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Titlebook: Emerging Issues in Groundwater Resources; Ali Fares Book 2016 The Editor(s) (if applicable) and The Author(s), under exclusive license to

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https://doi.org/10.1007/978-981-15-1664-1in the changes, and any impacts will be the result of the interaction between climate change drivers (i.e., CO. concentrations, SST, SLR, storm intensity, frequency, and track, wave conditions and runoff) and other drivers of change, leading to diverse effects and vulnerabilities. The direct influen
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https://doi.org/10.1007/978-1-4614-0037-0cation. Carbamazepine (anticonvulsant), sulfamethoxazole (antibiotic), and caffeine (life-style) represent the three most common compounds detected in groundwater. The occurrence of the detected compounds in groundwater is primarily related to wastewater and/or agricultural practices/wastes. None of
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Nanostructures and Nanobacteria,t uptake in coastal waters and also demonstrated that nutrients were quickly removed from the bay due to fast coastal flushing rates. This study demonstrates the need to understand SGD-derived nutrient fluxes in order to evaluate land-based coastal nutrient and pollution sources.
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Nataliya Kutsevol,Antonina Naumenkorologic conditions during the study. When rainfall was not occurring, evapotranspiration served as the primary driver of overall hydrologic characteristics, directly influencing the water table and subsequent groundwater discharged from the reservoir. However, during storm events, hydrologic factors
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https://doi.org/10.1007/978-3-319-91083-3 were found to be arsenic contaminated. The deeper aquifers (>50 m) exhibited arsenic levels within permissible limits. Elevated arsenic levels are observed close to the River Ganges. However, a moderate (r = 0.240, p = 0.031) positive correlation with the surface water flow direction indicates that
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