水质
富营养化
环境科学
藻类
水华
绿藻门
硝酸盐
群落结构
生态学
浮游植物
生物
营养物
作者
Xiang Liu,Yong Jung Song,Tongchao Ni,Yansong Yang,Ben Ma,Tinglin Huang,Shengnan Chen,Haihan Zhang
标识
DOI:10.1016/j.scitotenv.2024.170086
摘要
Reservoir connectivity provides a solution for regional water shortages. Understanding the water quality of reservoirs and the response of algal communities to water transfer could provide the basis for a long-term evolutionary model of reservoirs. In this study, a water-algal community model was established to study the effects of water transfer on water quality and algal communities in reservoirs. The results showed that water transfer significantly decreased total nitrogen and nitrate concentrations. However, the water transfer resulted in an increase in the CODMn concentration and conductivity in the receiving reservoir. Additionally, the algal density and chlorophyll-a (chl-a) concentration showed an increase with water transfer. Bacillariophyta, Cyanophyta, and Chlorophyta were the dominant algal phyllum in all three reservoirs. Water transfer induced the evolution of the algal community by driving changes in the chemical parameters of the receiving reservoir and led to more complex relationships within the algal community. The effects of stochastic processes on algal communities were also enhanced in the receiving reservoirs. These results provide specific information for water quality safety management and eutrophication prevention in connected reservoirs.
科研通智能强力驱动
Strongly Powered by AbleSci AI