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The water quality of the River Enborne, UK: observations from high-frequency Monitoring in a rural, lowland river system

机译:英国Enborne河的水质:来自农村低地河流系统的高频监测观察

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摘要

This paper reports the results of a 2-year study of water quality in the River Enborne, a rural river in lowland England. Concentrations of nitrogen and phosphorus species and other chemical determinands were monitored both at high-frequency (hourly), using automated in situ instrumentation, and by manual weekly sampling and laboratory analysis. The catchment land use is largely agricultural, with a population density of 123 persons km−2. The river water is largely derived from calcareous groundwater, and there are high nitrogen and phosphorus concentrations. Agricultural fertiliser is the dominant source of annual loads of both nitrogen and phosphorus. However, the data show that sewage effluent discharges have a disproportionate effect on the river nitrogen and phosphorus dynamics. At least 38% of the catchment population use septic tank systems, but the effects are hard to quantify as only 6% are officially registered, and the characteristics of the others are unknown. Only 4% of the phosphorus input and 9% of the nitrogen input is exported from the catchment by the river, highlighting the importance of catchment process understanding in predicting nutrient concentrations. High-frequency monitoring will be a key to developing this vital process understanding.
机译:本文报告了一项为期2年的水质研究结果,该研究是在英格兰低地的一条乡村河流Enborne河中进行的。使用自动原位仪器,并通过每周一次的手动采样和实验室分析,以高频(每小时)监测氮,磷种类和其他化学测定物的浓度。流域的土地使用主要是农业用途,人口密度为123人km-2。河水主要来自钙质地下水,并且氮和磷含量很高。农业肥料是每年氮和磷负荷的主要来源。然而,数据显示污水排放对河流氮磷动态的影响不成比例。至少有38%的流域人口使用化粪池系统,但由于只有6%的人口正式登记,其影响难以量化,其他特征尚不清楚。河流集水区仅输出了4%的磷输入和9%的氮输入,这突出了了解集水过程对预测养分浓度的重要性。高频监测将是发展对这一关键过程的理解的关键。

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