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Why Lake Taihu continues to be plagued with cyanobacterial blooms through 10 years(2007–2017) efforts

查看全文 作  者:Boqiang [1]Qin;Hans [2,3]W.Paerl;Justin [4]D.Brookes;Jianguo [5]Liu;Erik [6,7]Jeppesen;Guangwei [1]Zhu;Yunlin [1]Zhang;Hai [1]Xu;Kun [1]Shi;Jianming [1]Deng 高影响力作者 机构地区:[1]State Key Laboratory for Lake Science and Environment, Nanjing Institute of Geography & Limnology, Chinese Academy of Sciences;[2]The University of North Carolina at Chapel Hill, Institute of Marine Sciences;[3]College of Environment, Hohai University;[4]Water Research Centre, School of Biological Science, the University of Adelaide;[5]Center for Systems Integration and Sustainability, Department of Fisheries and Wildlife, Michigan State University;[6]Sino-Danish Centre for Education and Research;[7]Department of Bioscience and Arctic Research Centre, Aarhus University高影响力机构 出  处:《Science Bulletin》索引2019年第64卷第6期,共3页高影响力期刊 基  金:supported by the National Natural Science Foundations of China(41621002,41661134036);the Key Research Program of Frontier Sciences of the Chinese Academy of Sciences(QYZDJ-SSW-DQC008);the USA National Science Foundation(1240851);MARS Project Funded Under the 7th EU Framework Program(603378);the AU Water Technology Centre(WATEC);the University of Adelaide Environment Institute 摘  要:With the expansion of urban, industry, and agriculture after World War II, eutrophication firstly emerged as a major water quality threat in small water bodies [1]. As the increasing magnitudes and scales of nutrient pollution and habitat alteration, many of the world's large lakes exhibit symptoms of eutrophication, e.g., toxic cyanobacterial blooms, deoxygenation, and habitat loss. 关 键 词:With the expansion INCREASING MAGNITUDES HABITAT loss
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