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Spatiotemporal Changes of Cyanobacterial Bloom in Large Shallow Eutrophic Lake Taihu China

机译:太湖浅水富营养化湖中蓝藻绽放的时空变化。

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摘要

Lake Taihu is a large shallow eutrophic lake with frequent recurrence of cyanobacterial bloom which has high variable distribution in space and time. Based on the field observations and remote sensing monitoring of cyanobacterial bloom occurrence, in conjunction with laboratory controlled experiments of mixing effects on large colony formation and colonies upward moving velocity measurements, it is found that the small or moderate wind-induced disturbance would increase the colonies size and enable it more easily to overcome the mixing and float to water surface rapidly during post-disturbance. The proposed mechanism of wind induced mixing on cyanobacterial colony enlargement is associated with the presence of the extracellular polysaccharide (EPS) which increased the size and buoyancy of cyanobacteria colonies and promote the colonies aggregate at the water surface to form bloom. Both the vertical movement and horizontal migration of cyanobacterial colonies were controlled by the wind induced hydrodynamics. Because of the high variation of wind and current coupling with the large cyanobacterial colony formation make the bloom occurrence as highly mutable in space and time. This physical factor determining cyanobacterial bloom formation in the large shallow lake differ from the previously documented light-mediated bloom formation dynamics.
机译:太湖是一个大型浅水富营养化湖泊,蓝藻水华频繁发生,时空分布变化较大。基于对蓝藻水华发生的现场观察和遥感监测,结合对大菌落形成和菌落向上移动速度测量的混合效应的实验室控制实验,发现小或中等风致扰动会增加菌落尺寸,使其更容易克服混合,并且在扰动后迅速漂浮到水表面。拟议中的风诱导混合对蓝细菌菌落扩大的机制与细胞外多糖(EPS)的存在有关,EPS增加了蓝细菌菌落的大小和浮力并促进了菌落在水表面的聚集,从而形成了水华。蓝细菌菌落的垂直运动和水平迁移均受风致水动力控制。由于风和电流的变化很大,加上大的蓝细菌菌落的形成,使得水华的发生在空间和时间上都是高度可变的。决定大型浅湖中蓝藻水华形成的物理因素与先前记录的光介导水华形成动态不同。

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