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首页> 外文期刊>The Science of the Total Environment >Phosphorus concentrations in the River Dun, the Kennet and Avon Canal and the River Kennet, southern England
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Phosphorus concentrations in the River Dun, the Kennet and Avon Canal and the River Kennet, southern England

机译:英格兰南部的邓恩河,肯尼特河和埃文运河和肯尼特河中的磷浓度

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Variations in phosphorus (P) concentrations in an agriculturally impacted river draining a Chalk aquifer and an associated canal in the west of the Thames Basin, southern England are examined and linked to agricultural and sewage sources and within river/canal process controls. The study area comprises the River Dun, the adjacent River Kennet and the Kennet and Avon (K&A) Canal. Large seasonal variations are observed for soluble reactive phosphorus (SRP) and dissolved silicon (Si) with low concentrations in the spring and summer times when biological activity is high. The K&A Canal shows the largest SRP and Si concentration declines. This reflects high biological activity coupled with higher temperatures and higher water residence limes. The extent of SRP removal is examined in relation to organic (uptake/release with phytoplankton growth/decay) and, to a lesser extent, inorganic (SRP coprecipitation with calcite) mechanisms. Boron (B) is used as a tracer of sewage sources. Agricultural inputs of both dissolved and particulate P (PP) can be important particularly under conditions where the catchment is wet and near surface/overland flow is important: sewage treatment works effluent and septic tank discharges to groundwater also probably provide a major component of the SRP occurring within the water column. The canal, and to a lesser extent the river, acts as sink for P in sewage effluent sources due to the high biological activity especially during the spring and summer. The aquifer probably acts as a major sink for agricultural and septic tank inputs of P.
机译:在英格兰南部的泰晤士河盆地西部,在一条受农业影响的河流中排放白垩含水层和相关运河的磷(P)浓度变化已得到检查,并与农业和污水源以及河流/运河过程控制相关。研究区域包括邓河,毗邻的肯尼特河和肯尼特和雅芳(K&A)运河。当生物活性较高时,在春季和夏季,低浓度的可溶性反应性磷(SRP)和可溶性硅(Si)会出现较大的季节性变化。 K&A运河的SRP和Si浓度下降幅度最大。这反映出较高的生物活性以及较高的温度和较高的水生石灰。相对于有机(浮游植物生长/衰变的摄取/释放)以及无机(SRP与方解石共沉淀)机制,研究了SRP去除的程度。硼(B)用作污水源的示踪剂。溶解态P和颗粒态P(PP)的农业投入都非常重要,特别是在集水区潮湿且地表/陆地流量接近的条件下:污水处理厂的污水和化粪池向地下水的排放也可能是SRP的主要组成部分发生在水柱内。由于具有很高的生物活性,特别是在春季和夏季,运河以及河流中的一小部分充当了污水排放源中磷的汇。含水层可能充当了农业和化粪池输入磷的主要汇。

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