خيارات البحث
النتائج 1101 - 1110 من 1,117
Geochemical insights into groundwater movement in alpine karst, Bear River Range, Utah, USA | Informations géochimiques sur la circulation des eaux souterraines dans le karst alpin de la chaîne de Bear River, Utah, États-Unis d’Amérique Conocimiento geoquímico del movimiento de las aguas subterráneas en el karst alpino de la Bear River Range, Utah, EEUU USA美国Utah州Bear河山脉高山喀斯特地区地下水运动的地球化学认识 Percepções geoquímicas sobre o movimento da água subterrânea no carste alpino da cordilheira do Rio Bear, em Utah, EUA النص الكامل
2021
Lachmar, Thomas | Sorsby, Skyler | Newell, Dennis
Alpine karst aquifers control the availability and longevity of some water resources, but are not well understood. A conceptual model of the alpine karst aquifer system in the Bear River Range of northern Utah (USA) has been developed by geochemical analysis (major ions, δ¹⁸O, δ²H and δ¹³C values) of seasonal water samples from seven perennial springs, and residence-time assessment (³H and CFCs) of two low- and two high-discharge springs. All spring data can be explained by reaction paths dominated by the dissolution of calcian dolomite. The δ¹³C values align well with reaction paths for open-system dissolution. Saturation indices and low Ca:Mg molar ratios indicate that incongruent dissolution exerts a strong control on water–rock interactions, complicating interpretation of natural solute tracers. Values of δ¹⁸O and δ²H in springs follow the Utah meteoric water line. Snow δ¹⁸O values correlate with elevation, but not with increasing rainout distance, providing qualitative estimates of recharge elevation that generally align with previous dye-traces to five of the seven springs. Concentrations of ³H and CFCs likely are best described by binary mixing of subannual recharge with 60–65-year-old groundwater, suggesting that the alpine karst aquifer system in the Bear River Range is best represented by a double-porosity model. Subannual recharge documented by dye traces implies that caverns are the primary flowpaths to the springs, but the presence of decadal-age water may indicate that lower permeability flowpaths dominate during baseflow. No evidence was found for a longer-residing flow component, suggesting high sensitivity to future climate variability.
اظهر المزيد [+] اقل [-]Fate of nitrate during groundwater recharge in a fractured karst aquifer in Southwest Germany | Devenir des nitrates lors de la recharge en eau souterraine d’un aquifère karstique fracturé dans le Sud-Ouest de l’Allemagne Destino del nitrato cuando se recarga el agua subterránea en un acuífero kárstico fracturado en el suroeste de Alemania 德国西南部裂隙岩溶含水层地下水补给过程中的硝酸盐归宿 Destino do nitrato durante recarga de águas subterrâneas em um aquífero cárstico fissural no sudoeste da Alemanha النص الكامل
2021
Visser, Anna-Neva | Lehmann, Moritz F. | Rügner, Hermann | D’Affonseca, Fernando Mazo | Grathwohl, Peter | Blackwell, Nia | Kappler, Andreas | Osenbrück, Karsten
Fate of nitrate during groundwater recharge in a fractured karst aquifer in Southwest Germany | Devenir des nitrates lors de la recharge en eau souterraine d’un aquifère karstique fracturé dans le Sud-Ouest de l’Allemagne Destino del nitrato cuando se recarga el agua subterránea en un acuífero kárstico fracturado en el suroeste de Alemania 德国西南部裂隙岩溶含水层地下水补给过程中的硝酸盐归宿 Destino do nitrato durante recarga de águas subterrâneas em um aquífero cárstico fissural no sudoeste da Alemanha النص الكامل
2021
Visser, Anna-Neva | Lehmann, Moritz F. | Rügner, Hermann | D’Affonseca, Fernando Mazo | Grathwohl, Peter | Blackwell, Nia | Kappler, Andreas | Osenbrück, Karsten
Over the past decades, fractured and karst groundwater systems have been studied intensively due to their high vulnerability to nitrate (NO₃⁻) contamination, yet nitrogen (N) turnover processes within the recharge area are still poorly understood. This study investigated the role of the karstified recharge area in NO₃⁻ transfer and turnover by combining isotopic analysis of NO₃⁻ and nitrite (NO₂⁻) with time series data of hydraulic heads and specific electrical conductivity from groundwater monitoring wells and a karstic spring in Germany. A large spatial variability of groundwater NO₃⁻ concentrations (0.1–0.8 mM) was observed, which cannot be explained solely by agricultural land use. Natural-abundance N and O isotope measurements of NO₃⁻ (δ¹⁵N and δ¹⁸O) confirm that NO₃⁻ derives mainly from manure or fertilizer applications. Fractional N elimination by denitrification is indicated by relatively high δ¹⁵N- and δ¹⁸O-NO₃⁻ values, elevated NO₂⁻ concentrations (0.05–0.14 mM), and δ¹⁵N-NO₂⁻ values that were systematically lower than the corresponding values of δ¹⁵N-NO₃⁻. Hydraulic and chemical response patterns of groundwater wells suggest that rain events result in the displacement of water from transient storage compartments such as the epikarst or the fissure network of the phreatic zone. Although O₂ levels of the investigated groundwaters were close to saturation, local denitrification might be promoted in microoxic or anoxic niches formed in the ferrous iron-bearing carbonate rock formations. The results revealed that (temporarily) saturated fissure networks in the phreatic zone and the epikarst may play an important role in N turnover during the recharge of fractured aquifers.
اظهر المزيد [+] اقل [-]Fate of nitrate during groundwater recharge in a fractured karst aquifer in Southwest Germany النص الكامل
2021
Visser, Anna-Neva | Lehmann, Moritz F. | Rügner, Hermann | D’Affonseca, Fernando Mazo | Grathwohl, Peter | Blackwell, Nia | Kappler, Andreas | Osenbrück, Karsten | Visser, Anna-Neva; Centre for Applied Geoscience, Tübingen University, Tübingen, Germany | Lehmann, Moritz F.; Basel University, Biogeochemistry, Basel, Switzerland | Rügner, Hermann; Centre for Applied Geoscience, Tübingen University, Tübingen, Germany | D’Affonseca, Fernando Mazo; Centre for Applied Geoscience, Tübingen University, Tübingen, Germany | Grathwohl, Peter; Centre for Applied Geoscience, Tübingen University, Tübingen, Germany | Blackwell, Nia; Centre for Applied Geoscience, Tübingen University, Tübingen, Germany | Kappler, Andreas; Centre for Applied Geoscience, Tübingen University, Tübingen, Germany | Osenbrück, Karsten; Centre for Applied Geoscience, Tübingen University, Tübingen, Germany
Over the past decades, fractured and karst groundwater systems have been studied intensively due to their high vulnerability to nitrate (NO<sub>3</sub><sup>−</sup>) contamination, yet nitrogen (N) turnover processes within the recharge area are still poorly understood. This study investigated the role of the karstified recharge area in NO<sub>3</sub><sup>−</sup> transfer and turnover by combining isotopic analysis of NO<sub>3</sub><sup>−</sup> and nitrite (NO<sub>2</sub><sup>−</sup>) with time series data of hydraulic heads and specific electrical conductivity from groundwater monitoring wells and a karstic spring in Germany. A large spatial variability of groundwater NO<sub>3</sub><sup>−</sup> concentrations (0.1–0.8 mM) was observed, which cannot be explained solely by agricultural land use. Natural-abundance N and O isotope measurements of NO<sub>3</sub><sup>−</sup> (δ<sup>15</sup>N and δ<sup>18</sup>O) confirm that NO<sub>3</sub><sup>−</sup> derives mainly from manure or fertilizer applications. Fractional N elimination by denitrification is indicated by relatively high δ<sup>15</sup>N- and δ<sup>18</sup>O-NO<sub>3</sub><sup>−</sup> values, elevated NO<sub>2</sub><sup>−</sup> concentrations (0.05–0.14 mM), and δ<sup>15</sup>N-NO<sub>2</sub><sup>−</sup> values that were systematically lower than the corresponding values of δ<sup>15</sup>N-NO<sub>3</sub><sup>−</sup>. Hydraulic and chemical response patterns of groundwater wells suggest that rain events result in the displacement of water from transient storage compartments such as the epikarst or the fissure network of the phreatic zone. Although O<sub>2</sub> levels of the investigated groundwaters were close to saturation, local denitrification might be promoted in microoxic or anoxic niches formed in the ferrous iron-bearing carbonate rock formations. The results revealed that (temporarily) saturated fissure networks in the phreatic zone and the epikarst may play an important role in N turnover during the recharge of fractured aquifers. | Projekt DEAL
اظهر المزيد [+] اقل [-]Hydraulic tomography analysis of municipal-well operation data with geology-based groundwater models | Analyse par tomographie hydraulique des données d’exploitation d’un puits municipal à l’aide de modèles d’eaux souterraines fondés sur la géologie Análisis por tomografía hidráulica de datos de explotación de pozos municipales con modelos de aguas subterráneas en función de la geología 采用基于地质的地下水模型的市政井运行数据的水力层析分析 Análise de tomografia hidráulica de dados de operação de poços municipais com modelos de água subterrânea baseados em geologia النص الكامل
2021
Tong, Xin | Illman, Walter A. | Berg, Steven J. | Luo, Ning
The sustainable management of groundwater resources is essential to municipalities worldwide due to increasing water demand. Planning for the optimized use of groundwater resources requires reliable estimation of hydraulic parameters such as hydraulic conductivity (K) and specific storage (Sₛ). However, estimation of hydraulic parameters can be difficult with dedicated pumping tests while municipal wells are in operation. In this study, the K and Sₛ of a highly heterogeneous, multi-aquifer/aquitard system are estimated through the inverse modeling of water-level data from observation wells collected during municipal well operations. In particular, four different geological models are calibrated by coupling HydroGeoSphere (HGS) with the parameter estimation code PEST. The joint analysis of water-level records resulting from fluctuating pumping and injection operations amounts to a hydraulic tomography (HT) analysis. The four geological models are well calibrated and yield reliable estimates that are consistent with previously studies. Overall, this research reveals that: (1) the HT analysis of municipal well records is feasible and yields reliable K and Sₛ estimates for individual geological units where drawdown records are available; (2) these estimates are obtained at the scale of intended use, unlike small-scale estimates typically obtained through other characterization methods; (3) the HT analysis can be conducted using existing data, which leads to substantial cost savings; and (4) data collected during municipal well operations can be used in the development of new groundwater models or in the calibration of existing groundwater models, thus they are valuable and should be archived.
اظهر المزيد [+] اقل [-]Managing groundwater supplies subject to drought: perspectives on current status and future priorities from England (UK) | Gestion des approvisionnements en eau souterraine en condition de sécheresse: perspectives sur l’état actuel et les priorités futures en Angleterre (Royaume-Uni) La gestión de los recursos hídricos subterráneos sometidos a sequías: perspectivas de la situación actual y prioridades futuras de Inglaterra (Reino Unido) 管理受干旱影响的地下水供应:对英国当前现状和未来优先点的看法 Gerenciando o abastecimento de água subterrânea sujeito à seca: perspectivas sobre a situação atual e prioridades futuras da Inglaterra (Reino Unido) النص الكامل
2021
Ascott, M. J. | Bloomfield, J. P. | Karapanos, I. | Jackson, C. R. | Ward, Robert S. | McBride, A. B. | Dobson, B. | Kieboom, N. | Holman, I. P. | Van Loon, A. F. | Crane, E. J. | Brauns, B. | Rodriguez-Yebra, A. | Upton, K. A.
Effective management of groundwater resources during drought is essential. How is groundwater currently managed during droughts, and in the face of environmental change, what should be the future priorities? Four themes are explored, from the perspective of groundwater management in England (UK): (1) integration of drought definitions; (2) enhanced fundamental monitoring; (3) integrated modelling of groundwater in the water cycle; and (4) better information sharing. Whilst these themes are considered in the context of England, globally, they are relevant wherever groundwater is affected by drought.
اظهر المزيد [+] اقل [-]Source of saline groundwater on tidally influenced blue holes on San Salvador Island, Bahamas | Origine de l’eau souterraine salée dans les trous bleus influencés par les marées sur l’île de San Salvador aux Bahamas Origen de las aguas subterráneas salinas con influencia de las mareas en los pozos de agua dulce de la isla de San Salvador (Bahamas) 受潮汐影响的Bahamas的San Salvador岛蓝洞上的地下咸水来源 Origem de águas subterrâneas salinas em orifícios azuis influenciados pela maré na ilha de San Salvador, Bahamas Sursa apei saline din găurile albastre afectate de maree de pe Insula San Salvador, Bahamas النص الكامل
2021
Smith, Megan E. | Wynn, Jonathan G. | Scharping, Robert J. | Moore, Evan W. | Garey, James R. | Onac, Bogdan P.
Stable hydrogen and oxygen isotope signatures of waters within Church and Inkwell blue holes are measured on San Salvador Island (Bahamas) to identify the origin of their fresh and saline waters. Stable isotope data, paired with a suite of physicochemical water parameters measured throughout the blue holes, as a function of both time and depth, provide a detailed understanding of the tidally influenced groundwater interactions on the island. Blue holes are prominent karst features in carbonate environments which serve as windows into subterranean hydrologic processes. Carbonate island hydrology is often complicated by complex interactions between the marine and meteoric water systems, as tidal pumping and water mixing result in diagenetic alteration of the bedrock, that in turn influence dissolution rates and preferential flow paths. Although the blue holes on the island are physically influenced by tidal forcing, the stable isotope data indicate that both their fresh and saline waters are of a meteoric origin rather than seawater, where the meteoric water is likely becoming saline through enrichment by aerosol-derived sea salts. Additionally, the physical profiles of each blue hole indicate differences in mixing processes driven by wind and tidal forcing, where stronger mixing can result in a disruption of the freshwater lens. The implications of this study are important for assessing mixing corrosion processes and dissolution effects, but more research and longer data sets are needed to show whether these results are applicable to other coastal carbonate environments.
اظهر المزيد [+] اقل [-]Predicting the impact of management and climate scenarios on groundwater nitrate concentration trends in southern Portugal | Prévision de l’impact de scénarios de gestion et climatiques sur les tendances d’évolution des concentrations en nitrate dans les eaux souterraines dans le sud du Portugal Predicción del impacto de la gestión y los escenarios climáticos en las tendencias de concentración de nitratos en las aguas subterráneas del sur de Portugal 预测葡萄牙南部管理和气候条件对地下水硝酸盐浓度变化趋势的影响 Previsão de impactos de gestão e de cenários climáticos nas tendências de concentração de nitratos na água subterrânea no sul de Portugal النص الكامل
2021
Costa, Luís R. D. | Hugman, Rui T. | Stigter, Tibor Y. | Monteiro, José Paulo
The dynamics related to evolution of nitrate-contaminated groundwater are analyzed with focus on the impact of intrinsic aquifer properties, agricultural activities and restoration measures at Campina de Faro aquifer (M12), southern Portugal. Agricultural practices in the region developed in the 1970s and resulted in high abstraction rates, nitrate contamination and salinization. Despite the implementation of the European Union (EU) Nitrates Directive since 1997, nitrate levels still show increasing trends at some locations, constituting a threat to the chemical status of M12 and consequent nitrate discharge to Ria Formosa coastal lagoon. Simultaneously, groundwater levels are not dropping consistently, despite apparent overexploitation. A groundwater flow and mass transport model is developed for M12 to assess the evolution of nitrate under different scenarios. Model results reveal that M12 has a hydraulic connection with northernmost aquifers, a process not properly assessed so far. Results further show that nitrate contamination in the upper Plio-Quaternary layer of M12 is extremely persistent and mostly linked to unbalanced fertilizer application practices and irrigation return flows. The response of M12 to implementation of good agricultural practices in compliance with EU policies is slow, indicating that good qualitative status would be impossible to reach by the required EU deadlines. Integration of climate change scenarios into the transport model reveals that despite the implementation of restoration measures, there could be a retardation of the nitrate levels’ decrease in the upper aquifer as a result of enhanced evapoconcentration caused by lower recharge, higher water demands and incomplete mixing within the aquifer.
اظهر المزيد [+] اقل [-]Evolution of groundwater recharge as a result of forest development on the east coast of the province of Buenos Aires, Argentina | Evolution de la recharge des eaux souterraines suite au développement de la forêt sur la côte orientale de la province de Buenos Aires, Argentine Evolución de la recarga del agua subterránea como el resultado del desarrollo forestal en la costa oriental de la provincia de Buenos Aires, Argentina 阿根廷Buenos Aires省东海岸森林发展导致的地下水补给量变化 Evolução da recarga de águas subterrâneas como resultado do desenvolvimento florestal na costa leste da província de Buenos Aires, Argentina النص الكامل
2021
Carretero, Silvina | Rodrigues Capítulo, Leandro | Kruse, Eduardo
Changes in groundwater recharge associated with variations in land use were analysed with a focus on the role of afforestation on the east coast of Buenos Aires, Argentina. The growth of the population related to such changes was considered, linking water consumption to variations in recharge. A multi-temporal analysis was carried out using aerial photographs for the years 1957, 1975, 1981 and 2016, differentiating three types of cover: bare soil, forested soil and grassland. Water balances for each type of land use and groundwater recharge were estimated. In the forested soil, a reduction in recharge over time can be observed and it can be appreciated that forest expansion occurs at the expense of the sand-dune area, which offers the greatest possibilities for infiltration. At present, the water consumption, which depends solely on the groundwater reserves, is lower than the recharge, but this relationship is reversed during the tourist season. According to the estimated projections, the drinking water supply would be compromised in the coming decades, reaching a critical point or level of collapse as from 2070. This proves that it is essential for the policies and projects aiming at afforestation for different purposes to take into consideration the role of this change in land use when assessing the sustainability of the associated water resources.
اظهر المزيد [+] اقل [-]Quantitative analysis of Cenozoic faults and fractures and their impact on groundwater flow in the bedrock aquifers of Ireland | Analyse quantitative des failles et fractures cénozoïques et de leur impact sur l’écoulement des eaux souterraines dans les aquifères de roches dures d’Irlande Análisis cuantitativo de fallas y fracturas cenozoicas y su impacto en el flujo de aguas subterráneas en los acuíferos de basamento en Irlanda 爱尔兰基岩含水层新生代断层和裂缝的定量分析及其对地下水流动的影响 Análise quantitativa de falhas e fraturas Cenozóicas e seu impacto no fluxo de água subterrânea nos aquíferos rochosos da Irlanda النص الكامل
2021
Moore, J. P. | Walsh, J. J.
Faults and fractures are a critical store and pathway for groundwater in Ireland’s limestone bedrock aquifers either directly as conductive structures or indirectly as the locus for the development of karst conduits. From the quantitative analysis of post-Devonian faults and fractures in a range of lithological sequences, this report describes the principal characteristics of Cenozoic strike-slip faults and joints, the youngest and the most intrinsically conductive fractures within Irish bedrock. Analysis of these structures in more than 120 outcrop, quarry, mine and cave locations in a range of bedrock types, provides a basis for: (1) definition of quantitative models for their depth dependency, lithological control, scaling systematics and links to preexisting structure, (2) conceptualisation of their impact on groundwater behaviour, and (3) estimation of groundwater flow parameters. The quantitative models provide constraints on fracture-controlled flow connectivity. Commonly observed decreases in sustainable flows and water strike interceptions with depth are attributed to increasing confinement and decreasing fracture connectivity and dissolution. Faults and joints have quite different end member geometries, with faults having strongly heterogeneous scale-independent properties and joints more often showing scale-dependent stratabound properties. The highest and most sustainable groundwater flows are usually associated with the complexity of structure of Cenozoic faults and of preexisting Carboniferous structures (on which conductive fracturing localises), enhanced by karstification and strongly jointed limestone bedrock particularly in the near-surface. Increased groundwater flow is promoted within bedded, rather than massive (i.e. unbedded), limestone sequences, characterised by bedding-parallel fractures and karst connecting otherwise subvertical fractures and subvertical wells.
اظهر المزيد [+] اقل [-]Stratigraphic and structural controls on groundwater salinity variations in the Poso Creek Oil Field, Kern County, California, USA | Contrôles stratigraphiques et structuraux des variations de salinité des eaux souterraines dans le champ pétrolier de Poso Creek, comté de Kern, Californie, Etats-Unis d’Amériques Controles estratigráficos y estructurales de las variaciones de salinidad de las aguas subterráneas en el campo petrolífero de Poso Creek, Kern County, California, EEUU 美国加利福尼亚州Kern县 Poso Creek 油田地层和结构对地下水盐度变化的控制作用 Controles estruturais e estratigráficos na variação de salinidade da água subterrânea no Campo de Óleo de Poso Creek, Condado de Kern, Califórnia, EUA النص الكامل
2021
Groundwater total dissolved solids (TDS) distribution was mapped with a three-dimensional (3D) model, and it was found that TDS variability is largely controlled by stratigraphy and geologic structure. General TDS patterns in the San Joaquin Valley of California (USA) are attributed to predominantly connate water composition and large-scale recharge from the adjacent Sierra Nevada. However, in smaller areas, stratigraphy and faulting play an important role in controlling TDS. Here, the relationship of stratigraphy and structure to TDS concentration was examined at Poso Creek Oil Field, Kern County, California. The TDS model was constructed using produced water TDS samples and borehole geophysics. The model was used to predict TDS concentration at discrete locations in 3D space and used a Gaussian process to interpolate TDS over a volume. In the overlying aquifer, TDS is typically <1,000 mg/L and increases with depth to ~1,200–3,500 mg/L in the hydrocarbon zone below the Macoma claystone—a regionally extensive, fine-grained unit—and reaches ~7,000 mg/L in isolated places. The Macoma claystone creates a vertical TDS gradient in the west where it is thickest, but control decreases to the east where it pinches out and allows freshwater recharge. Previously mapped normal faults were found to exhibit inconsistent control on TDS. In one case, high-density faulting appears to prevent recharge from flushing higher-TDS connate water. Elsewhere, the high-throw segments of a normal fault exhibit variable behavior, in places blocking lower-TDS recharge and in other cases allowing flushing. Importantly, faults apparently have differential control on oil and groundwater.
اظهر المزيد [+] اقل [-]Groundwater vulnerability to pollution in karst aquifers, considering key challenges and considerations: application to the Ubrique springs in southern Spain | Vulnérabilité des eaux souterraines aux pollutions d’aquifères karstiques, en tenant compte des principaux défis et considérations: application aux sources d’Ubrique dans le sud de l’Espagne Retos y consideraciones en la vulnerabilidad a la contaminación del agua subterránea de acuíferos kársticos: aplicación en los manantiales de Ubrique, sur de España 喀斯特含水层的地下水易污性,主要挑战和因素: 在Spain南部Ubrique泉域的应用 Vulnerabilidade das águas subterrâneas à poluição em aquíferos cársticos, considerando os principais desafios e considerações: aplicação às nascentes de Ubrique no sul da Espanha النص الكامل
2021
Marín, Ana I. | Martín Rodríguez, José Francisco | Barberá, Juan Antonio | Fernández-Ortega, Jaime | Mudarra, Matías | Sanchez, Damián | Andreo, Bartolomé
Groundwater vulnerability to pollution in karst aquifers, considering key challenges and considerations: application to the Ubrique springs in southern Spain | Vulnérabilité des eaux souterraines aux pollutions d’aquifères karstiques, en tenant compte des principaux défis et considérations: application aux sources d’Ubrique dans le sud de l’Espagne Retos y consideraciones en la vulnerabilidad a la contaminación del agua subterránea de acuíferos kársticos: aplicación en los manantiales de Ubrique, sur de España 喀斯特含水层的地下水易污性,主要挑战和因素: 在Spain南部Ubrique泉域的应用 Vulnerabilidade das águas subterrâneas à poluição em aquíferos cársticos, considerando os principais desafios e considerações: aplicação às nascentes de Ubrique no sul da Espanha النص الكامل
2021
Marín, Ana I. | Martín Rodríguez, José Francisco | Barberá, Juan Antonio | Fernández-Ortega, Jaime | Mudarra, Matías | Sanchez, Damián | Andreo, Bartolomé
Groundwater vulnerability mapping is one of the tools most often applied to analyse the sensitivity of karst aquifers to pollution. These maps aim to support stakeholders in decision-making and to promote land-use management compatible with water protection; however, the validation of these maps is still a challenge in many cases, triggering high uncertainty. For karst media, due to the strong heterogeneity in recharge mechanisms and hydraulic characteristics, validation is a significant stage and it must be inherent within the groundwater vulnerability assessment process. This work aims to assess the implementation of tools used for protecting the quality of water discharging or extracted from the Ubrique karst system in southern Spain, which supplies drinking water that is threatened by periodical pollution/turbidity episodes. A groundwater vulnerability map, attained by application of the COP method and validated by multiple in-situ observations, shows an extremely vulnerable system due to the absence of protective overlayers and the significant development of exokarst landforms, including shallow holes. This map could constitute the basis for defining protection zones for the Ubrique springs; however, their comprehensive protection requires the implementation of monitoring tools and an effective management strategy, through an early warning system that assures stable environmental and hydrogeological conditions and improves operational procedures associated with the drinking water service. This research establishes the strong relationship of the different methods applied to protect the source from contamination events, ranging from classical hydrodynamic and hydrochemical approaches to the implementation of protection zones and early warning groundwater quality monitoring networks.
اظهر المزيد [+] اقل [-]Groundwater vulnerability to pollution in karst aquifers, considering key challenges and considerations: application to the Ubrique springs in southern Spain النص الكامل
2021
Marín Guerrero, Ana Isabel | Martín-Rodríguez, José Francisco | Barberá-Fornell, Juan Antonio | Fernández-Ortega, Jaime | Mudarra-Martínez, Matías | Sánchez García, Damián | Andreo-Navarro, Bartolomé
Groundwater vulnerability mapping is one of the tools most often applied to analyse the sensitivity of karst aquifers to pollution. These maps aim to support stakeholders in decision-making and to promote land-use management compatible with water protection; however, the validation of these maps is still a challenge in many cases, triggering high uncertainty. For karst media, due to the strong heterogeneity in recharge mechanisms and hydraulic characteristics, validation is a significant stage and it must be inherent within the groundwater vulnerability assessment process. This work aims to assess the implementation of tools used for protecting the quality of water discharging or extracted from the Ubrique karst system in southern Spain, which supplies drinking water that is threatened by periodical pollution/turbidity episodes. A groundwater vulnerability map, attained by application of the COP method and validated by multiple in-situ observations, shows an extremely vulnerable system due to the absence of protective overlayers and the significant development of exokarst landforms, including shallow holes. This map could constitute the basis for defining protection zones for the Ubrique springs; however, their comprehensive protection requires the implementation of monitoring tools and an effective management strategy, through an early warning system that assures stable environmental and hydrogeological conditions and improves operational procedures associated with the drinking water service. This research establishes the strong relationship of the different methods applied to protect the source from contamination events, ranging from classical hydrodynamic and hydrochemical approaches to the implementation of protection zones and early warning groundwater quality monitoring networks. | This work was developed under the Research Group RNM-308 of Junta de Andalucía and is a contribution to the European Project “Karst Aquifer Resources availability and quality in the Mediterranean Area (KARMA)” PRIMA, ANR-18-PRIM-0005. The associated project PCI2019-103675 was funded by the Spanish Research Agency through the scientific programme “Programación Conjunta Internacional”. Additionally, it contributes to the project PID2019-111759RB-I00 funded by the Autonomous Government of Andalusia (Spain), with support of the Environmental and Water Agency of Andalusia
اظهر المزيد [+] اقل [-]Groundwater vulnerability to pollution in karst aquifers, considering key challenges and considerations: application to the Ubrique springs in southern Spain. النص الكامل
2021 | 2024
Marín, Ana Isabel | Martín-Rodríguez, José Francisco | Barberá-Fornell, Juan Antonio | Fernández-Ortega, Jaime | Mudarra-Martínez, Matías | Sánchez, Damián | Andreo-Navarro, Bartolomé
Groundwater vulnerability mapping is one of the tools most often applied to analyse the sensitivity of karst aquifers to pollution. These maps aim to support stakeholders in decision-making and to promote land-use management compatible with water protection; however, the validation of these maps is still a challenge in many cases, triggering high uncertainty. For karst media, due to the strong heterogeneity in recharge mechanisms and hydraulic characteristics, validation is a significant stage and it must be inherent within the groundwater vulnerability assessment process. This work aims to assess the implementation of tools used for protecting the quality of water discharging or extracted from the Ubrique karst system in southern Spain, which supplies drinking water that is threatened by periodical pollution/turbidity episodes. A groundwater vulnerability map, attained by application of the COP method and validated by multiple in-situ observations, shows an extremely vulnerable system due to the absence of protective overlayers and the significant development of exokarst landforms, including shallow holes. This map could constitute the basis for defining protection zones for the Ubrique springs; however, their comprehensive protection requires the implementation of monitoring tools and an effective management strategy, through an early warning system that assures stable environmental and hydrogeological conditions and improves operational procedures associated with the drinking water service. This research establishes the strong relationship of the different methods applied to protect the source from contamination events, ranging from classical hydrodynamic and hydrochemical approaches to the implementation of protection zones and early warning groundwater quality monitoring networks.
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