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首页> 外文期刊>The Science of the Total Environment >Temporal controls on dissolved organic carbon biodegradation in subtropical rivers: Initial chemical composition versus stoichiometry
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Temporal controls on dissolved organic carbon biodegradation in subtropical rivers: Initial chemical composition versus stoichiometry

机译:亚热带河流中溶解有机碳生物降解的时间对照:初始化学成分与化学计量

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摘要

Dissolved organic carbon (DOC) plays an indispensable role in biogeochemical cycles and ecosystem services in rivers. However, little is known about the seasonal variations of DOC biodegradation in subtropical rivers. Here, we investigated the concentrations of DOC, dissolved total nitrogen ( DIN), and dissolved total phosphorus (DTP), humikation index (HIX), fluorescence index (FI), and DOC biodegradation in 57 rivers in the dry and wet seasons in the Three Gorges Reservoir area, China, and the aims were to clarify the temporal changes in DOC biodegradation and its driving factors in these subtropical rivers. Compared with dry season, DIN and DTP concentrations, and HIX value were greater, and Fl value was lower in the wet season. However, DOC biodegradation remained unchanged across the two sampling seasons. Further, DOC biodegradation negatively correlated with DOC:DTP ratio, DTN:DTP ratio, and Fl in the dry season, but only with HIX in the wet season. These findings emphasis that, despite unchanged DOC biodegradation, the key factors driving DOC biodegradation shift from C:N:P stoichiometry in the dry season to initial chemical composition in the wet season in subtropical rivers. Our results regarding the temporal patterns of DOC biodegradation and the underlying mechanisms bear important implications for a better understanding of C dynamics in subtropical river ecosystems. (C) 2018 Elsevier B.V. All rights reserved.
机译:溶解的有机碳(DOC)在河流生物地球化学循环和生态系统服务中起不可或缺的作用。然而,关于亚热带河流中Doc生物降解的季节变化很少。在这里,我们研究了DOC,溶解的总氮(DIN)的浓度,并溶解了总磷(DTP),嗡嗡声指数(HIX),荧光指数(FI),以及在干燥和潮湿的季节中的57条河流中的DOC生物降解。三峡库区,中国和宗旨是澄清这些亚热带河流中DOC生物降解及其驱动因素的时间变化。与干燥季节相比,DIN和DTP浓度,并且HIX值较大,湿季节较低。然而,Doc Biodegradation遍布两种采样季节不变。此外,DOC生物降解与DOC:DTP比,DTN:DTP比和干燥季节中的FL呈负相关,但仅在潮湿季节的HIX。这些研究结果强调,尽管DOC生物降解不变,但驾驶DOC生物降解的关键因素从C:N:P在干燥季节中转变为亚热带河流湿季的初始化学成分。我们对Doc生物降解的时间模式和潜在机制的结果对亚热带河流生态系统中的C动力学更好地了解了重要意义。 (c)2018年elestvier b.v.保留所有权利。

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