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Temporal and spatial changes in nutrients and chlorophyll-a in a shallow lake, Lake Chaohu, China: An 11-year investigation
作者姓名:Libiao Yang  Kun Lei  Wei Meng  Guo Fu  Weijin Yan
作者单位:River and Coastal Environment Research Center, Chinese Research Academy of Environmental Sciences, Beijing 100012, China;River and Coastal Environment Research Center, Chinese Research Academy of Environmental Sciences, Beijing 100012, China;River and Coastal Environment Research Center, Chinese Research Academy of Environmental Sciences, Beijing 100012, China;River and Coastal Environment Research Center, Chinese Research Academy of Environmental Sciences, Beijing 100012, China;Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China
基金项目:This work was supported by the National Science-technology Support Project of China (No. 2010BAC69B02) and the National Natural Science Foundation of China (No. 41203080). We are grateful to Sun Pu for his help for the field sampling.
摘    要:Temporal and spatial changes of total nitrogen (TN), total phosphorus (TP) and chlorophyll-a (Chl-a) in a shallow lake, Lake Chaohu, China, were investigated using monthly monitoring data from 2001 through 2011. The results showed that the annual mean concentration ranges of TN, TP, and Chl-a were 0.08-14.60 mg/L, 0.02-1.08 mg/L, and 0.10-465.90 μg/L, respectively. Our data showed that Lake Chaohu was highly eutrophic and that water quality showed no substantial improvement during 2001 through 2011. The mean concentrations of TP, TN and Chl-a in the western lake were significantly higher than in the eastern lake, which indicates a spatial distribution of the three water parameters. The annual mean ratio of TN:TP by weight ranged from 10 to 20, indicating that phosphorus was the limiting nutrient in this lake. A similar seasonality variation for TP and Chl-a was observed. Riverine TP and NH4+ loading from eight major tributaries were in the range of 1.56×104-5.47×104 and 0.19×104-0.51×104 tons/yr over 2002-2011, respectively, and exceeded the water environmental capability of the two nutrients in the lake by a factor of 3-6. Thus reduction of nutrient loading in the sub-watershed and tributaries would be essential for the restoration of Lake Chaohu.

关 键 词:叶绿素a  时空变化  营养物质  巢湖  中国  平均浓度  水质参数  季节性变化
收稿时间:19 September 2012
修稿时间:30 November 2012

Temporal and spatial changes in nutrients and chlorophyll-a in a shallow lake, Lake Chaohu, China: An 11-year investigation
Libiao Yang,Kun Lei,Wei Meng,Guo Fu,Weijin Yan.Temporal and spatial changes in nutrients and chlorophyll-a in a shallow lake, Lake Chaohu, China: An 11-year investigation[J].Journal of Environmental Sciences,2013,25(6):1117-1123.
Authors:Libiao Yang  Kun Lei  Wei Meng  Guo Fu and Weijin Yan
Institution:1. River and Coastal Environment Research Center, Chinese Research Academy of Environmental Sciences, Beijing 100012, China
2. Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China
Abstract:Temporal and spatial changes of total nitrogen (TN), total phosphorus (TP) and chlorophyll-a (Chl-a) in a shallow lake, Lake Chaohu, China, were investigated using monthly monitoring data from 2001 through 2011. The results showed that the annual mean concentration ranges of TN, TP, and Chl-a were 0.08–14.60 mg/L, 0.02–1.08 mg/L, and 0.10–465.90 μg/L, respectively. Our data showed that Lake Chaohu was highly eutrophic and that water quality showed no substantial improvement during 2001 through 2011. The mean concentrations of TP, TN and Chl-a in the western lake were significantly higher than in the eastern lake, which indicates a spatial distribution of the three water parameters. The annual mean ratio of TN:TP by weight ranged from 10 to 20, indicating that phosphorus was the limiting nutrient in this lake. A similar seasonality variation for TP and Chl-a was observed. Riverine TP and NH4+ loading from eight major tributaries were in the range of 1.56 × 104?5.47 × 104 and 0.19 × 104?0.51 × 104 tons/yr over 2002–2011, respectively, and exceeded the water environmental capability of the two nutrients in the lake by a factor of 3–6. Thus reduction of nutrient loading in the sub-watershed and tributaries would be essential for the restoration of Lake Chaohu.
Keywords:eutrophication  Lake Chaohu  nitrogen  phosphorus
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