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三峡水库雨季和旱季浮游植物的分布情况。

Distribution of phytoplankton in the Three-Gorge Reservoir during rainy and dry seasons.

作者信息

Zeng Hui, Song Lirong, Yu Zhigang, Chen Hongtao

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, The Chinese Academy of Sciences, Wuhan, Hubei 430072, PR China.

出版信息

Sci Total Environ. 2006 Aug 31;367(2-3):999-1009. doi: 10.1016/j.scitotenv.2006.03.001. Epub 2006 Apr 19.

Abstract

After damming of the Yangtze River, in order to explore the impacts of the Three-Gorge Dam (TGD) on the aquatic ecosystem, phytoplankton composition, abundance and biomass spatial distribution were studied in the Three-Gorge Reservoir (TGR), and the closest upstream anabranch Xiangxi River, which is 38 km away from the Three-Gorge Dam (TGD) during August (rainy season) 2004 and April (dry season) 2005. In surveys, 6 transects (2 downstream and 4 cross-stream) and 25 stations have been investigated and 314 samples were collected from the surface to the river bed with water samplers. In TGR, 63 taxa and 60 taxa were identified in the rainy and dry seasons, respectively. In the Xiangxi River, 39 taxa were observed in the rainy and dry seasons. Algal blooms occurred in the Xiangxi River and at the influx region of the Yangtze and Xiangxi in both seasons, but had not occurred prior to damming. In the rainy season, the dominant species was Chroomonas acuta with 1.84x10(7) cells l-1, and in the dry season the dominant species were Asterionella formosa and Cryptomonas ovata with 1.34x10(7) cells l-1 and 1.79x10(6) cells.l-1, respectively. In the main channel of TGR, there were no significant correlations between phytoplankton abundance and the concentrations of the main soluble nutrients. In the Xiangxi River, significant negative correlations were observed between phytoplankton abundance and nitrate (Spearman, p<0.01, n=21), phosphate (Spearman, p<0.05, n=21) and silicate (Spearman, p<0.01, n=21) in the rainy season, and similar correlations were also observed with nitrate (Spearman, p<0.05, n=28) and silicate (Spearman, p<0.01, n=28), but not with phosphate in the dry season. Since the damming of the Yangtze River, eutrophication in the anabranch within the backwater has occurred and become severe, and the frequency of algal bloom within TGR and anabranches is expected to increase.

摘要

长江截流后,为探究三峡大坝对水生生态系统的影响,于2004年8月(雨季)和2005年4月(旱季)对三峡水库及其距离三峡大坝38公里的紧邻上游支流香溪河的浮游植物组成、丰度及生物量空间分布进行了研究。调查中,设置了6条断面(2条下游断面和4条横向断面),共25个站点,使用采水器从水面至河底采集了314个样本。三峡水库雨季鉴定出63个分类单元,旱季鉴定出60个分类单元。香溪河雨季和旱季均观测到39个分类单元。香溪河以及长江与香溪河交汇处的藻华在两个季节均有发生,但截流前未出现过。雨季优势种为尖隐藻,丰度为1.84×10⁷个/升;旱季优势种为美丽星杆藻和卵形隐藻,丰度分别为1.34×10⁷个/升和1.79×10⁶个/升。三峡水库主河道中,浮游植物丰度与主要可溶性营养盐浓度之间无显著相关性。香溪河雨季浮游植物丰度与硝酸盐(Spearman,p<0.01,n=21)、磷酸盐(Spearman,p<0.05,n=21)和硅酸盐(Spearman,p<0.01,n=21)呈显著负相关,旱季与硝酸盐(Spearman,p<0.05,n=28)和硅酸盐(Spearman,p<0.01,n=28)也有类似相关性,但与磷酸盐无相关性。自长江截流以来,回水区支流发生富营养化且日趋严重,预计三峡水库及支流藻华发生频率将会增加。

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