首页> 外文期刊>Mathematical research letters: MRL >Lake water phosphate reduction with advanced wastewater treatment in watershed, at Lake Hamana, Shizuoka Prefecture, Japan, from 1995 to 2016
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Lake water phosphate reduction with advanced wastewater treatment in watershed, at Lake Hamana, Shizuoka Prefecture, Japan, from 1995 to 2016

机译:湖水磷酸盐磷酸盐磷酸盐,在海滩湖,日本静冈县湖汉纳湖,从1995年到2016年

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摘要

Lake Hamana is a semi-enclosed brackish lake amid agricultural and residential land. Monthly vertical profiles of nutrients, total phosphorus (TP), and total nitrogen (TN) at twelve sampling stations in the lake were obtained from 1995 to 2016. Freshwater samples were also obtained from five stations in the river flowing into the lake. Significant decreases were seen in phosphate, TP, and TN concentrations at most lake and all river stations. Decrease in phosphate concentration reflects reduced organic matter and nutrient load into the lake due to increased sewage coverage. Nitrate concentration significantly increased at four stations, whereas ammonium and TN concentrations significantly decreased. This could be due to inefficient nitrification/denitrification of wastewater. At all stations, the nitrogen to phosphate ratio in surface water was higher than 16 and increased significantly. Therefore, phosphate limitation could be strengthened by the decrease in phosphate and increase in nitrate concentrations in the lake.
机译:哈曼湖是农业和住宅用地半封闭的咸水湖。从1995年到2016年,获得了湖泊的十二个采样站的每月营养素,总磷(TP)和总氮(TN)的每月垂直型材。淡水样本也从流入湖泊的河流中的五个站获得。在大多数湖泊和所有河流站的磷酸盐,TP和TN浓度下观察到显着降低。由于污水覆盖率增加,磷酸盐浓度的降低反射到湖中的减少的有机物和营养负荷。硝酸盐浓度在四个站点显着增加,而铵和TN浓度显着降低。这可能是由于废水的效率低下/反硝化。在所有站点时,氮气在地表水中磷酸盐比率高于16,并且显着增加。因此,通过磷酸盐的降低和湖泊中硝酸盐浓度的增加,可以加强磷酸盐限制。

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