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首页> 外文期刊>Marine ecology progress series >Phytoplankton and nutrient dynamics in a tidally dominated eutrophic estuary: daily variability and controls on bloom formation
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Phytoplankton and nutrient dynamics in a tidally dominated eutrophic estuary: daily variability and controls on bloom formation

机译:在一个以潮汐为主的富营养化河口中的浮游植物和养分动态:日变化和水华形成的控制

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摘要

To better understand nutrient dynamics and factors that promote the initiation of algal blooms, the Lafayette River, a tidal subestuary of Chesapeake Bay that experiences seasonal algal blooms, was sampled daily for a period of 54 d in the fall of 2005. Three phytoplankton blooms (chl a concentrations exceeding twice the average of monthly measurements from 2000 to 2009) occurred during this period: a mixed bloom of Akashiwo sanguinea and Gymnodinium sp., a monospecific Skeletonema costatum bloom, and a monospecific Gymnodinium sp. bloom. Over the sampling period, nutrient concentrations increased following precipitation events and were elevated between bloom periods but low during blooms. All measured forms of nitrogen (N) were positively correlated with dinoflagellate abundance with a lag time of 3 to 5 d, suggesting a possible triggering effect, although not by any single form of N. Concentrations of NO_2~- reached 10 uM between September and October, indicative of incomplete nitrification. Over a 24 h period, nutrient concentrations and chl a biomass varied by an order of magnitude (0.1 to 1 μM N and 4.5 to 45 μg chl a l~(-1), respectively) and were strongly linked to the tidal phase. In the highly eutrophic Lafayette River, when nutrient concentrations are high, phytoplankton blooms appear to be controlled by spring-neap tidal modulation and wind-driven mixing; however, picoplankton abundance does not appear to be linked to the spring-neap tidal cycle.
机译:为了更好地了解营养动态和促进藻华爆发的因素,2005年秋季,每天对切萨皮克湾潮汐河口经历季节性藻华的拉斐特河进行采样,采样时间为54 d。三个浮游植物华藻(在此期间,浓度超过了2000年至2009年每月平均测量值的两倍):明石赤霞珠和Gymnodinium sp。的混合开花,单生Skeletonema costatum绽放和单特异性Gymnodinium sp。盛开。在采样期间,养分浓度随降水事件而增加,在开花期之间升高,但在开花期较低。所有测量形式的氮(N)与鞭毛藻的丰度呈正相关,滞后时间为3到5 d,这暗示了可能的触发作用,尽管不是任何单一形式的N。NO_2〜-的浓度在9月至2004年之间达到10 uM。十月,表明硝化不完全。在24小时内,养分浓度和chl生物量变化了一个数量级(分别为0.1至1μMN和4.5至45μgchl al(-1)),并与潮汐期密切相关。在高度富营养化的拉斐特河中,当营养物浓度很高时,浮游植物的开花似乎受到春季潮汐调制和风驱动混合的控制。然而,浮游生物的丰度似乎与春季小潮潮没有关系。

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