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Dynamics of greenhouse gases in the river–groundwater interface in a gaining river stretch (Triffoy catchment, Belgium) | Dynamique des gaz à effet de serre à l’interface rivière–eau souterraine dans un tronçon drainant de la rivière (bassin versant du Triffoy, Belgique) Dinámica de los gases de efecto invernadero en la interfaz río–agua subterránea en un tramo de río ganador (Cuenca Triffoy, Bélgica) (比利时Triffoy流域)一个袭夺河段中河水–地下水界面温室气体动力学 Dinâmica de gases de efeito estufa na interface rio - água subterrânea em um trecho de ganho fluvial (bacia de Triffoy, Bélgica) Texto completo
2018
Jurado, Anna | Borges, Alberto V. | Pujades, Estanislao | Briers, Pierre | Nikolenko, Olha | Dassargues, Alain | Brouyère, Serge
This study investigates the occurrence of greenhouse gases (GHGs) and the role of groundwater as an indirect pathway of GHG emissions into surface waters in a gaining stretch of the Triffoy River agricultural catchment (Belgium). To this end, nitrous oxide (N₂O), methane (CH₄) and carbon dioxide (CO₂) concentrations, the stable isotopes of nitrate, and major ions were monitored in river and groundwater over 8 months. Results indicated that groundwater was strongly oversaturated in N₂O and CO₂ with respect to atmospheric equilibrium (50.1 vs. 0.55 μg L⁻¹ for N₂O and 14,569 vs. 400 ppm for CO₂), but only marginally for CH₄ (0.45 vs. 0.056 μg L⁻¹), suggesting that groundwater can be a source of these GHGs to the atmosphere. Nitrification seemed to be the main process for the accumulation of N₂O in groundwater. Oxic conditions prevailing in the aquifer were not prone for the accumulation of CH₄. In fact, the emissions of CH₄ from the river were one to two orders of magnitude higher than the inputs from groundwater, meaning that CH₄ emissions from the river were due to CH₄ in-situ production in riverbed or riparian zone sediments. For CO₂ and N₂O, average emissions from groundwater were 1.5 × 10⁵ kg CO₂ ha⁻¹ year⁻¹ and 207 kg N₂O ha⁻¹ year⁻¹, respectively. Groundwater is probably an important source of N₂O and CO₂ in gaining streams but when the measures are scaled at catchment scale, these fluxes are probably relatively modest. Nevertheless, their quantification would better constrain nitrogen and carbon budgets in natural systems.
Mostrar más [+] Menos [-]Fraction of young water as an indicator of aquifer vulnerability along two regional flow paths in the Mississippi embayment aquifer system, southeastern USA | Fraction d’eau jeune comme indicateur de la vulnérabilité de l’aquifère le long de deux voies d’écoulement régional dans le système aquifère du bassin du Mississippi, dans le Sud-Est des Etats-Unis d’Amérique Fracción de agua joven como un indicador de la vulnerabilidad del acuífero a lo largo de dos trayectorias de flujo regional en el sistema de acuífero de la bahía de Mississippi, sureste de Estados Unidos 美国东南部密西西比河河湾含水层系统部分年轻水作为沿两个区域水流通道含水层脆弱性的指标 Fração de água jovem como um indicador da vulnerabilidade de aquíferos ao longo de dois padrões de fluxo regionais no sistema aquífero do embasamento do Mississippi, sudeste dos EUA Texto completo
2017
Kingsbury, James A. | Barlow, Jeannie R. B. | Jurgens, Bryant C. | McMahon, Peter B. | Carmichael, J. K.
Wells along two regional flow paths were sampled to characterize changes in water quality and the vulnerability to contamination of the Memphis aquifer across a range of hydrologic and land-use conditions in the southeastern United States. The flow paths begin in the aquifer outcrop area and end at public supply wells in the confined parts of the aquifer at Memphis, Tennessee. Age-date tracer (e.g. SF₆, ³H, ¹⁴C) data indicate that a component of young water is present in the aquifer at most locations along both flow paths, which is consistent with previous studies at Memphis that documented leakage of shallow water into the Memphis aquifer locally where the overlying confining unit is thin or absent. Mixtures of young and old water were most prevalent where long-term pumping for public supply has lowered groundwater levels and induced downward movement of young water. The occurrence of nitrate, chloride and synthetic organic compounds was correlated to the fraction of young water along the flow paths. Oxic conditions persisted for 10 km or more down dip of the confining unit, and the presence of young water in confined parts of the aquifer suggest that contaminants such as nitrate-N have the potential for transport. Long-term monitoring data for one of the flow-path wells screened in the confined part of the aquifer suggest that the vulnerability of the aquifer as indicated by the fraction of young water is increasing over time.
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