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Modeling Microorganism Transport and Survival in the Subsurface

机译:模拟地下微生物的运输和存活

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An understanding of microbial transport and survival in the subsurface is needed for public health, environmental applications, and industrial processes. Much research has therefore been directed to quantify mechanisms influencing microbial fate, and the results demonstrate a complex coupling among many physical, chemical, and biological factors. Mathematical models can be used to help understand and predict the complexities of microbial transport and survival in the subsurface under given assumptions and conditions. This review highlights existing model formulations that can be used for this purpose. In particular, we discuss models based on the advection-dispersion equation, with terms for kinetic retention to solid-water and/or air-water interfaces; blocking and ripening; release that is dependent on the resident time, diffusion, and transients in solution chemistry, water velocity, and water saturation; and microbial decay (first-order and Weibull) and growth (logistic and Monod) that is dependent on temperature, nutrient concentration, and/or microbial concentration. We highlight a two-region model to account for microbe migration in the vicinity of a solid phase and use it to simulate the coupled transport and survival of Escherichia coli species under a variety of environmentally relevant scenarios. This review identifies challenges and limitations of models to describe and predict microbial transport and survival. In particular, many model parameters have to be optimized to simulate a diversity of observed transport, retention, and survival behavior at the laboratory scale. Improved theory and models are needed to predict the fate of microorganisms in natural subsurface systems that are highly dynamic and heterogeneous.RI Torkzaban, Saeed/G-7377-2013OI Torkzaban, Saeed/0000-0002-5146-9461
机译:对于公共卫生,环境应用和工业过程,需要了解地下微生物的运输和生存。因此,已经进行了许多研究来量化影响微生物命运的机制,结果表明许多物理,化学和生物学因素之间存在复杂的耦合。在给定的假设和条件下,数学模型可用于帮助理解和预测地下微生物的运输和生存的复杂性。本文将重点介绍可用于此目的的现有模型公式。特别是,我们讨论了基于对流扩散方程的模型,其中包括对固体-水和/或空气-水界面的动力学保留;阻塞和成熟;释放取决于溶液化学中的停留时间,扩散和瞬变,水速度和水饱和度;以及取决于温度,营养物浓度和/或微生物浓度的微生物衰减(一阶和Weibull)和生长(逻辑和Monod)。我们着重介绍了一个两个区域的模型来说明微生物在固相附近的迁移,并使用它来模拟在各种环境相关的情况下大肠杆菌物种的耦合运输和生存。这篇综述指出了描述和预测微生物运输和生存的模型的挑战和局限性。特别是,必须优化许多模型参数,以模拟实验室规模下观察到的转运,保留和生存行为的多样性。需要改进的理论和模型来预测高度动态且异质的自然地下系统中微生物的命运.RI Torkzaban,Saeed / G-7377-2013OI Torkzaban,Saeed / 0000-0002-5146-9461

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