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Dissolved Organic Carbon in a Large Macrotidal Estuary (the Humber, UK): Behaviour During Estuarine Mixing

机译:大型潮汐河口(英国亨伯)中的溶解有机碳:河口混合过程中的行为

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Dissolved organic carbon (DOC) was measured during four cruises to the Yorkshire Ouse-Humber Estuary, covering contrasting seasons. Despite the high turbidity and the complete flushing times in the 'Humber proper' (downstream from Trent Falls), DOC was not sensitive to bacterial oxidation and/or chemical precipitation at any time. More than 96% of the variability in the DOC profiles are simply explained by conservative mixing of the two end-members. The average DOC concentration at zero salinity (C~*), was ~20% higher than levels measured in the landward end of the Yorkshire Ouse (C_0). C~* showed an inverse relationship with river discharge, illustrating a significant contribution from sources other than natural processes in the catchment area. The difference between C~* and C_0 was due to a conspicuous DOC peak observed year-round about the turbidity maximum zone of the tidal Ouse (upstream from Trent Falls). Both anthropogenic waste discharges and biogeochemical production within the turbidity maximum are compatible with the observed inverse relationship with river flows.
机译:在前往约克郡Ouse-Humber河口的四次航行中测量了溶解的有机碳(DOC),涵盖了不同的季节。尽管在“ Humber适当地”(特伦特瀑布(Trent Falls)的下游)中,浊度高且冲洗时间完整,但DOC在任何时候对细菌的氧化和/或化学沉淀均不敏感。 DOC配置文件中超过96%的可变性是通过两个末端成员的保守混合来简单解释的。在零盐度(C〜*)下,平均DOC浓度比约克郡Ouse的陆端(C_0)高出约20%。 C〜*与河流流量呈反比关系,说明集水区自然过程以外的其他来源也有重要贡献。 C〜*和C_0之间的差异是由于全年都在潮汐乌斯(Trent Falls上游)的浊度最大区附近观察到一个明显的DOC峰。在最大浊度范围内的人为废物排放和生物地球化学生产均与观测到的与河流流量成反比关系兼容。

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