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用镶嵌组合植物群落控制湖泊饮用水源区藻类及氮污染
引用本文:王国祥 濮培民. 用镶嵌组合植物群落控制湖泊饮用水源区藻类及氮污染[J]. 植物资源与环境学报, 1998, 7(2): 35-41
作者姓名:王国祥 濮培民
作者单位:中国科学院南京地理与湖泊研究所
基金项目:国家科委和欧盟科技部联合支持的中国-丹麦合作研究项目
摘    要:
依据湖泊中不同生态类型水生高等植物的微生境特点,设计建造了由漂浮、浮叶、沉水植物为优势种的斑块小群丛构成的镶嵌组合水生植物群落(MosaicCommunityofMacrophytes:MCM),并在太湖五里湖一湖湾内以动态模拟试验,从群落水平研究了水生高等植物群落对富营养化湖泊饮用水源区湖水的净化能力。结果表明,富营养化湖水经MCM净化后,藻类生物量(以Chla计)下降577%,藻类数量下降2~3个数量级,氨氮下降667%,总氮下降600%,水质得到明显改善。与以该湖湾湖水为水源的水厂出水相比,经MCM净化的湖水其氨氮比水厂出水的氨氮平均低451%,总氮低373%,可见经MCM净化的湖水部分指标优于同源的自来水。综合群落的微生境特征及水生高等植物群落内硝化反硝化细菌分布特点,探讨了MCM的除氮机理。

关 键 词:水生高等植物;群落;水质净化;饮用水源水;动态试验;太湖

The purification of mosaic community of macrophytes for eutrophic lake water
Wang Guo Xiang,Pu Pei Min,Zhang Sheng Zao,Li Wan Chun,Hu Wei Ping,Hu Chun Hua. The purification of mosaic community of macrophytes for eutrophic lake water[J]. Journal of Plant Resources and Environment, 1998, 7(2): 35-41
Authors:Wang Guo Xiang  Pu Pei Min  Zhang Sheng Zao  Li Wan Chun  Hu Wei Ping  Hu Chun Hua
Abstract:
A mosaic community of macrophytes (MCM) is built with aquatic macrophytes of various ecological group in a bay of Taihu Lake. Its area is about 200 m 2 . The purification efficiency of the MCM is evaluated by simulative dynamic test. The result shows that the eutrophic water of Taihu Lake can be purified effectively as it pass through MCM. The purified water is drawn out from MCM by a pump at the pumping capacity of 42.67 m 3 /d. The removal efficiencies of MCM for algal biomass (Chla), NH 4 N and Total N (TN) are 57.7%, 66.7% and 60.0%, respectively. Comparing with the tap water of the local water plant, the mean values of NH 4 N and TN of the MCM effluent are low by 45.1% and 37.3%, respectively. For the effluent of MCM, the water quality is significantly better than that for the raw water (inflow) and for the tap water of the local water plant. The results demonstrate that the eutrophic lake water can indeed purify by the mosaic community of macrophytes (MCM).
Keywords:aquatic macrophyte  mosaic community of macrophytes (MCM)  purifying water quality  source of drinking water  dynamic test  Taihu Lake
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