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Model-based quality management of groundwater resources - Catchment area Liedern, Germany

机译:基于模型的地下水资源质量管理-德国利登集水区

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Strategies of groundwater protection in agricultural dominated areas are mainly based on a general reduction of the input of nutrients like nitrate. However, preventive measures in different parts of the catchment may provide very different effects on raw water quality. Exemplified on the case study 'Liedern' (BEW GmbH Bocholt, Germany) it is shown that hydrogeochemical processes along the flow path and in the well strongly affect the results of agricultural measures in terms of modality and efficiency. Thus, a reduction of fertilization in the vicinity of the well gallery leads to a decrease of nitrate concentration in the raw water. Whereas agricultural measures in the eastern part of the catchment do not influence nitrate, but cause a reduction of the iron concentration and rate of incrustation in the wells after 18 years. In this study we present a management tool that enables assessment of future trends in raw water quality. The tool is based on a reactive transport model which considers land use dynamics as an instrument to influence groundwater/raw water quality. A thermodynamic equilibrium approach is applied for modelling hydrogeochemical processes between aqueous, solid and gaseous phases. Kinetically controlled reactions like the microbial degradation of organic carbon are expressed by multiplicative Michaelis-Menten equations.
机译:农业占主导地位地区的地下水保护策略主要基于普遍减少硝酸盐等养分的投入。但是,在集水区的不同部分采取预防措施可能会对原水水质产生非常不同的影响。以案例研究“ Liedern”(BEW GmbH Bocholt,德国)为例,表明沿流动路径和井中的水文地球化学过程在方式和效率方面对农业措施的结果产生了重大影响。因此,井道附近施肥的减少导致原水中硝酸盐浓度的降低。流域东部的农业措施不会影响硝酸盐,但会导致18年后井中铁的浓度和结垢率降低。在这项研究中,我们提出了一种管理工具,可以评估原水质量的未来趋势。该工具基于反应性运输模型,该模型将土地利用动态视为影响地下水/原水水质的工具。热力学平衡方法用于模拟水相,固相和气相之间的水文地球化学过程。动力学控制的反应,如有机碳的微生物降解,由可乘Michaelis-Menten方程表示。

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