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Modeling the phosphorus retention of the Kis-Balaton upper reservoir

机译:模拟Kis-Balaton上层储层的磷保留

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The Kis-Balaton reservoir system, consisting of the upper and lower reservoirs, is located near to the mouth of the Zala River. It was established for the protection of Lake Balaton against high nutrient loads. In accordance with the original plan prepared at the end of 70s the aim was that before entering the lake, nutrients - primarily phosphorus - will be removed by macrophytes. The Upper Reservoir started to operate in 1985. In contrast to the predictions, it became an open lake dominated by algae. Until 1991 about 50% of the external phosphorus load has been removed yearly. However, the retention efficiency has decreased considerably after reduction of the external load upon phosphorus removal at the wastewater treatment plant of the largest town of the Zala catchment. This observation can be explained by the increased contribution of the internal loading. To analyze the phosphorus removal mechanisms and to understand the behavior of the sediment, different water quality models were applied. The results show that the P retention is characterized by different processes acting spatially differently. Essentially, abiotic processes like settling of inorganic particulate P and the adsorption of dissolved inorganic P are responsible for the P:retention in the reservoir, mostly in the neck of the Upper Reservoir. Simple models indicated that the internal loading increased after the external load reduction. In fact, it was not that the internal loading increased, but the adsorption decreased. (C) 1998 IAWQ. Published by Elsevier Science Ltd. [References: 12]
机译:Kis-Balaton水库系统由上,下水库组成,位于Zala河口附近。它的建立是为了保护巴拉顿湖免受高营养负荷。根据70年代末制定的原始计划,目标是在进入湖泊之前,大型植物将清除养分-主要是磷。上层水库于1985年开始运营。与预言相反,它变成了一个以藻类为主的开放湖泊。到1991年,每年约消除50%的外部磷负荷。但是,在Zala流域最大城镇的废水处理厂去除磷后,外部负载减少后,保留效率已大大降低。该观察结果可以通过内部载荷的增加贡献来解释。为了分析除磷机理并了解沉积物的行为,应用了不同的水质模型。结果表明,P保留的特征在于不同的过程在空间上作用不同。从本质上讲,非生物过程(例如,无机颗粒物P的沉降和溶解的无机P的吸附)是导致P:保留在储层中的原因,大部分位于上部储层的颈部。简单模型表明,在减少外部负载之后,内部负载会增加。实际上,并不是内部负载增加,而是吸附减少。 (C)1998 IAWQ。由Elsevier Science Ltd.发布[参考:12]

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