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首页> 外文期刊>Vadose zone journal VZJ >Validation of a Relative Permeability Model for Bioclogging in Unsaturated Soils
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Validation of a Relative Permeability Model for Bioclogging in Unsaturated Soils

机译:不饱和土壤中生物阻塞的相对渗透率模型的验证

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摘要

Biological clogging of unsaturated soils is an important process that can lead to the development of a biomat and failure of biofilters used to treat various wastewater streams. Several conceptual models have been developed to simulate clogging in saturated soils; however, efforts to develop similar models for unsaturated soils have been limited. Recently, Mostafa and Van Geel proposed three conceptual models to simulate bioclogging in unsaturated systems. These models included the impact of biomassgrowth on the relative permeability term for unsaturated flow. The models were incorporated into a one-dimensional unsaturated flow and transport numerical model that simulates biological clogging in which microbial growth was simulated using Monod kinetics. The conceptual models have not been validated with experimental data. In this study, column experiments were conducted to study the clogging process in three different sand soils; filter media sand, concrete sand, and septic bed sand. Monod kineticparameters were also evaluated in a separate experiment for the same feed solution used in the column study. The aim of this study was to validate the conceptual models proposed by Mostafa and Van Geel. Significant improvements to the flow and transportnumerical model were required to accommodate the laboratory conditions. Improvements included implementing a minimum relative permeability of the biomat layer and a more detailed description of the biomass structure, which includes active biomass, extracellular polymeric substances (EPS), and an inert fraction. Comparisons between experimental data and numerical simulati ons indicated that the improved conceptual model for relative permeability appears to be appropriate for modeling bioclogging in the experiments considered in this study.
机译:不饱和土壤的生物堵塞是一个重要过程,可能导致生物垫的发展和用于处理各种废水流的生物过滤器的失效。已经开发了几种概念模型来模拟饱和土壤中的堵塞。然而,为非饱和土壤开发类似模型的努力受到限制。最近,Mostafa和Van Geel提出了三个概念模型来模拟非饱和系统中的生物阻塞。这些模型包括生物量增长对非饱和流相对渗透率项的影响。这些模型被合并到一维不饱和流动和迁移数值模型中,该模型模拟了生物堵塞,其中微生物的生长使用Monod动力学进行了模拟。概念模型尚未通过实验数据验证。在这项研究中,进行了柱实验以研究三种不同沙土中的堵塞过程。过滤介质砂,混凝土砂和化粪池砂。 Monod动力学参数还在单独的实验中针对色谱柱研究中使用的相同进料溶液进行了评估。这项研究的目的是验证Mostafa和Van Geel提出的概念模型。需要对流量和传输数值模型进行重大改进以适应实验室条件。改进包括实现生物垫层的最小相对渗透率,以及对生物质结构的更详细描述,其中包括活性生物质,细胞外聚合物(EPS)和惰性组分。实验数据与数值模拟之间的比较表明,在本研究中考虑的实验中,改进的相对渗透率概念模型似乎适合于模拟生物堵塞。

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