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Diurnal fluctuation of zinc concentration in metal polluted rivers and its potential impact on water quality and flux estimates

机译:金属污染河流中锌浓度的日变化及其对水质和通量估算的潜在影响

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Diurnal fluctuations of metals have been observed in the South Tyne river catchment, UK, in both upland tributaries and major river reaches. Zinc exhibits the most pronounced cyclicity, with concentrations increasing during the night to a maximum near 05:00 before decreasing during the day. This trend is the inverse of pH and temperature observations, which are thought to be the predominant drivers behind the cyclicity. Photosynthetic reactions of biomass and algae alter the pH within the river systems, therefore promoting hydrous metal oxide precipitation during the daylight which consequently allows divalent cations including zinc to sorb onto them. This mechanism may be supported by direct uptake of zinc by algae and other biogeochemical reactions which combine to create large differences in zinc concentrations; during base flow zinc concentrations increased by 326% from the minima over 48 hours. Maximum concentrations are not being captured during routine water quality analysis resulting in inaccurate and misleading EQS results and total flux estimations, for example the annual total zinc flux in a small tributary increases from 17 to 76 tonnes/year when routine grab sample data are supplemented with 24-hour sampling results.
机译:在英国的南泰恩河流域,在高支流和主要河段均观察到金属的日变化。锌表现出最明显的周期性,其浓度在夜间增加,直到05:00达到最大值,然后在白天减少。这种趋势是pH和温度观测值的倒转,这被认为是周期性的主要驱动力。生物质和藻类的光合作用反应会改变河流系统中的pH值,因此在白天促进了水金属氧化物的沉淀,因此使包括锌在内的二价阳离子吸收到它们上面。藻类和其他生物地球化学反应直接吸收锌可以支持这种机制,这些反应结合在一起会造成锌浓度的巨大差异。在基流期间,在48小时内,锌浓度从最低值增加了326%。常规水质分析过程中未捕获最大浓度,从而导致EQS结果和总通量估算值不准确和误导,例如,在常规支路采样数据中补充了小支流中的年总锌通量从17吨/年增加到76吨/年。 24小时采样结果。

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