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Performance of granular dead anaerobic sludge as permeable reactive barrier for containment of lead from contaminated groundwater

机译:颗粒状厌氧污泥作为可渗透性反应性屏障对污染地下水中铅的抑制作用

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This study investigates the performance of granular dead anaerobic sludge (GDAS) bio-sorbent as permeable reactive barrier (PRB) in removing lead from a contaminated shallow groundwater. Batch tests have been performed to characterize the equilibrium sorption properties of the GDAS and sandy soil in lead-containing aqueous solutions. A 1D advection-dispersion equation, solved by computer solutions Multiphysics 3.5a software which is based on finite element method, has been used to simulate the equilibrium transport of Pb+2 ions within groundwater. This equation has taken into account the pollutant sorption onto the GDAS and sandy soil which is performed by Langmuir equation. Numerical results proved that the PRB plays a potential role in the restriction of the contaminant plume migration. These results also show that the thicker PRB is better than the thinner ones in lead treatment and the barrier starts to saturate with contaminant as a function of the travel time. A good agreement between the predicted and experimental results was recognized with root mean square error not exceeded the 0.0499.
机译:这项研究调查了颗粒死者厌氧污泥(GDAS)生物吸附剂作为可渗透反应性屏障(PRB)从受污染的浅层地下水中去除铅的性能。已经进行了批量测试以表征GDAS和含铅水溶液中沙质土壤的平衡吸附特性。通过计算机解决方案Multiphysics 3.5a软件(基于有限元方法)求解了一维对流扩散方程,该软件用于模拟地下水中Pb + 2离子的平衡迁移。该方程考虑了通过Langmuir方程进行的污染物吸附到GDAS和沙质土壤上的过程。数值结果证明,PRB在限制污染物羽流迁移中起着潜在的作用。这些结果还表明,在铅处理中,较厚的PRB优于较薄的PRB,并且随着行程时间的增加,势垒开始被污染物浸透。公认的预测结果与实验结果之间的良好一致性是均方根误差不超过0.0499。

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