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地下水污染风险评估的框架,综合了水化学、水文地质和电阻率层析成像方法。

A framework for risk assessment of groundwater contamination integrating hydrochemical, hydrogeological, and electrical resistivity tomography method.

机构信息

School of Civil Engineering, Shandong University, Jinan, 250061, China.

Kunming Engineering Corporation Limited, Kunming, 650051, China.

出版信息

Environ Sci Pollut Res Int. 2024 Apr;31(19):28105-28123. doi: 10.1007/s11356-024-33030-5. Epub 2024 Mar 26.

Abstract

Groundwater contamination have been widely concerned. To reliably conduct risk assessment, it is essential to accurately delineate the contaminant distribution and hydrogeological condition. Electrical resistivity tomography (ERT) has become a powerful tool because of its high sensitivity to hydrochemical parameters, as well as its advantages of non-invasiveness, spatial continuity, and cost-effectiveness. However, it is still difficult to integrate hydrochemical, hydrogeological, and ERT datasets for risk assessment. In this study, we develop a general framework for risk assessment by sequentially jointing hydrochemical, hydrogeological, and ERT surveys, while establishing petrophysical relationships among these data. This framework can be used in groundwater-contaminated site and help to delineate the distribution of contaminants. In this study, it was applied to a nitrogen-contaminated site where field ERT survey and borehole information provided valuable measurement data for validating the consistency of contamination and hydrogeological condition. Risk assessment was conducted based on the refined results by the establishment of relationship between conductivity and contaminants concentration with . The contamination source was identified and the transport direction was predicted with the good agreement of = 0.965 between simulated and observed groundwater head, which can help to propose measures for anti-seepage and monitoring. This study thus enhances the reliability of risk assessment and prediction through a thought-provoking innovation in the realm of groundwater environmental assessment.

摘要

地下水污染受到广泛关注。为了可靠地进行风险评估,准确划定污染物分布和水文地质条件至关重要。电阻率层析成像(ERT)因其对水化学参数具有高灵敏度,以及非侵入性、空间连续性和成本效益等优点,已成为一种强大的工具。然而,将水化学、水文地质和 ERT 数据集集成用于风险评估仍然具有挑战性。在本研究中,我们通过顺序联合水化学、水文地质和 ERT 调查,同时建立这些数据之间的岩石物理关系,开发了一个用于风险评估的通用框架。该框架可用于受污染的地下水场地,并有助于划定污染物的分布。在本研究中,它应用于一个氮污染场地,现场 ERT 调查和钻孔信息为验证污染和水文地质条件的一致性提供了有价值的测量数据。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。通过建立电导率与污染物浓度之间的关系,并利用 对其进行了细化,从而进行了风险评估。识别出了污染源,并预测了污染物的运移方向,模拟和观测地下水位之间的一致性良好,相关系数为 = 0.965,这有助于提出防渗和监测措施。因此,本研究通过在地下水环境评估领域的一项有启发性的创新,提高了风险评估和预测的可靠性。

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