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Spatial and temporal variability of particulate phosphorus fractions in seston and sediments of Lake Kinneret under changing loading scenario

机译:在变化的负荷情况下,金奈雷特湖的湖泊和湖泊沉积物中的颗粒磷含量的时空变化

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摘要

Over a period of three years, the flux of particulate phosphorus to the sediment–water interface of Lake Kinneret was monitored by using seston traps deployed near the bottom of both accumulation and resuspension zones. The trap material was subjected to sequential phosphorus extraction. The obtained data set was compared to the phosphorus distribution in the surface layer of bottom sediments. Due to the sequence of drought years less allochtoneous phosphorous is reaching the lake resulting in a continuous decline of total particulate phosphorus (TPP) in the upper sediment layer. The observed decline in sedimentary TPP in spite of increased TPP sedimentation can be seen as a dilution effect due to the sedimentation of material with a relatively lower P content. The change in sedimentation can be seen as the result of increased resuspension at low lake levels. With sedimentary P in the littoral zone being unaffected by the drop in the external P load, the changes observed in the profundal zone appear to be driven by internal wave activity.
机译:在三年的时间内,通过部署在堆积区和重悬浮区底部附近的塞阱,监测了磷颗粒向Kinneret湖沉积物-水界面的通量。对捕集材料进行顺序的磷提取。将获得的数据集与底部沉积物表层中的磷分布进行比较。由于干旱年份的序列,较少的异源磷进入湖泊,导致上层沉积物中总颗粒磷(TPP)持续下降。尽管TPP沉降增加,但观察到的沉降TPP下降仍被视为是一种稀释作用,这是由于P含量相对较低的材料沉降所致。沉积物的变化可以看作是低湖水位增加的重悬作用的结果。沿岸带的沉积物P不受外部P负荷下降的影响,在深层带观察到的变化似乎是由内波活动驱动的。

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