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首页> 外文期刊>Marine Chemistry >Spatial high-resolution estimation of net oxygen production during spring bloom in the western North Pacific using dissolved oxygen, nitrogen and argon
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Spatial high-resolution estimation of net oxygen production during spring bloom in the western North Pacific using dissolved oxygen, nitrogen and argon

机译:利用溶解氧,氮和氩对北太平洋西部春季开花期间净氧气产量的空间高分辨率估算

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摘要

Spatial high-resolution estimates of biogenic oxygen were obtained by measuring the concentration of dissolved oxygen, nitrogen and argon during the spring phytoplankton bloom at 21 observation points in the western North Pacific in the area of the Oyashio and Kuroshio Currents off the coast of Hokkaido-Tohoku, Japan. This area extends over approximately 600 km. The test region was divided into 6 mesoscale-wide groups (approximately 20-150 km wide) of observation stations based on variation in the temperature and salinity of the seawater. As suggested by an analysis of the hydrographic data, the area of which water temperature was lower than around the area was found in the Oyashio-Kuroshio mixing area. In the area, vertical water mixing between the warm mixed layer and cold sub-mixed layer occurred. The biogenic oxygen also varied horizontally at mesoscale intervals. The variation was caused by vertical mixing, because the water masses of the mixed layer and sub-mixed layer had positive and negative biogenic oxygen values, respectively. A spatial high-resolution method for estimating the spatial high-resolution net oxygen production rates (NOP) within the mixed layer using a time-stepped model with biogenic oxygen and the physical data was proposed. The estimated NOP varied widely, even within the same water mass group, and ranged from -23.6 ±6.0 to 252.7 ±68.2 mmol/m~2/day. Therefore, spatial high-resolution NOP estimates are imperative to analyze biological production in areas with complex water mass structures.
机译:通过测量北太平洋西部在北海道近海的Oyashio和Kuroshio Current地区21个观测点春季浮游植物开花期间溶解氧,氮和氩的浓度,获得了对生物氧的空间高分辨率估计。日本东北该区域约600公里。根据海水温度和盐度的变化,将测试区域分为6个中尺度范围的观测站组(约20-150 km宽)。通过对水文数据的分析表明,在Oyashio-Kuroshio混合区发现了水温低于该区域周围的区域。在该区域中,在温暖的混合层和寒冷的子混合层之间发生了垂直的水混合。生物氧也以中尺度间隔水平变化。该变化是由于垂直混合而引起的,因为混合层和子混合层的水量分别具有正负生物氧值。提出了一种利用生物氧和物理数据的时间步长模型估算混合层内空间高分辨率净氧生产率(NOP)的空间高分辨率方法。估计的NOP差异很大,即使在相同的水量组内也是如此,范围为-23.6±6.0至252.7±68.2 mmol / m〜2 / day。因此,空间高分辨率NOP估算对于分析具有复杂水团结构的区域的生物产量至关重要。

著录项

  • 来源
    《Marine Chemistry》 |2013年第20期|85-95|共11页
  • 作者单位

    Graduate School of Environmental Science. Hokkaido University, Kita 10 Nishi 5, Kita-ku. Sapporo, 060-0810, Japan Hokkaido National Fisheries Research Institute, Katsurakoi 116, Kushiro, Hokkaido, 085-0802, Japan National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki, 305-8506, Japan;

    Graduate School of Environmental Science. Hokkaido University, Kita 10 Nishi 5, Kita-ku. Sapporo, 060-0810, Japan;

    Hokkaido National Fisheries Research Institute, Katsurakoi 116, Kushiro, Hokkaido, 085-0802, Japan;

    National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki, 305-8506, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biological production; net oxygen production; mesoscale; dissolved argon; dissolved nitrogen;

    机译:生物生产;净氧气产量;中尺度溶解氩溶解氮;

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