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天目湖水质演变及富营养化状况研究
摘要点击 2881  全文点击 1388  投稿时间:2008-03-29  修订日期:2008-06-12
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中文关键词  富营养化  天目湖  营养盐  水库  水质
英文关键词  eutrophication  Lake Tianmu  nutrients  reservoir  water quality
作者单位
高永霞 中国科学院南京地理与湖泊研究所湖泊与环境国家重点实验室南京210008 
朱广伟 中国科学院南京地理与湖泊研究所湖泊与环境国家重点实验室南京210008 
贺冉冉 南京农业大学资源与环境科学学院南京210095 
王芳 中国科学院南京地理与湖泊研究所湖泊与环境国家重点实验室南京210008 
中文摘要
      为了解长江中下游地区濒临城市的湖泊型水库富营养化情况并在此基础上提出治理对策,选择了具有代表性的旅游景区天目湖(沙河水库)为研究对象,在2006年对其水质情况进行了每月1次的周年调查, 2007年5月~2007年12月又进行了隔月1次的水质调查. 2006年调查结果表明,水体总氮(TN)和总磷(TP)的平均浓度分别为1.49 mg/L和0.06 mg/L,较2001~2002年分别增长了2.7倍和2.0倍;水体高锰酸盐指数的平均值为3.68 mg/L,比2001~2002年稍有增加;水体透明度(SD)的平均值为1.2 m,比2001~2002年下降了25 cm, 2006年藻类生物量平均值为46.39 mg/L.天目湖已经由2001~2002年的中-中富营养化状态转变为2006年的中富营养化状态.根据2006年水质调查结果以及沉积物、渔业生产、浮游生物、底栖生物等综合调查结果提出并实施了天目湖的治理方案,即必须采取措施控制农业面源、入湖河流、旅游业等外源性污染以及降低水土流失造成的入湖悬浮物质含量以提高水体透明度,从湖泊外源、内源以及湖泊生态系统的物质循环三者之间的关系着手制定天目湖治理方案. 2007年水体TN的平均浓度为1.25 mg/L;TP平均浓度为0.05 mg/L;藻类生物量平均值为22.56 mg/L. 2007年的再次调查结果表明这些措施的实施对水体营养盐含量以及浮游生物量的降低已初见成效.
英文摘要
      Water quality survey was carried out in 2006 and 2007 in Lake Tianmu (Shahe Reservoir) of China in order to make clear the eutrophication reasons of urban lake-type reservoirs in the middle and lower reaches of Yangtze River, and then put forward the corresponding control measures for such reservoirs. The survey frequency was once a month in 2006 and once two months from May 2007 to Dec. 2007. The results indicate that total nitrogen (TN) and total phosphorus (TP) average concentrations were 1.49 mg/L and 0.06 mg/L respectively in 2006, which are 2.7 and 2 times those of 2001-2002. The average permanganate index was 3.68 mg/L in 2006 and it is a little higher than that of 2001-2002. Secchi disk depth (SD) was 1.2 m in 2006 and it is 25 cm lower than that of 2001-2002. The average algal biomass of 2006 was 46.39 mg/L. All of these show that Lake Tianmu has been situated meso-eutrophication in 2006 from the meso to meso-eutrophication in 2001-2002. Control measures of Lake Tianmu were put forward according to the joint survey results of water quality, sediments, fishery, plankton, benthos etc. in 2006, which considered exogenous, endogenesis and substance cycle of the lake ecosystem in together. The measures pointed out that it was needed to control the pollution of agriculture, river, tourism, soil and water erosion as well as fishery etc. in order to increase SD of the reservoirs. TN and TP average concentrations in 2007 were 1.25 mg/L and 0.05 mg/L respectively, and the average algal biomass of 2007 was 22.56 mg/L. Water quality variation between 2006 and 2007 showed that the control measures had effect on reducing nutrients contents and phytoplankton biomass of the lake.

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