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Particulate barium tracing of significant mesopelagic carbon remineralisation in the North Atlantic

机译:北大西洋北大西洋显着介性碳再矿化的微粒钡追踪

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摘要

The remineralisation of sinking particles by prokaryotic heterotrophic activity is important for controlling oceanic carbon sequestration. Here, we report mesopelagic particulate organic carbon (POC) remineralisation fluxes in the North Atlantic along the GEOTRACES-GA01 section (GEOVIDE cruise; May-June 2014) using the particulate biogenic barium (excess barium; Ba-xs) proxy. Important mesopelagic (100-1000 m) Ba-xs differences were observed along the transect depending on the intensity of past blooms, the phytoplankton community structure, and the physical forcing, including downwelling. The subpolar province was characterized by the highest mesopelagic Ba-xs content (up to 727 pmol L-1), which was attributed to an intense bloom averaging 6 mg chl a m(-3) between January and June 2014 and by an intense 1500 m deep convection in the central Labrador Sea during the winter preceding the sampling. This downwelling could have promoted a deepening of the prokaryotic heterotrophic activity, increasing the Ba-xs content. In comparison, the temperate province, characterized by the lowest Ba-xs content (391 pmol L-1), was sampled during the bloom period and phytoplankton appear to be dominated by small and calcifying species, such as coccolithophorids. The Ba-xs content, related to oxygen consumption, was converted into a remineralisation flux using an updated relationship, proposed for the first time in the North Atlantic. The estimated fluxes were of the same order of magnitude as other fluxes obtained using independent methods (moored sediment traps, incubations) in the North Atlantic. Interestingly, in the subpolar and subtropical provinces, mesopelagic POC remineralisation fluxes (up to 13 and 46 mmol C m(-2) d(-1), respectively) were equalling and occasionally even exceeding upper-ocean POC export fluxes, deduced using the Th-234 method. These results highlight the important impact of the mesopelagic remineralisation on the biological carbon pump of the studied area wi
机译:通过原核异养活性下沉颗粒的再矿化对于控制海洋碳封存是重要的。在这里,我们使用颗粒化生物钡(过量钡; Ba-XS)代理来报告北大西洋沿北大西洋中北大西洋中的北大西洋中的叶尾颗粒有机碳(POC)再矿化通量(Geovide Cruise; 2014年6月)。重要的叶尾(100-1000米)沿着横断面观察到BA-XS差异,这取决于过去绽放的强度,浮游植物群落结构和物理强制,包括贫困。 SuboPolar Provion的特点是最高的中索古氏BA-XS内容(最多727pmol L-1),它归因于2014年1月至6月在2014年1月至6月之间的激烈绽放,并通过强烈的1500米在冬季在抽样之前的中央拉布拉多海中的深入对流。这种贫困可能促进了原核异养活性的深化,增加了BA-XS含量。相比之下,由最低Ba-XS含量(391pmol L-1)的温带省在盛开期间进行采样,植物植物似乎是由小且钙化物种的统治,例如Coccolithophorid。与氧气消耗相关的Ba-XS含量使用更新的关系转换为剩余的关系,这是在北大西洋的第一次提出的。估计的助熔剂与在北大西洋中使用的独立方法(系泊沉积物陷阱,孵化)获得的其他助熔剂相同的数量级。有趣的是,在子质和亚热带省份,分别等于甚至超过上海POC出口通量,分别在偶数且偶尔(-2)分别为甚至超过上海POC导出通量,偶尔推出使用TH-234方法。这些结果突出了介乎叶片偏离术对学习区的生物碳泵的重要影响

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  • 来源
    《Biogeosciences》 |2018年第7期|共19页
  • 作者单位

    IUEM UMR 6539 Lab Sci Environm Marin LEMAR Technopole Brest Iroise F-29280 Plouzane France;

    IUEM UMR 6539 Lab Sci Environm Marin LEMAR Technopole Brest Iroise F-29280 Plouzane France;

    IUEM UMR 6539 Lab Sci Environm Marin LEMAR Technopole Brest Iroise F-29280 Plouzane France;

    IUEM UMR 6539 Lab Sci Environm Marin LEMAR Technopole Brest Iroise F-29280 Plouzane France;

    Aix Marseille Univ CNRS INSU Univ Toulon IRD MIO UM110 F-13288 Marseille France;

    Bjerknes Ctr Climate Res Uni Res Climate N-5008 Bergen Norway;

    IUEM UMR 6539 Lab Sci Environm Marin LEMAR Technopole Brest Iroise F-29280 Plouzane France;

    IUEM UMR 6539 Lab Sci Environm Marin LEMAR Technopole Brest Iroise F-29280 Plouzane France;

    Royal Museum Cent Africa Earth Sci Dept Leuvensesteenweg 13 B-3080 Tervuren Belgium;

    Royal Museum Cent Africa Earth Sci Dept Leuvensesteenweg 13 B-3080 Tervuren Belgium;

    Vrije Univ Brussel Dept Mat &

    Chem SURF Res Grp Brussels Belgium;

    Vrije Univ Brussel Dept Mat &

    Chem SURF Res Grp Brussels Belgium;

    Vrije Univ Brussel Analyt Environm &

    Geochem Earth Syst Sci Res Grp Brussels Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物地球化学、气体地球化学;
  • 关键词

  • 入库时间 2022-08-19 23:13:27

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