絮凝作用
浮游植物
微咸水
河口
外聚物
环境科学
环境化学
微粒
生物量(生态学)
海洋学
浮游生物
海洋雪
清除率
化学
浊度
叶绿素a
有机质
溶解有机碳
远洋带
降水
生态学
藻类
生物地球化学循环
蓝藻
空间分布
作者
Luz Amadei Martínez,Koen Sabbe,M. Fettweis,Xavier Desmit,Yves Israël,W.T. Bakker,Renaat Dasseville,Sofie D’hondt,Ilse Daveloose,Tine Verstraete,Peter Chaerle,Natacha Brion,Tom Maris,Wim Vyverman
摘要
Abstract Over the past decades, improvements in water quality—particularly increased oxygen and reduced nitrogen concentrations—have led to changes in phytoplankton biomass and community composition in the Schelde estuary, a macrotidal estuary in Belgium/SW Netherlands. We argue that these changes have affected SPM dynamics by modifying floc stability and size. Seasonal and spatial variability in SPM flocculation dynamics were examined using water samples collected monthly from December 2021 to December 2022 at five stations in the freshwater and brackish tidal reaches of the estuary. In a custom‐built flocculation chamber, these samples were first subjected to a high turbulent shear rate (45 s −1 ) to break the flocs, followed by a lower shear rate (20 s −1 ) that promoted aggregation for 120 min. Floc size distribution changes were analyzed to determine key flocculation parameters, in particular, equilibrium floc size ( D e ), and flocculation speed ( V f ). Using generalized additive models, we assessed the influence of seasonal, spatial, environmental, and biotic factors on D e and V f . Unlike in the brackish stations, the freshwater stations displayed clear seasonal patterns in flocculation dynamics, with D e and V f increasing in spring and summer. The strong positive correlations between D e , V f , and Chl a , as well as between V f and phytoplankton‐derived particulate organic carbon, suggest that phytoplankton plays a key role in the flocculation process. Transparent exopolymer particles (TEP), which because of their sticky properties can promote particle coagulation, were only weakly correlated with enhanced flocculation, suggesting that TEP properties may be affected by factors such as its specific composition, age, and remineralization.
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