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首页> 外文期刊>Progress in Oceanography >Spatial and temporal variations of satellite-derived phytoplankton size classes using a three-component model bridged with temperature in Marginal Seas of the Western Pacific Ocean
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Spatial and temporal variations of satellite-derived phytoplankton size classes using a three-component model bridged with temperature in Marginal Seas of the Western Pacific Ocean

机译:使用西太平洋边缘海域温度的三组成型桥接桥接型植物型植物型植物尺寸类的空间和时间变化

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摘要

Phytoplankton size classes (PSCs) are among the most important metrics of phytoplankton community structure and determinants of aquatic food web functionality. Advanced satellite algorithms can be used to estimate PSCs and to integrate the results of biogeochemical research and theoretical studies. Analysis of an extensive dataset of pigment concentrations measured via high-performance liquid chromatography in the southern Yellow Sea, East China Sea, and South China Sea revealed that nanophytoplankton made important contributions to phytoplankton biomass and that sea surface temperature (SST) was the key environmental factor associated with variations of PSCs. A regional SST-dependent, abundance-based model was then tuned to estimate the PSCs and was found to be more effective than the SST-independent model in capturing the temporal trends in PSCs. The implication is that dynamic PSCs variations may be underestimated by using SST-independent, abundance-based model parameters in marginal seas. Moreover, the logistic "S-shape" dependence of PSCs model parameters on SST suggested that global warming may affect PSCs differently on continental shelves in marginal seas or other middle-latitude regions. Application of this PSCs model to satellite data from 2002 to 2017 revealed the temporal and spatial distributions of the PSCs in these marginal seas. We investigated seasonal climatological variations of PSCs in thirteen representative regional areas, including estuaries, upwelling areas, shelves, slopes, and basins. The results were consistent with in situ investigations but provided more high-resolution information. Wind, irradiance, and temperature were found to be important determinants of PSCs variations.
机译:Phytoplankton大小课程(PSCS)是浮游植物群落结构和水生食品Web功能的决定因素中最重要的度量之一。高级卫星算法可用于估计PSC,并整合生物地球化学研究和理论研究的结果。通过高性能液相色谱法测定的黄海,东海和南海的高效液相色谱分析,揭示了纳米薄港对浮游植物生物量的重要贡献,海面温度(SST)是关键环保与PSC的变体相关的因素。然后,调整区域SST依赖性丰富的模型,以估计PSC,并且被发现比捕获PSC中的时间趋势时更加有效。该含义是通过使用边缘海域的SST独立于基于丰富的模型参数,可以低估动态PSC变化。此外,PSCS模型参数对SST的物流“S形”依赖性表明,全球变暖可能会影响PSC在边缘海域或其他中纬度地区的大陆架上。本PSC模型从2002年到2017年将该PSCS模型应用于卫星数据,揭示了这些边缘海洋中PSC的时间和空间分布。我们调查了十三个代表区域地区的PSC的季节性气候变化,包括河口,上升区,货架,斜坡和盆地。结果与原位调查一致,但提供了更高分辨率的信息。发现风,辐照度和温度是PSCS变化的重要决定因素。

著录项

  • 来源
    《Progress in Oceanography 》 |2021年第2期| 102511.1-102511.18| 共18页
  • 作者单位

    Xiamen Univ State Key Lab Marine Environm Sci Fujian Prov Key Lab Coastal Ecol & Environm Studi Coll Environm & Ecol Xiamen Peoples R China;

    Xiamen Univ State Key Lab Marine Environm Sci Fujian Prov Key Lab Coastal Ecol & Environm Studi Coll Environm & Ecol Xiamen Peoples R China;

    Xiamen Univ State Key Lab Marine Environm Sci Fujian Prov Key Lab Coastal Ecol & Environm Studi Coll Environm & Ecol Xiamen Peoples R China;

    Louisiana State Univ Dept Environm Sci Coll Coast & Environm Baton Rouge LA 70803 USA;

    Xiamen Univ State Key Lab Marine Environm Sci Fujian Prov Key Lab Coastal Ecol & Environm Studi Coll Environm & Ecol Xiamen Peoples R China;

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

    Phytoplankton; Size classes; Temperature dependent; Remote sensing; HPLC; Western Pacific marginal seas;

    机译:Phytoplankton;尺寸等级;温度依赖;遥感;HPLC;西太平洋边缘海洋;
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