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Instability of Water Quality of a Shallow, Polymictic, Flow-Through Lake

机译:浅流多流湖泊的水质不稳定

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This paper describes catchment processes that favor the trophic instability of a shallow polymictic lake, in which a shift from eutrophy to hypertrophy occurs rapidly. In the lake, in 2007, the winter discharge maximum and an intensive precipitation (monthly sums exceeded 60 mm) in a vegetation season were observed. In 2007, the cyanobacterial blooms disappeared and the water trophy decreased. Total phosphorus (TP) was the main factor determining the high trophic status of the lake. The TP retention resulted from a quick flow of two inflows: QI1 (r = 0.64) and QI2 (0.56), and the base flow of tributary 1 (0.62). A significant negative correlation between TP and precipitation (r = - 0.54) was observed. Both the surface and the groundwater inflow of I4 showed a positive correlation with the retention of PO4 (r = 0.67 and r = 0.60, respectively), whereas the outlet discharge determined RNO3 (r = 0.57). The trophy of Lake SyczyA"skie was determined by the relationship between nutrient input and export, expressed as the ionic retention, Carlson's trophic state index (TSI), and phytoplankton abundance. The results showed that many factors influence the stability of water quality in small, polymictic lakes. However, in the studied lake, intense precipitation and winter discharge maxima (particularly base flow) prevented summer cyanobacterial blooms.
机译:本文描述了有利于浅部多湖泊湖泊营养不稳定的集水过程,在该过程中,从富营养到肥大的转变迅速发生。在湖中,2007年的冬季排放量最大,并且在一个植被季节观测到密集的降水(每月总值超过60毫米)。 2007年,蓝藻水华消失了,水杯也减少了。总磷(TP)是决定湖泊高营养状态的主要因素。 TP的保留是由于两个流入的快速流动:QI1(r = 0.64)和QI2(0.56),以及支流1的基本流量(0.62)。观测到的TP与降水之间存在显着的负相关性(r =-0.54)。 I4的地表水和地下水流入都与PO4的存留呈正相关(分别为r = 0.67和r = 0.60),而出口流量确定了RNO3(r = 0.57)。 SyczyA“天空的奖杯由养分输入和输出之间的关系决定,表示为离子保留,卡尔森营养状态指数(TSI)和浮游植物的丰度。结果表明,许多因素影响小范围水质的稳定性然而,在所研究的湖泊中,强烈的降水和冬季的最高流量(特别是基流)阻止了夏季的蓝藻水华。

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