López-Vizcaíno Rubén, Navarro Vicente, Alonso Juan, Yustres Ángel, Cañizares Pablo, Rodrigo Manuel A, Sáez Cristina
a Department of Chemical Engineering , Facultad de Ciencias y Tecnologías Químicas, University of Castilla-La Mancha , Ciudad Real , Spain.
b Geoenvironmental Group, Civil Engineering School, University of Castilla-La Mancha , Ciudad Real , Spain.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2016;51(1):44-51. doi: 10.1080/10934529.2015.1079106. Epub 2015 Oct 21.
Electrokinetic processes provide the basis of a range of very interesting techniques for the remediation of polluted soils. These techniques consist of the application of a current field in the soil that develops different transport mechanisms capable of mobilizing several types of pollutants. However, the use of these techniques could generate nondesirable effects related to the geomechanical behavior of the soil, reducing the effectiveness of the processes. In the case of the remediation of polluted soils with plasticity index higher than 35, an excessive shrinkage can be observed in remediation test. For this reason, the continued evaporation that takes place in the sample top can lead to the development of cracks, distorting the electrokinetic transport regime, and consequently, the development of the operation. On the other hand, when analyzing silty soils, in the surroundings of injection surfactant wells, high seepages can be generated that give rise to the development of piping processes. In this article methods are described to allow a reduction, or to even eliminate, both problems.
电动过程为一系列用于修复污染土壤的非常有趣的技术提供了基础。这些技术包括在土壤中施加电流场,该电流场会形成不同的传输机制,能够移动多种类型的污染物。然而,使用这些技术可能会产生与土壤地质力学行为相关的不良影响,降低修复过程的有效性。对于塑性指数高于35的污染土壤进行修复时,在修复试验中会观察到过度收缩。因此,样品顶部持续发生的蒸发会导致裂缝的产生,使电动传输机制变形,从而影响修复操作的进行。另一方面,在分析粉质土壤时,在注入表面活性剂井的周围会产生高渗流,进而引发管涌过程。本文介绍了减少甚至消除这两个问题的方法。