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Phosphorus removal by the multipond system sediments receiving agricultural drainage m a headstream watershed

机译:多源系统去除磷,在上游流域接收农业排水的沉积物

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Wetland systems in headstream watersheds are important to control the nonpoint source pollutant phosphorus. Experiments were conducted using intact sediment-water columns obtained from the multipond system in Liuchahe watershed of Chaohu Lake to determine its capacity to retain P. It was found that pond sediments had strong P retention ability. For the Hill pond, Village pond and Rice pond, their retention coefficient A) were 288.3, 279.2 and 260.8 L/m~2, respectively. The equilibrium P concentration ( EPC_W) wereO.016, 0.028 and 0.018 mg/L, respectively. The Hill pond indicated the highest P retention ability. P retained in the pond sediments indicated high stable degree. P removal from the overlying water column into the pond sediments followed a first-order kinetic model. Under the experimental hydrological conditions, the retention time had a positive correlation with the P loading. The multipond system could provide enough retention time to retain P in drainage runoffs. At the P levels evaluated, the sediments of the multipond system are effective sinks to retain P from nonpoint source runoffs.
机译:上游流域的湿地系统对于控制面源污染物磷很重要。利用巢湖六岔河流域多池系统获得的完整的沉积物-水柱进行试验,确定其保留磷的能力。发现池塘沉积物具有较强的磷保留能力。对于山池,村池和稻池,其保留系数A)分别为288.3、279.2和260.8 L / m〜2。平衡磷浓度(EPC_W)分别为0.016、0.028和0.018 mg / L。山塘显示出最高的磷保持能力。保留在池塘沉积物中的磷表明高度稳定。从上层水柱到池塘沉积物中的磷去除遵循一阶动力学模型。在实验水文条件下,保留时间与磷负荷呈正相关。多池系统可以提供足够的保留时间以将P保留在排水径流中。在评估的P水平下,多池系统的沉积物是有效的汇,可保留非点源径流中的P。

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