首页> 外文期刊>The Science of the Total Environment >The changing trend in nitrate concentrations in major aquifers due to historical nitrate loading from agricultural land across England and Wales from 1925 to 2150
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The changing trend in nitrate concentrations in major aquifers due to historical nitrate loading from agricultural land across England and Wales from 1925 to 2150

机译:由于1925年至2150年间英格兰和威尔士各地农田的历史硝酸盐负荷,主要含水层中硝酸盐浓度的变化趋势

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摘要

Nitrate is necessary for agricultural productivity, but can cause considerable problems if released into aquatic systems. Agricultural land is the major source of nitrates in UK groundwater. Due to the long time-lag in the ground-water system, it could take decades for leached nitrate from the soil to discharge into freshwaters. However, this nitrate time-lag has rarely been considered in environmental water management Against this background, this paper presents an approach to modelling groundwater nitrate at the national scale, to simulate the impacts of historical nitrate loading from agricultural land on the evolution of groundwater nitrate concentrations. An additional process-based component was constructed for the saturated zone of significant aquifers in England and Wales. This uses a simple flow model which requires modelled recharge values, together with published aquifer properties and thickness data. A spatially distributed and temporally variable nitrate input function was also introduced. The sensitivity of parameters was analysed using Monte Carlo simulations. The model was calibrated using national nitrate monitoring data. Time series of annual average nitrate concentrations along with annual spatially distributed nitrate concentration maps from 1925 to 2150 were generated for 28 selected aquifer zones. The results show that 16 aquifer zones have an increasing trend in nitrate concentration, while average nitrate concentrations in the remaining 12 are declining. The results are also indicative of the trend in the flux of groundwater nitrate entering rivers through baseflow. The model thus enables the magnitude and timescale of groundwater nitrate response to be factored into source apportionment tools and to be taken into account alongside current planning of land-management options for reducing nitrate losses.
机译:硝酸盐对于农业生产力是必不可少的,但是如果释放到水生系统中,可能会引起很多问题。农业用地是英国地下水中硝酸盐的主要来源。由于地下水系统的时滞较长,从土壤中淋溶出的硝酸盐可能需要数十年才能排入淡水。但是,这种硝酸盐的时滞在环境水管理中很少被考虑。在这种背景下,本文提出了一种在全国范围内对地下水硝酸盐进行建模的方法,以模拟农田历史硝酸盐负荷对地下水硝酸盐演变的影响浓度。为英格兰和威尔士的重要含水层的饱和带构造了一个基于过程的附加组件。这使用简单的流量模型,该模型需要建模的补给值以及已发布的含水层特性和厚度数据。还介绍了空间分布和时变的硝酸盐输入函数。使用蒙特卡洛模拟分析参数的敏感性。使用国家硝酸盐监测数据对模型进行了校准。为28个选定的含水层区域绘制了1925年至2150年的年度平均硝酸盐浓度的时间序列以及年度空间分布的硝酸盐浓度图。结果表明,16个含水层带的硝酸盐浓度呈上升趋势,而其余12个含水层的平均硝酸盐浓度则呈下降趋势。该结果还表明了地下水硝酸盐通量通过基流进入河流的趋势。因此,该模型可以将地下水硝酸盐响应的幅度和时间尺度纳入来源分配工具中,并与当前为减少硝酸盐损失而进行的土地管理方案的规划一起考虑在内。

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  • 来源
    《The Science of the Total Environment》 |2016年第15期|694-705|共12页
  • 作者单位

    British Geological Survey, Keyworth, Nottingham NG12 5GG, UK;

    British Geological Survey, Maclean Building, Wallingford, Oxfordshire OX10 8BB, UK;

    British Geological Survey, Maclean Building, Wallingford, Oxfordshire OX10 8BB, UK;

    British Geological Survey, Keyworth, Nottingham NG12 5GG, UK;

    ADAS UK Ltd., Pendeford House, Pendeford Business Park, Wobaston Road, Wolverhampton WV9 5AP, UK;

    Centre for Ecology and Hydrology, Maclean Building, Wallingford, Oxfordshire OX10 8BB, UK;

    Sustainable Soils and Grassland Systems Department, Rothamsted Research, North Wyke, Okehampton EX20 2SB, UK;

    British Geological Survey, Maclean Building, Wallingford, Oxfordshire OX10 8BB, UK;

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

    Nitrate; Ground water quality; Unsaturated zone; Saturated zone; Time-lag;

    机译:硝酸盐地下水水质;不饱和区;饱和区;时滞;

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