(请使用IE浏览器访问本系统)

  学科分类

  基础科学

  工程技术

  生命科学

  人文社会科学

  其他

篇目详细内容

【篇名】 Seasonal variation of nitrogen and phosphorus in Xiaojiang River—A tributary of the Three Gorges Reservoir
【刊名】 Frontiers of Environmental Science and Engineering in China
【刊名缩写】 Front.Environ.Sci.Engin.China
【ISSN】 1673-7415
【EISSN】 1673-7520
【DOI】 10.1007/s11783-009-0039-y
【出版社】 Higher Education Press and Springer-Verlag
【出版年】 2009
【卷期】 3 卷3期
【页码】 334-340 页,共 7 页
【作者】 Zhe LI; Jinsong GUO; Man LONG; Fang FANG; Jinping SHENG; Hong ZHOU;
【关键词】 Three Gorges Reservoir; eutrophication; nitrogen; phosphorus; seasonal variation; chlorophyll

【摘要】
A yearlong monitoring program in the backwater area of Xiaojiang River (XBA) was launched in order to investigate the eutrophication of backwater areas in tributaries of the Yangtze River in the Three Gorges Reservoir (TGR) in China, starting after the impoundment water level of the TGR reached 156 m. From March 2007 to March 2008, the average concentration of total nitrogen (TN) and total phosphorus (TP) were (1553 ± 484) μg·L−1 and (62 ± 31) μg·L−1, respectively. The mean value of chlorophyll was (9.07 ± 0.91) μg·L−1. The trophic level of XBA was meso-eutrophic, while the general nutrient limitation was phosphorus. The results indicated that XBA has a strong ability to purify itself and has non-point source pollution from terrestrial runoff. The variation of TN/TP ratio was caused by a variation in TN rather than in TP when TN/TP<22. N-fixation from cyanobacteria occurred and became an important process in overcoming the nitrogen deficit under a low TN/TP ratio. When TN/TP ≥ 22, the variation of TP affected the TN/TP ratio more significantly than TN. The increase of TP in XBA was caused mainly by particulate phosphorus, which could originate from a non-point source as adsorptive inorganic forms after heavy rainfall and surface runoff. An increase in the river’s flow could also contribute to an unstable environment for the growth of phytoplankton.
版权所有 © CALIS管理中心 2008