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The significance of nitrification for oceanic new production

机译:硝化对海洋新产品的意义

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摘要

The flux of organic material sinking to depth is a major control on the inventory of carbon in the ocean. To first order, the oceanic system is at equilibrium such that what goes down must come up. Because the export flux is difficult to measure directly, it is routinely estimated indirectly by quantifying the amount of phyto-plankton growth, or primary production, fuelled by the upward flux of nitrate. To do so it is necessary to take into account other sources of biologically available nitrogen. However, the generation of nitrate by nitrification in surface waters has only recently received attention. Here we perform the first synthesis of open-ocean measurements of the specific rate of surface nitrification and use these to configure a global biogeochemical model to quantify the global role of nitrification. We show that for much of the world ocean a substantial fraction of the nitrate taken up is generated through recent nitrification near the surface. At the global scale, nitrification accounts for about half of the nitrate consumed by growing phytoplankton. A consequence is that many previous attempts to quantify marine carbon export, particularly those based on inappropriate use of the f-ratio (a measure of the efficiency of the 'biological pump'), are significant overestimates.
机译:下沉到深处的有机物质通量是海洋中碳存量的主要控制因素。首先,海洋系统处于平衡状态,因此必须上升。由于出口通量很难直接测量,因此通常通过量化由硝酸盐通量增加的浮游植物生长量或初级生产量来间接估算。为此,有必要考虑其他可生物利用氮源。但是,直到最近才开始在地表水中硝化生成硝酸盐。在这里,我们对表面硝化的特定速率进行开放海洋测量的首次合成,并使用它们来配置全局生物地球化学模型以量化硝化的全局作用。我们表明,对于世界大部分海洋来说,吸收的硝酸盐的很大一部分是通过近地表附近的硝化作用产生的。在全球范围内,硝化作用约占浮游植物生长所消耗的硝酸盐的一半。结果是,许多先前的量化海洋碳出口的尝试,尤其是那些基于不恰当地使用f比率(衡量“生物泵”效率的方法)的尝试,都被高估了。

著录项

  • 来源
    《Nature》 |2007年第7147期|p.999-1002|共4页
  • 作者单位

    National Oceanography Centre, Southampton, European Way, Southampton SO14 3ZH, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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