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生态净水系统对富营养化园林水体的净化效应研究 被引量:9
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作者 许铭宇 刘雯 +4 位作者 谭广文 黄少斌 吴劲华 卢艺菲 陈平 《长江科学院院报》 CSCD 北大核心 2019年第4期27-31,共5页
为研究水生动植物组合对富营养化园林景观水体的净化效应,将秋枫(Bischofia javanica)、水蓑衣(Hygrophila salicifolia)、苦草(Vallisneria natans)、叉尾斗鱼(Macropodus opercularis)、中华圆田螺(Cipangopaludina cahayensis)和生... 为研究水生动植物组合对富营养化园林景观水体的净化效应,将秋枫(Bischofia javanica)、水蓑衣(Hygrophila salicifolia)、苦草(Vallisneria natans)、叉尾斗鱼(Macropodus opercularis)、中华圆田螺(Cipangopaludina cahayensis)和生物质焦材料组合成生物处理系统,以富营养化园林水体为治理对象,研究了生态净水系统中水生动植物的生长状况,对水体中TN,TP,COD,NH_4^+-N,NO_2^--N等污染物的净化效果以及系统在消除水中孑孓的作用。结果表明:净水系统中无蚊子幼虫出现且水生动植物生长状况良好,对水体中TN,TP,COD,NH_4^+-N,NO_2^--N等有较好的去除效果,其去除率分别可达64.4%,49.5%,65.7%,73.8%,82.6%;TN,COD,DO等指标均符合地表水(GB 3838—2002)Ⅳ类水标准,而NH_4^+-N则符合Ⅱ类水要求。应用生态净水系统对于去除富营养化水体中主要污染物和蚊虫滋生起到了一定的作用,系统中各组成要素各司其职,技术友好,有助于实现可持续性水生态修复。 展开更多
关键词 水生动植物 生物质焦 生态净水系统 富营养化园林水体 净化效果
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Nitrogen and phosphorus budgets of the Changjiang River estuary 被引量:2
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作者 李祥安 俞志明 +2 位作者 宋秀贤 曹西华 袁涌铨 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2011年第4期762-774,共13页
Eutrophication has emerged as a key environmental problem in Chinese coastal waters, especially in the Changjiang (Yangtze) River estuary. In this area, large nutrient inputs result in frequent harmful algal blooms an... Eutrophication has emerged as a key environmental problem in Chinese coastal waters, especially in the Changjiang (Yangtze) River estuary. In this area, large nutrient inputs result in frequent harmful algal blooms and serious hypoxia in bottom waters. Four cruises were made in the estuary in 2006 to assess the concentration and distribution of dissolved inorganic nitrogen (DIN) and phosphorus (DIP). The concentration of DIN decreased gradually in a linear relationship with salinity from the river mouth to outer waters, while DIP was relatively more dispersed. A modified box budget method was used to estimate nutrient fluxes in the estuary and its adjacent waters. Water and nutrient budgets as well as primary production and denitrification rates were estimated from the box budget model. Estimated water residence time in the estuary was about 11 d. The turbid mixing zone released 33% of DIN and 49% of DIP, while in the adjacent outer sea 17.9 mmol DIN/m2·d and 0.36 mmol DIP/m2·d were fixed. Dissolved inorganic phosphorus was imported from the deep open sea waters, supporting primary production and population growth in this zone. Net ecosystem production (NEP) was calculated at 38.2 mmol/m2·d in the outer estuary and the estimated rate (N-fixation minus denitrification) was negative (1.92 mmol/m2·d), implying that a large amount of input nitrogen was taken up by algae and recycled through denitrification in bottom water and sediment. 展开更多
关键词 NITROGEN PHOSPHORUS NUTRIENTS TRANSPORT budget model Changjiang (Yangtze) River estuary
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