首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Seasonal variation in chromophoric dissolved organic matter and relationships among fluorescent components, absorption coefficients and dissolved organic carbon in the Bohai Sea, the Yellow Sea and the East China Sea
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Seasonal variation in chromophoric dissolved organic matter and relationships among fluorescent components, absorption coefficients and dissolved organic carbon in the Bohai Sea, the Yellow Sea and the East China Sea

机译:渤海,黄海和东海荧光成分,荧光成分,吸收系数和溶解有机碳的发色体溶解有机物和关系的季节变异

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摘要

The absorption coefficient and fluorescent components of chromophoric dissolved organic matter (CDOM) in the Bohai Sea (BS), Yellow Sea (YS), and East China Sea (ECS) in spring and autumn were analyzed in this study. Excitation-emission matrices (EEMs) combined with parallel factor analysis (PARAFAC) identified three components, namely, humic-like C1, tyrosine-like C2 and tryptophan-like C3. The seasonal variations in the vertical patterns of the CDOM absorption coefficient (a(CDOM)(355)) and fluorescent components were influenced by the seasonal water mass except for the terrestrial input. The relationship between a(CDOM)(355) and dissolved organic matter (DOC) was attributed to their own mixing behavior. The correlation of the fluorescent components with DOC was disturbed by other non-conservative processes during the export of CDOM to the open ocean. The different chemical compositions and origins of DOC and CDOM led to variability in carbon-specific CDOM absorption (a*(CDOM)(355)) and fluorescent component ratios (I-Cn/I-C1). The relationship between a*(CDOM)(355) and a(CDOM)(355) demonstrated that dissolved organic matter (DOM) in the BS, but not in the ECS, highly contributed non-absorbing DOC to the total DOC concentration. The photodegradation of dominant terrestrially derived CDOM in the ECS contributed to the positive relationship between a*(CDOM)(355) and I-Cn/I-C1. By contrast, the abundant autochthonous CDOM in the YS was negatively correlated with I-Cn/I-C1 in autumn. Our established box models showed that water exchange is a potentially important source of the aromatic components in the BS, YS, and ECS. Hence, the seasonal variations in water exchange might contribute to the variability of CDOM chemical composition in the BS, YS, and ECS, and significantly influence the structure and function of their ecosystems.
机译:本研究分析了渤海(BS),黄海(ys),黄海(ys)和东海(ECS)中发色体溶解有机物质(CDom)的吸收系数和荧光组分。激发 - 发射矩阵(EEMS)与平行因子分析(PARAFAC)相结合,鉴定了三种组分,即腐殖液C1,酪氨酸样C2和色氨酸样C3。除了陆地投入之外,CDOM吸收系数(A(CDOM)(355))和荧光组分的垂直模式的季节性变化受到季节性水质的影响。 (CDom)(355)和溶解的有机物(DOC)之间的关系归因于其自身的混合行为。荧光组分与DOC的相关性因在CDOM输出到开阔的海洋时的其他非保守过程受到干扰。 DOC和CDOM的不同化学组成和起源导致碳特异性CDOM吸收的可变性(A *(CDOM)(355))和荧光组分比(I-CN / I-C1)。 *(cdom)(355)和a(cdom)(355)之间的关系证明了Bs中的溶解有机物质(Dom),但不在EC中,高度导致的非吸收文档到总DOC浓度。 ECS中显性彻底导出的CDOM的光降解有助于A *(CDOM)(355)和I-CN / I-C1之间的阳性关系。相比之下,ys中的丰富的自身加压性Cdom与秋季I-CN / I-C1负相关。我们已建立的盒式模型表明,水交换是BS,YS和ECS中芳香成分的潜在重要来源。因此,水交换的季节性变化可能有助于BS,Ys和ECS中CDom化学成分的可变性,并显着影响其生态系统的结构和功能。

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