A chloride threshold to identify the onset of seawater/saltwater intrusion and a novel categorization of groundwater in coastal aquifers

IF 6.3 1区 地球科学 Q1 ENGINEERING, CIVIL Journal of Hydrology Pub Date : 2025-06-01 Epub Date: 2025-02-03 DOI:10.1016/j.jhydrol.2025.132775
M.D. Fidelibus , G. Balacco , M.R. Alfio , M. Arfaoui , D. Bassukas , C. Güler , F. Hamzaoui-Azaza , C. Külls , A. Panagopoulos , A. Parisi , E. Sachsamanoglou , E. Tziritis
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Abstract

Seawater intrusion is the primary cause of groundwater salinisation in coastal aquifers. However, attributing salinisation solely to seawater intrusion may not always be accurate, given the likely presence of other sources. To understand if salinisation comes from seawater intrusion and its onset is crucial for groundwater management, but there are no definite threshold values for common indicators such as chlorides. Based on 1662 groundwater analyses from five Mediterranean coastal aquifers, the study aimed to distinguish the effects of mixing with present-day seawater from those caused by other sources. The trend analysis of cumulative probability plots of chloride (and total dissolved solids) is a key method for discriminating different groundwater salinisation sources and processes. Results establish that chloride, as a non-reactive tracer, is a more reliable indicator of seawater intrusion than total dissolved solids, a reactive indicator.
A chloride concentration threshold of 200 mg/L identifies the seawater intrusion onset. The threshold validation comes from groundwater salinisation facies, as provided by groundwater-type codification.
Fresh groundwater (Cl < 200 mg/L) anomalous total dissolved solids highlight the input of non-chloride salts and pollutants, providing caution regarding using total dissolved solids to recognise seawater intrusion. Beyond the threshold (Cl > 200 mg/L), data disclose emergent signals of salinisation sources and water–rock interaction processes overlapping seawater intrusion or the involvement of saline fluids different from present-day seawater. The threshold and a new categorisation of groundwater in coastal aquifers according to salinisation processes provide a benchmark for identifying and managing seawater intrusion in the Mediterranean area.
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确定海水/盐水入侵开始的氯离子阈值和沿海含水层地下水的新分类
海水入侵是沿海含水层地下水盐碱化的主要原因。然而,考虑到可能存在其他来源,将盐碱化仅仅归因于海水入侵可能并不总是准确的。了解盐碱化是否来自海水入侵及其开始对地下水管理至关重要,但是对于氯化物等常见指标没有明确的阈值。这项研究基于对地中海沿岸5个蓄水层的1662份地下水分析,旨在区分与现代海水混合的影响与其他来源造成的影响。氯化物(和总溶解固体)累积概率图的趋势分析是区分不同地下水盐渍化来源和过程的关键方法。结果表明,氯化物作为一种非反应性示踪剂,比总溶解固体作为一种反应性示踪剂更可靠。氯离子浓度阈值为200 mg/L时,即为海水入侵开始。阈值验证来自地下水盐渍化相,由地下水类型编码提供。新鲜地下水(Cl <;200 mg/L)异常的总溶解固体突出了非氯化物盐和污染物的输入,在使用总溶解固体识别海水入侵时需要谨慎。超出阈值(Cl >;200 mg/L),数据揭示了盐渍化来源和水岩相互作用过程的紧急信号,这些信号重叠了海水入侵或参与不同于当今海水的含盐流体。根据盐碱化过程对沿海含水层地下水的阈值和新分类为识别和管理地中海地区的海水入侵提供了基准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Hydrology
Journal of Hydrology 地学-地球科学综合
CiteScore
11.00
自引率
12.50%
发文量
1309
审稿时长
7.5 months
期刊介绍: The Journal of Hydrology publishes original research papers and comprehensive reviews in all the subfields of the hydrological sciences including water based management and policy issues that impact on economics and society. These comprise, but are not limited to the physical, chemical, biogeochemical, stochastic and systems aspects of surface and groundwater hydrology, hydrometeorology and hydrogeology. Relevant topics incorporating the insights and methodologies of disciplines such as climatology, water resource systems, hydraulics, agrohydrology, geomorphology, soil science, instrumentation and remote sensing, civil and environmental engineering are included. Social science perspectives on hydrological problems such as resource and ecological economics, environmental sociology, psychology and behavioural science, management and policy analysis are also invited. Multi-and interdisciplinary analyses of hydrological problems are within scope. The science published in the Journal of Hydrology is relevant to catchment scales rather than exclusively to a local scale or site.
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