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Influence of Aquifer Thermal Energy Storage on groundwater quality: A review illustrated by seven case studies from Belgium

机译:含水层热能存储对地下水质量的影响:比利时七个案例研究的回顾

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摘要

tStudy region: The area of study is the northern part of Belgium (Flanders).The seven evaluated Aquifer Thermal Energy Storage (ATES) systems are pos-itioned in key aquifers, which contain major groundwater resources for theregion.Study focus: The increasing number of ATES systems leads to concerns bydrinking water companies and environmental regulators about the long termimpacts of ATES systems on the groundwater quality. This study assesses theinfluence of ATES on groundwater chemistry by means of a literature review,and a comparison of groundwater quality monitoring data at seven ATES sys-tems with ambient groundwater quality values from 69 monitoring wells.New hydrological insights for the region: The results of the analysis of thehydrochemical data confirm that the small temperature differences (T ≤ 10)at which the ATES systems are operating do not influence the concentrations ofthe main chemical constituents. Mixing of shallow with deeper groundwaterduring ATES operation, on the other hand, can alter groundwater quality. Theresults of this study, however, suggest that the groundwater quality changesare rather small, so that there is no immediate risk for the drinking watersupply. However, the installation of ATES systems in the vicinity of publicdrinking water supply well fields should be handled with care, especially inphreatic aquifers.
机译:研究区域:研究区域位于比利时北部(法兰德斯)。七个评估的含水层热能储存(ATES)系统位于关键含水层中,这些含水层包含该区域的主要地下水资源。研究重点:数量不断增加饮水公司和环境法规人员对ATES系统的关注导致对ATES系统对地下水质量的长期影响的担忧。这项研究通过文献综述和7个ATES系统的地下水水质监测数据与69口监测井的周围地下水水质值的比较,评估了ATES对地下水化学的影响。该地区的新水文见解:对水化学数据的分析证实,ATES系统运行时的小温差(T≤10)不会影响主要化学成分的浓度。另一方面,在ATES操作期间,浅层地下水与深层地下水的混合会改变地下水质量。然而,这项研究的结果表明,地下水水质变化很小,因此没有立即的饮用水供应风险。但是,应小心处理在公共饮用水供水井场附近安装ATES系统的情况,尤其是地下蓄水层。

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