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Effect of pH on the performance of olive pips reactive barrier through the migration of copper-contaminated groundwater

机译:pH对铜污染地下水迁移对橄榄核反应性屏障性能的影响

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摘要

Adsorption data are modeled using the popular Langmuir and Freundlich isotherm models. These isotherms are primarily useful for simulating data collected at a fixed pH value. This study attempted to develop an adsorption isotherm based on the Langmuir model, to simulate pH-dependent adsorption effects. It is derived based on the results of a batch of experiments conducted under appropriate conditions using olive pips as the reactive bio-sorbent on a copper-contaminated solution. This isotherm is used as a linear correlation between the maximum adsorption capacity and the initial pH values of the feed solution, while a nonlinear power correlation is used to represent the affinity coefficient-initial pH relationship. This isotherm is integrated with the advection-dispersion equation for simulating the effect of the initial pH on the contaminant transport scenarios. The integrated model, solved numerically by the implicit finite difference method, is proven, in which the initial pH has a potential effect on the retardation factor and longevity of the bed of olive pips. This bed can be used as a permeable reactive barrier in the remediation of contaminated groundwater. A good concurrence between the integrated model predictions and experimental results for breakthrough curves was recognized with the index of agreement (d), as proposed by Willmott, not less than 0.999.
机译:使用流行的Langmuir和Freundlich等温线模型对吸附数据进行建模。这些等温线主要用于模拟在固定pH值下收集的数据。这项研究试图开发基于Langmuir模型的吸附等温线,以模拟pH依赖的吸附效果。它是基于在适当条件下使用橄榄核作为铜污染溶液上的反应性生物吸附剂进行的一系列实验结果得出的。该等温线用作最大吸附容量与进料溶液初始pH值之间的线性关系,而非线性功率相关关系则用于表示亲和系数与初始pH的关系。该等温线与对流扩散方程式集成在一起,用于模拟初始pH对污染物传输场景的影响。证明了通过隐式有限差分法数值求解的集成模型,其中初始pH值对橄榄核的延迟因子和床的寿命具有潜在的影响。该床可用作污染地下水修复中的渗透性反应屏障。正如Willmott所建议的,一致性指数(d)认可了集成模型的预测结果与突破曲线的实验结果之间的良好一致性,但不小于0.999。

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