首页> 外文期刊>Science of the total environment >Sewage effluent clean-up reduces phosphorus but not phytoplankton in lowland chalk stream (River Kennet, UK) impacted by water mixing from adjacent canal
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Sewage effluent clean-up reduces phosphorus but not phytoplankton in lowland chalk stream (River Kennet, UK) impacted by water mixing from adjacent canal

机译:污水排放物的净化减少了低地白垩溪流(英国肯尼特河)中的磷,但不能减少浮游植物的磷,受到邻近运河的水混合的影响

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摘要

Information is provided on phosphorus in the River Kennet and the adjacent Kennet and Avon Canal in southern England to assess their interactions and the changes following phosphorus reductions in sewage treatment work (STW) effluent inputs. A step reduction in soluble reactive phosphorus (SRP) concentration within the effluent (5 to 13 fold) was observed from several STWs discharging to the river in the mid-2000s. This translated to over halving of SRP concentrations within the lower Kennet. Lower Kennet SRP concentrations change from being highest under base-flow to highest under storm-flow conditions. This represented a major shift from direct effluent inputs to a within-catchment source dominated system characteristic of the upper part to the catchment. Average SRP concentrations in the lower Kennet reduced over time towards the target for good water quality. Critically, there was no corresponding reduction in chlorophyll-α concentration, the waters remaining eutrophic when set against standards for lakes. Following the up gradient input of the main water and SRP source (Wilton Water), SRP concentrations in the canal reduced down gradient to below detection limits at times near its junction with the Kennet downstream. However, chlorophyll concentrations in the canal were in an order of magnitude higher than in the river. This probably resulted from long water residence times and higher temperatures promoting progressive algal and suspended sediment generations that consumed SRP. The canal acted as a point source for sediment, algae and total phosphorus to the river especially during the summer months when boat traffic disturbed the canal's bottom sediments and the locks were being regularly opened. The short-term dynamics of this transfer was complex. For the canal and the supply source at Wilton Water, conditions remained hypertrophic when set against standards for lakes even when SRP concentrations were extremely low.
机译:提供了有关Kennet河以及英格兰南部相邻的Kennet和Avon运河中磷的信息,以评估它们之间的相互作用以及污水处理工作(STW)废水输入中磷减少后的变化。在2000年代中期,从数台污水处理厂排放到河流中,观察到污水中可溶性反应性磷(SRP)浓度逐步降低(5到13倍)。这意味着下部Kennet中的SRP浓度降低了一半。较低的Kennet SRP浓度从基本流量下的最高变为风暴流量下的最高。这代表了从直接废水输入到集水区内部来源为主的上部到集水区系统特征的重大转变。肯尼特河下游的平均SRP浓度会随着时间的流逝而降低,以达到良好水质的目标。至关重要的是,叶绿素-α浓度并没有相应降低,与湖泊标准相比,水域仍然富营养化。在输入主水和SRP源(威尔顿水公司)的上升坡度后,运河中的SRP浓度有时会在其与下游Kennet的交界处降低到低于检测极限。但是,运河中的叶绿素浓度比河流中的高一个数量级。这可能是由于较长的水停留时间和较高的温度促进了消耗SRP的渐进藻类和悬浮沉积物的产生。运河是河流中沉积物,藻类和总磷的主要来源,特别是在夏季,当船只通行扰乱了运河底部的沉积物并且船闸定期打开时。这种转移的短期动力是复杂的。对于威尔顿水道的运河和供水源而言,即使SRP浓度极低,但与湖泊标准相抵触时,条件仍然肥沃。

著录项

  • 来源
    《Science of the total environment》 |2010年第22期|p.5306-5316|共11页
  • 作者单位

    Centre for Ecology and Hydrology, Maclean Building, Crowmarsh Gifford, Wallingford, OXON, OX10 8BB, UK;

    Environment Agency, Howbery Park, Wallingford, OXON, UK;

    Centre for Ecology and Hydrology, Maclean Building, Crowmarsh Gifford, Wallingford, OXON, OX10 8BB, UK;

    Environment Agency, Howbery Park, Wallingford, OXON, UK;

    Centre for Ecology and Hydrology, Maclean Building, Crowmarsh Gifford, Wallingford, OXON, OX10 8BB, UK;

    Centre for Ecology and Hydrology, Maclean Building, Crowmarsh Gifford, Wallingford, OXON, OX10 8BB, UK;

    Centre for Ecology and Hydrology, Maclean Building, Crowmarsh Gifford, Wallingford, OXON, OX10 8BB, UK;

    Environment Agency, Howbery Park, Wallingford, OXON, UK;

    School of Human and Environmental Sciences, University of Reading, Reading, RG6 6AB, UK;

    School of Human and Environmental Sciences, University of Reading, Reading, RG6 6AB, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    kennet; canal; river; phosphorus; sediment; chlorophyll; effluent; eutrophication;

    机译:Kennet;运河;河;磷;沉淀;叶绿素废水富营养化;
  • 入库时间 2022-08-17 13:56:24

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