lake eutrophication
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2021 ◽  
Vol 14 ◽  
pp. 100095
Author(s):  
Yindong Tong ◽  
Jingjing Sun ◽  
Minhaz Uddin ◽  
Xiangzhen Kong ◽  
Yan Lin ◽  
...  

2021 ◽  
pp. 127134
Author(s):  
Qianlinglin Qiu ◽  
Zhongyao Liang ◽  
Yaoyang Xu ◽  
Shin-ichiro S. Matsuzaki ◽  
Kazuhiro Komatsu ◽  
...  

Author(s):  
Bin Ji ◽  
Cheng Liu ◽  
Jiechao Liang ◽  
Jian Wang

Urban freshwater lakes play an indispensable role in maintaining the urban environment and are suffering great threats of eutrophication. Until now, little has been known about the seasonal bacterial communities of the surface water of adjacent freshwater urban lakes. This study reported the bacterial communities of three adjacent freshwater lakes (i.e., Tangxun Lake, Yezhi Lake and Nan Lake) during the alternation of seasons. Nan Lake had the best water quality among the three lakes as reflected by the bacterial eutrophic index (BEI), bacterial indicator (Luteolibacter) and functional prediction analysis. It was found that Alphaproteobacteria had the lowest abundance in summer and the highest abundance in winter. Bacteroidetes had the lowest abundance in winter, while Planctomycetes had the highest abundance in summer. N/P ratio appeared to have some relationships with eutrophication. Tangxun Lake and Nan Lake with higher average N/P ratios (e.g., N/P = 20) tended to have a higher BEI in summer at a water temperature of 27 °C, while Yezhi Lake with a relatively lower average N/P ratio (e.g., N/P = 14) tended to have a higher BEI in spring and autumn at a water temperature of 9–20 °C. BEI and water temperature were identified as the key parameters in determining the bacterial communities of lake water. Phosphorus seemed to have slightly more impact on the bacterial communities than nitrogen. It is expected that this study will help to gain more knowledge on urban lake eutrophication.


2021 ◽  
Vol 2021 (1) ◽  
Author(s):  
Jianjun Jiao ◽  
Wenyan Tang

AbstractIn this work, we present a lake-eutrophication model with nontransient/transient impulsive dredging and pulse inputting. We obtain globally asymptotically stable conditions for the phytoplankton-extinction periodic solution of system (2.1). Furthermore, we gain the permanent conditions for system (2.1). Finally, we employ computer simulations to illustrate the results. Our results indicate the effective controlling strategy for water resource management.


2021 ◽  
Vol 594 ◽  
pp. 125883
Author(s):  
Zhongyao Liang ◽  
Yaoyang Xu ◽  
Qianlinglin Qiu ◽  
Yong Liu ◽  
Wentao Lu ◽  
...  

MethodsX ◽  
2021 ◽  
pp. 101311
Author(s):  
Song-Shun Lin ◽  
Shui-Long Shen ◽  
Ning Zhang ◽  
Annan Zhou
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