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Long-Term Pattern of Primary Productivity in the East/Japan Sea Based on Ocean Color Data Derived from MODIS-Aqua

机译:基于MODIS-Aqua得出的海洋颜色数据的东日本海初级生产力长期格局

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The East/Japan Sea (hereafter, the East Sea) is highly dynamic in its physical phenomena and biological characteristics, but it has changed substantially over the last several decades. In this study, a recent decadal trend of primary productivity in the East Sea was analyzed based on Moderate-Resolution Imaging Spectroradiometer (MODIS)-derived monthly values to detect any long-term change. The daily primary productivities averaged using monthly values from 2003 to 2012 were 719.7 mg·C·m−2·d−1 (S.D. ± 197.5 mg·C·m−2·d−1, n = 120) and 632.3 mg·C·m−2·d−1 (S.D. ± 235.1 mg·C·m−2·d−1, n = 120) for the southern and northern regions of the East Sea, respectively. Based on the daily productivities, the average annual primary production in the East Sea was 246.8 g·C·m−2·y−1, which was substantially higher than that previously reported in deep oceans. However, a decreasing trend (13% per 10 years) in the annual primary production was observed in the East Sea within the study period from 2003 to 2012. The shallower mixed layers caused by increased temperature could be a potential cause for the decline in annual production. However, this decline could also be part of an oscillation pattern that is strongly governed by the Pacific Decadal Oscillation (PDO). A better understanding of primary productivity patterns and their subsequent effects on the marine ecosystem is required for further interdisciplinary studies in the East Sea.
机译:东/日本海(以下称东海)在物理现象和生物学特征方面具有高度动态性,但在过去的几十年中发生了巨大变化。在这项研究中,基于中分辨率成像光谱仪(MODIS)得出的月度值分析了东海近来初级生产力的十年趋势,以检测任何长期变化。使用2003年至2012年的月平均值计算的每日初级生产力为719.7 mg·C·m -2 ·d -1 (SD±197.5 mg·C·m −2 ·d -1 ,n = 120)和632.3 mg·C·m −2 ·d -1 东海南部和北部分别为(SD±235.1 mg·C·m -2 ·d -1 ,n = 120)。根据日生产力,东海的年平均初级生产力为246.8 g·C·m -2 ·y -1 ,大大高于以前的水平。在深海报道。然而,在2003年至2012年的研究期内,东海的年度初级产量呈下降趋势(每10年13%)。温度升高引起的较浅的混合层可能是导致年度产量下降的潜在原因。生产。但是,这种下降也可能是由太平洋年代际振荡(PDO)强烈控制的振荡模式的一部分。在东海进行进一步的跨学科研究需要更好地了解初级生产力模式及其对海洋生态系统的后续影响。

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