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Lake water quality observed after extreme rainfall events: implications for water quality affected by stormy runoff

机译:在极端降雨事件后观察到湖水质量:对受风暴径流影响的水质的影响

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To investigate the effects of extreme rainfall events (EREs) on lake water quality, we analyzed the lake monthly monitoring data at the stations close to inflow rivers. We tested the hypothesis that the effects depend on rainfall magnitude, season, distance from the rivers, etc. The highest correlations with many water-quality indicators were obtained for the rainfall amount for the preceding 10 days before the water sampling days; i.e., negatively with Na+, Cl-, chlorophyll a (Chla), and COD, and positively with ortho-phosphate. We used the threshold of rainfall amount = 140 mm to choose EREs and evaluate the water quality on such occasions because quite low values of Na+, Cl-, and Chla thresholds (= 25th percentile) were observed in some of the EREs. The event samples (group 1; G1) meeting the above thresholds probably represented the inflow waters during EREs (generally occurred in Oct-May), and the others (group 2; G2) indicated significant changes in the lakes (Jun to Sep), probably depending on the lake's state of primary production. In the events of lower rainfall events (50 mm to 140 mm for 10 days), fast recoveries of algal production usually occurred even in Oct to May. The values of COD, total phosphorus, and ortho-phosphate in G1 were higher than the values of river water quality in the baseflow conditions, whereas both the G1 and baseflow values of nitrogen were nearly the same. The effects of ERFs on lake water quality from the viewpoints of tempo-longitudinal distributions, future monitoring, and climate change were discussed.
机译:为了调查极端降雨事件(ERES)对湖水质量的影响,我们在靠近流入河流的电台分析了湖泊每月监测数据。我们测试了这一假设,即效果取决于降雨量,季节,距离河流等的距离等。在水采样天前10天的降雨量获得了许多水质指标的最高相关性;即,与Na +,Cl-,叶绿素A(CHLA)和COD呈负,呈正交磷酸盐。我们使用了降雨量的阈值和 = 140毫米,选择ERES并在某些情况下评估水质,因为在一些eres中观察到的Na +,Cl-和CHLA阈值(& = 25百分位数)的较低值。满足上述阈值的事件样本(第1组; G1)可能在ERES期间代表了流入水域(一般在10月发生),其他人(第2组; G2)表明湖泊(6月至9月)的重大变化,可能取决于湖的主要生产状态。在降雨事件(100毫米至140毫米10天50毫米)的事件中,藻类生产的快速恢复通常甚至在10月至5月。 G1中的COD,总磷和邻磷酸酯的值高于河流条件下的河水质量的值,而氮的G1和氮气的基础均值几乎是相同的。讨论了ERF对水路纵向分布,未来监测和气候变化的观点湖水质量的影响。

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