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Seasonal Variability of Dissolved Nutrients in the Humber-Ouse Estuary, UK

机译:英国Humber-Ouse河口中溶解营养物的季节性变化

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Measurements of dissolved nitrate, silicate, phosphate, nitrite and ammonium in the Humber-Ouse Estuary, UK, are presented for the period March 1994 to December 1996. The nutrient data are consistent with independent measurements made in the freshwater, non-tidal River Ouse and with earlier measurements made in the coastal zone. Nitrate, nitrite and silicate always exhibited mid-estuarine maxima, whereas this was not the case for phosphate during summer and early autumn. The mean and standard deviations (SD) of the nitrate and nitrite maxima were 515±90 μM and 9±3 μM, respectively, taken over the whole record. The mean and SDs of the silicate and phosphate maxima were 120±50 μM and 11 ± 4 μM, respectively. The nitrate peak, which was well defined during summer and early autumn, correlated closely with a strong turbidity maximum (TM). The nutrient distributions were greatly influenced by physical transport (strong correlation between the location of the nutrient maxima and the freshwater-saltwater interface, FSI) and wastewater and freshwater nutrient inflows (spatial 'grouping' of maxima locations). Mid-estuarine nutrient inputs were derived from river sources in the middle-to-upper estuary and were subsequently advected and mixed over a large area. A description and interpretation of the seasonal variability of the dissolved nutrients is given, although it is recognized that the various physical and biochemical influences can only be separated quantitatively through the application of numerical modelling techniques.
机译:给出了1994年3月至1996年12月英国Humber-Ouse河口中溶解的硝酸盐,硅酸盐,磷酸盐,亚硝酸盐和铵的测量值。养分数据与在淡水,非潮汐河中进行的独立测量值一致并在沿海地区进行了较早的测量。硝酸盐,亚硝酸盐和硅酸盐始终表现出河口中部的最大值,而夏季和初秋的磷酸盐则不是这样。在整个记录中,硝酸盐和亚硝酸盐最大值的平均值和标准偏差(SD)分别为515±90μM和9±3μM。硅酸盐和磷酸盐最大值的平均值和SD分别为120±50μM和11±4μM。硝酸盐峰在夏季和初秋期间定义明确,与强浊度最大值(TM)密切相关。养分的分布受物理运输的影响很大(养分最大值的位置与淡水-盐水界面FSI之间的强烈相关性)以及废水和淡水养分流入(最大值位置的空间“分组”)。河口中部的营养物输入来自河口中上游的河源,随后被平流并在大面积上混合。尽管已认识到各种物理和生化影响只能通过应用数值建模技术来定量分离,但仍对溶解营养素的季节性变化进行了描述和解释。

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