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三峡水域氮磷污染对水华暴发/消涨行为的协同影响
引用本文:刘信安,湛敏,罗彦凤,郭圣文.三峡水域氮磷污染对水华暴发/消涨行为的协同影响[J].环境科学,2006,27(8):1554-1559.
作者姓名:刘信安  湛敏  罗彦凤  郭圣文
作者单位:1. 重庆大学化学化工学院,重庆,400044;重庆大学三峡库区生态环境教育部重点实验室,重庆,400044
2. 重庆大学化学化工学院,重庆,400044
3. 重庆大学生物工程学院,重庆,400044
基金项目:国家自然科学基金项目(20377054);重庆大学研究创新实验项目(编号:19)
摘    要:藻类生长/消退与藻类对氮、磷的吸收比率ω1ω2相关,ωi正/负增长分别对应藻类生长时从水体中吸收氮磷的加速阶段和藻类分解时向水体释放氮磷的消退阶段,在特定磷氮比(P/N)范围出现ω1ω2同时突变有可能从理论上解释水华的暴发/消退.根据三峡流域实测数据和藻类吸收氮磷的关联函数,在三维空间表征了随氮磷浓度协同作用导致的ω1ω2在特定P/N区域同时突变所揭示出的水华暴发/消退现象,从而直观、合理地解释了:①适当的P/N范围才可能暴发水华;②如果P/N区间同时满足ω1ω2正向急剧增长的要求,藻类疯长,而ω1ω2同时朝负值方向急剧降低,水华消退;③水华暴发/消退的速率为同一数量级,且水华暴发/消退在氮、磷浓度达到某一敏感范围时将表现出明显的周期性振荡.这些性态可能更真实地反映出水华暴发/消退时藻类对营养盐的吸收/释放机理.

关 键 词:水华爆发/消退  吸收比率  磷氮比  协同作用
文章编号:0250-3301(2006)08-1554-06
收稿时间:2005-06-24
修稿时间:2005-06-242005-08-17

Synergistic Effects by P and N Pollution to Fluctuation Behavior/Bloom of Algae along the Three-Gorges Valley
LIU Xin-an,ZHAN Min,LUO Yan-feng and GUO Sheng-wen.Synergistic Effects by P and N Pollution to Fluctuation Behavior/Bloom of Algae along the Three-Gorges Valley[J].Chinese Journal of Environmental Science,2006,27(8):1554-1559.
Authors:LIU Xin-an  ZHAN Min  LUO Yan-feng and GUO Sheng-wen
Institution:Chemical Engineering College, Chongqing University, Chongqing 400044, China. xaliu@cqu.edu.cn
Abstract:Absorption rate coefficient of algae omega(i) to nutrients such as N and P could be used for describing algal increases/decreases velocity in water areas in theory. omega(i) raise might correspond to algal quickly growth and to ccelerate absorption of N and P while omega(i) decrease might correspond to algal decompose and release of N and P. According to locale measuring data along the Three-Gorges valley and algal dynamics model of nutritious absorption we have obtained some interest 3-dimension figures in which omega(i) will varies up and down obviously with N and P concentration in special bound to show a synergistic effects of N and P that might reveal an inner behavior of algal bloom/decompose. The research results explain in reason: (1) algal blooms do will happen in one special P/N range in a certain water system; (2) when omega(1) and omega(2) ascend rapidly and simultaneously in positive direction at same time algae would bloom, and when omega(1) and omega(2) descend sharply and simultaneously in negative direction at same time algae would decompose; (3) The velocity of algal bloom is not only same approximately as one of algal decompose, but also its variety has evidently periodic fluctuation. All of these could reveal effectively mechanism of nutritious absorption/release as algal bloom/decompose.
Keywords:bloom/fluctuation of algal  nutritious absorption rate coefficient  ratio of P to N  synergistic effects
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