Imaging Clogging in a Treatment Wetland Using Time-Domain Induced Polarization

R. García‐Artigas, M. Himi, L. Rivero, A. Revil, A. U. Garcia, R. Lovera, A. Sendrós, C. Abancó, A. Casas
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Abstract

Summary Treatment wetlands are engineered systems for small communities that have been designed to take advantage of the same processes that occur in natural wetlands, the main problem affecting treatment wetlands is the development of clogging wich leads to the exclusion of some subparts of the filter, becoming ineffective for the treatment critically reducing the lifetime of the plant. Time-domain induced polarization is used to image clogging distribution of a gravel filter from a horizontal subsurface flow treatment wetland. Experimental data performed on the laboratory demonstrates the linear relationship between the normalized chargeability and the amount of clogging in the gravel filter because of the substantial increase of the cation exchange capacity caused by clogging coating these grains. Therefore, we were able to convert the normalized chargeability tomograms obtained with the field data into a 3D distribution of the percent clogging. This method allows to identify the zones were the clogging has accumulated through the filter and therefore predict preferential flow paths and dead flow zones. This is an important task to plan preventive measures and anticipate the filter obstruction that may decreases the effectiveness of the wastewater treatment system.
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利用时域诱导极化成像堵塞处理湿地
处理湿地是为小型社区设计的工程系统,旨在利用自然湿地中发生的相同过程,影响处理湿地的主要问题是堵塞的发展,导致过滤器的某些子部件被排除,对处理变得无效,严重减少了工厂的寿命。采用时域诱导极化成像技术对水平潜流处理湿地砾石过滤器的堵塞分布进行了研究。在实验室中进行的实验数据表明,归一化电荷率与砾石过滤器中的堵塞量之间存在线性关系,因为这些颗粒的堵塞涂层导致阳离子交换容量大幅增加。因此,我们能够将现场数据获得的归一化电荷层析图转换为堵塞百分比的3D分布。该方法可以识别堵塞已通过过滤器积累的区域,从而预测优先流动路径和死流区域。规划预防措施和预测可能降低废水处理系统有效性的过滤器阻塞是一项重要的任务。
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