd regimes, a Cd-depleted surface ocean above a Cd-rich deep ocean loop. Therefore, the relationship between Cd and PO4 on a global scale is largely a result of these processes in the Southern Ocean, rather than a local correlation between the two elements.
机译:南海在确定镉(CD)等痕量金属的全球分布方面发挥了重要作用。在此,我们在南极环形活动期间收集了17个溶解的CD和其稳定的同位素组成(Delta CD-114)的高深分辨率曲线和其稳定的同位素组成(Delta CD-114),在南洋航行南洋航行探险期间收集。我们的数据集强化了CD和其同位素的视图,由该地区的浅层生物循环主导。密切检查南海南海不同区域的CD循环的变化揭示了摄取和再生,季节混合和升值之间的相互作用如何控制该地区的CD和CD。这些系统的唯一偏差分别是由于局部影响或FE-受精等局部过程的影响,分别接近默兹冰川和巴伦岛。在冬季期间的深度对流将南海CD同位素签名纳入小脑膜地区水和南极中间水。纳入已发布的数据,我们展示了CD如何循环通过整个太平洋的第一张完整图片,揭示了南洋控制着CD和CD全球循环的方式;类似于Si或Zn,我们提出南海流程与全球海洋循环组合,导致分为两种单独的CD制度,是富含CD的深海环上方的CD耗尽的表面海洋。因此,CD和PO4之间的关系在全球范围内主要是南海中这些过程的结果,而不是两个元素之间的局部相关性。

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