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Fate and Transport of Naproxen in a Sandy Aquifer Material: Saturated Column Studies and Model Evaluation

机译:萘普生在含沙含水层材料中的命运和迁移:饱和柱研究和模型评估

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摘要

Naproxen-C14H14O3 is a nonsteroidal anti-inflammatory drug which has been found at detectable concentrations in wastewater, surface water, and groundwater. Naproxen is relatively hydrophilic and is in anionic form at pH between 6 and 8. In this study, column experiments were performed using an unconsolidated aquifer material from an area near Barcelona (Spain) to assess transport and reaction mechanisms of Naproxen in the aquifer matrix under different pore water fluxes. Results were evaluated using HYDRUS-1D, which was used to estimate transport parameters. Batch sorption isotherms for Naproxen conformed with the linear model with a sorption coefficient of 0.42 (cm3 g−1), suggesting a low sorption affinity. Naproxen breakthrough curves (BTCs) measured in soil columns under steady-state, saturated water flow conditions displayed similar behavior, with no apparent hysteresis in sorption or dependence of retardation (R, 3.85-4.24) on pore water velocities. Soil sorption did not show any significant decrease for increasing flow rates, as observed from Naproxen recovery in the effluent. Sorption parameters estimated by the model suggest that Naproxen has a low sorption affinity to aquifer matrix. Most sorption of Naproxen occurred on the instantaneous sorption sites, with the kinetic sorption sites representing only about 10 to 40% of total sorption.
机译:萘普生-C14H14O3是一种非甾体类抗炎药,已在废水,地表水和地下水中以可检测的浓度发现。萘普生相对亲水,在pH值为6至8时呈阴离子形式。在这项研究中,使用巴塞罗那附近(西班牙)附近的非固结含水层材料进行了柱实验,以评估萘普生在含水层基质中的迁移和反应机理。不同的孔隙水通量。使用HYDRUS-1D评估结果,该结果用于估计运输参数。萘普生的批量吸附等温线符合线性模型,吸附系数为0.42(cm3 g-1),表明吸附亲和力低。在稳态,饱和水流条件下在土壤柱中测得的萘普生突破曲线(BTC)显示出相似的行为,吸附作用上没有明显的滞后现象,也没有延迟(R,3.85-4.24)对孔隙水速度的依赖性。从废水中萘普生的回收率可以看出,土壤吸附量并未随流速的增加而显着降低。该模型估计的吸附参数表明萘普生对含水层基质的吸附亲和力低。萘普生的大部分吸附发生在瞬时吸附位点,动力学吸附位仅占总吸附量的约10%至40%。

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