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Modelling the long-term performance of zero-valent iron using a spatio-temporal approach for iron aging

机译:使用时空方法对铁的老化进行零价铁的长期性能建模

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Zero-valent iron (ZVI) permeable reactive barriers (PRBs) have become popular for the degradation of chlorinated ethenes (CEs) in groundwater. However, a knowledge gap exists pertaining to the longevity of ZVI. The present investigation addresses this situation by suggesting a numerical simulation model that is intended to be used in conjunction with field or column tests in order to describe long-term ZVI performance at individual sites. As ZVI aging processes are not yet completely understood and are still subject to research, we propose a phenomenological modelling technique instead of a common process-based approach. We describe ZVI aging by parameters that characterise the extent and rate of ZVI reactivity change depending on the propagation of the precipitation front through ZVI. We approximate degradation of CEs by pseudo-first order kinetics accounting for the formation of partially dechlorinated products, and describe ZVI reactivity change by scaling the degradation rate constants. Three independent modelling studies were carried out to test the suitability of the conceptual and numerical model to describe the observations of accelerated column tests. All three tests indicated that ZVI reactivity declined with an increasing number of exchanged pore volumes. Measured and modelled concentrations showed good agreement, thereby proving that resolving spatial as well as temporal changes in ZVI reactivity is reasonable.
机译:零价铁(ZVI)渗透性反应性屏障(PRB)已广泛用于降解地下水中的氯化乙烯(CE)。但是,存在与ZVI寿命有关的知识鸿沟。本研究通过提出一种数值模拟模型来解决这种情况,该模型旨在与现场或圆柱试验结合使用,以描述各个站点的长期ZVI性能。由于ZVI老化过程尚未完全理解,并且仍需进行研究,因此,我们提出了一种现象学建模技术,而不是基于过程的通用方法。我们通过参数描述ZVI老化,这些参数表征ZVI反应性变化的程度和速率,取决于通过ZVI沉淀前沿的传播。我们通过伪一级化学反应来近似估计CE的降解,从而说明了部分脱氯产物的形成,并通过按比例缩放降解速率常数来描述ZVI反应性的变化。进行了三项独立的建模研究,以测试概念模型和数值模型是否适合描述加速柱测试的观察结果。所有三个测试均表明,随着交换孔体积的增加,ZVI反应性下降。测量和建模的浓度显示出良好的一致性,从而证明解决ZVI反应性的时空变化是合理的。

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