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Using artificial fluorescent particles as tracers of livestock wastes within an agricultural catchment

机译:使用人造荧光粒子作为农业流域内牲畜废物的示踪剂

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摘要

Evidence for the movement of agricultural slurry and associated pollutants into surface waters is often anecdotal, particularly with relation to its 'paniculate' components which receive less attention than 'bio-available' soluble phases. To assess the extent of movement of slurry particles artificial fluorescent particles were mixed with slurry and applied to a field sub-catchment within a headwater catchment. Particles were 2-60 μm in diameter and two different densities, 2.7 and 1.2 g cm~(-3) representing 'inorganic' and 'organic' material. Water samples from the field and catchment outlet were collected during two storm events following slurry application and analysed for particle and suspended sediment concentrations (SSC). SSC from the field and catchment outlet always formed clockwise hysteresis loops indicating sediment exhaustion and particles of the two densities were always found to be positively correlated. Particles from the field formed clockwise hysteresis loops during the first discharge event after slurry application, but anti-clockwise hysteresis loops during the second monitored event which indicated a depletion of readily mobilisable particles. Particles from the catchment outlet always formed anticlockwise hysteresis loops. Particle size became finer spatially, between field and catchment outlet, and temporally, between successive storm events. The results indicate that slurry particles may be readily transported within catchments but that different areas may contribute to pollutant loads long after the main peak in SSC has passed. The density of the particles did not appear to have any effect on particle transport however the size of the particles may play a more important role in the 2-60 μm range.
机译:农业泥浆和相关污染物向地表水中迁移的证据常常是轶事,尤其是与“颗粒状”成分相关的证据比“生物可利用”可溶性相受到的关注少。为了评估泥浆颗粒的运动程度,将人工荧光颗粒与泥浆混合,并施加到源头集水区内的田间子集水区。颗粒的直径为2-60μm,具有两种不同的密度,分别为2.7和1.2 g cm〜(-3),代表“无机”和“有机”材料。在施用泥浆后的两次暴风雨事件中收集了来自田间和集水区出口的水样,并分析了颗粒物和悬浮沉积物的浓度(SSC)。来自田间和集水区出口的SSC总是形成顺时针方向的磁滞回线,表明沉积物耗尽,并且总是发现两种密度的颗粒呈正相关。在施加浆料后的第一次排放事件中,来自磁场的颗粒形成了顺时针方向的磁滞回线,但是在第二次监视事件中,逆时针方向的磁滞回线则表明了易动性粒子的消耗。来自集水口的颗粒总是形成逆时针的磁滞回线。在田间和集水区出口之间,以及在时间上,在连续的暴风雨事件之间,粒径变得更细。结果表明,在SSC的主峰通过很长时间之后,浆液颗粒可能会在集水区内方便地运输,但不同区域可能会增加污染物负荷。颗粒的密度似乎对颗粒的运输没有任何影响,但是在2-60μm的范围内,颗粒的尺寸可能起更重要的作用。

著录项

  • 来源
    《The Science of the Total Environment》 |2011年第6期|p.1095-1103|共9页
  • 作者单位

    Soil, Water and Air Team, Sustainable Soils and Grassland Systems Department, Rothamsted Research, North Wyke, Okehampton, Devon, EX20 2SB, UK;

    Soil, Water and Air Team, Sustainable Soils and Grassland Systems Department, Rothamsted Research, North Wyke, Okehampton, Devon, EX20 2SB, UK;

    Soil, Water and Air Team, Sustainable Soils and Grassland Systems Department, Rothamsted Research, North Wyke, Okehampton, Devon, EX20 2SB, UK;

    Natural Resources Department, Cranfield University, Cranfield, Bedfordshire, MK43 OAL, UK;

    Centre for Ecology and Hydrology, Wallingford, Oxford, 0X10 8BB, UK;

    Centre for Ecology and Hydrology, Wallingford, Oxford, 0X10 8BB, UK;

    Environmental Tracing Systems Ltd, The Coach House, Bannachra, Helensburgh C84 9EF, UK;

    School of Environment and Technology, University of Brighton, Brighton, BN2 4GJ, UK;

    School of Geography, College of Life and Environmental Sciences, The University of Exeter, Amory Building, Rennes Drive, Exeter, Devon, EX4 4QJ, UK;

    Soil, Water and Air Team, Sustainable Soils and Grassland Systems Department, Rothamsted Research, North Wyke, Okehampton, Devon, EX20 2SB, UK;

    Lancaster Environment Centre, Lancaster University, Lancaster, LAI 4YQ, UK;

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

    tracing; particles; animal waste; agricultural catchments; storm events;

    机译:追踪粒子;动物废物农业集水区;风暴事件;

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