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- W3023701265 abstract "Hydrology and dissolved nutrients have been widely identified as the main drivers of phytoplankton dynamics in estuarine ecosystems. This study determined how phytoplankton chlorophyll responded to the co-occurrence of multiple environmental variables in two Chinese estuaries, and distinguished their specific roles in tidal forcing and riverine input. These estuaries were accordingly characterized by different levels of physicochemical gradients such as salinity, nutrients, and suspended sediment. Overall, the molar DIN/PO4 ratios suggested that phytoplankton was potentially P-limited in the river-enriched Pearl River estuary, while N-limitation was more readily detected in the tide-dominated Dafeng estuary. Nutrient-related pollution, as a source of potential water quality, was classified as sub-healthy (8 < WQI < 11). The interplay between salinity and nutrients in the turbidity zone (TZ) was less than that in the non-TZ; the negative and significant correlations between them implied a strong ecological interaction of river and tide. The adsorption/desorption of phosphorus from the sediment particles was stronger than that of nitrogen. The SEM-generated quantification demonstrated the importance of tide and river, both horizontally and vertically, as a result of estuarine dynamics. Our findings further suggested that sediment and salinity could moderately contribute to chlorophyll through integrated processes, including nutrient adsorption/desorption and dilution. Characterizing the cause-effect chain of phytoplankton provides insight into the multiple processes underlying the mechanism of environmental stress on ecosystem management." @default.
- W3023701265 created "2020-05-13" @default.
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- W3023701265 date "2020-08-01" @default.
- W3023701265 modified "2023-09-25" @default.
- W3023701265 title "Influence of river-tide dynamics on phytoplankton variability and their ecological implications in two Chinese tropical estuaries" @default.
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- W3023701265 doi "https://doi.org/10.1016/j.ecolind.2020.106458" @default.
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