Influence of cyanobacterial bloom accumulation and dissipation on underwater light attenuation in a large and shallow lake

被引:0
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作者
Manxue Zhang
Yunlin Zhang
Yongqiang Zhou
Yibo Zhang
Kun Shi
Cuiling Jiang
机构
[1] Nanjing Institute of Geography and Limnology,Taihu Laboratory for Lake Ecosystem Research, State Key Laboratory of Lake Science and Environment
[2] Chinese Academy of Sciences,College of Water Resources and Hydrology
[3] Hohai University,undefined
[4] University of Chinese Academy of Sciences,undefined
关键词
Cyanobacterial blooms; Ultraviolet; Photosynthetically active radiation; Diffuse attenuation coefficient; Lake Taihu;
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中图分类号
学科分类号
摘要
Cyanobacterial bloom accumulation and dissipation frequently occur in Lake Taihu, a typically shallow, eutrophic lake due to wind wave disturbance. However, knowledge of the driving mechanisms of cyanobacterial blooms on underwater light attenuation is still limited. In this study, we collected a high-frequency in situ monitoring of the wind field, underwater light environment, and surface water quality to elucidate how cyanobacterial bloom accumulation and dissipation affect the variations in underwater light attenuation in the littoral zone of Lake Taihu. Results showed that cyanobacterial blooms significantly increased the diffuse attenuation coefficient of ultraviolet-B (Kd(313)), ultraviolet-A (Kd(340)), and photosynthetically active radiation (Kd(PAR)); the scattering of total suspended matter (bbp(λ)); and the absorption of phytoplankton (aph(λ)) and chromophoric dissolved organic matter (CDOM, ag(λ)) (p < 0.01). The Kd(PAR) decreased quickly during the processes of bloom dissipation, but the decrease of Kd(313) and Kd(340) lagged 0.5 day. Our results suggested that cyanobacterial blooms could increase particle matters and elevated the production of autochthonous CDOM, resulting in underwater light attenuation increase. Ultraviolet radiation (UVR) and PAR attenuation both have significant responses to cyanobacterial blooms, but the response processes were distinct due to the different changes of particle and dissolved organic matters. Our study unravels the driving mechanisms of cyanobacterial blooms on underwater light attenuation, improving lake ecosystem management and protection.
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页码:79082 / 79094
页数:12
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