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Predictive Model for Propagation of Beneficial Microbes in Variably Saturated Soils

机译:各种饱和土壤中有益微生物的繁殖预测模型

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摘要

Bioremediation of contaminated soils by pumping-in beneficial microorganisms to degrade and eventually remove undesirable organic pollutants is gaining popularity for soil treatment. One critical step of bioremediation involves introducing beneficial microbes, such as bacteria and fungi, into soils to break down contaminants as the microbes carry out their life functions. The current state of knowledge on this subject has been built primarily on experimental work, and the development of a numerical method that is capable of accurately analyzing and predicting bacterial propagation in variably saturated soils has not been adequately explored. Within this background, this article presents the development of a finite element method (FEM)-based model for determining the mobility and growth of bacterial microbes in variably saturated soils. This numerical model captures three major propagation mechanisms of bacteria in a variably saturated soil as a porous medium, including natural diffusion, bacterial growth, and bacterial convective transport, which were successfully coupled in the nonlinear partial deferential governing equation of the model. Temperature, as an important environmental factor, was modeled explicitly in the model. A FEM model was validated experimentally and then used to evaluate the propagation of bacterial species in soils under different environmental conditions. It was found that soil temperature and moisture movement are among the major factors that influence the evolutionary behavior of bacteria. The example application given at the end of the work shows that the developed model is useful for designing the best-performance bioremediation strategies for subsurface zones contaminated by organic matters.
机译:通过泵入有益微生物以降解并最终去除不良有机污染物来对污染土壤进行生物修复正在土壤处理中得到普及。生物修复的关键步骤之一是将有益的微生物(例如细菌和真菌)引入土壤中,以在微生物执行其生命功能时分解污染物。关于这一主题的当前知识水平主要建立在实验工作上,尚未充分探索能够准确分析和预测细菌在可变饱和土壤中繁殖的数值方法。在此背景下,本文介绍了基于有限元方法(FEM)的模型的发展,该模型用于确定细菌在可变饱和土壤中的迁移和生长。该数值模型捕获了细菌在可变饱和土壤中作为多孔介质的三种主要传播机制,包括自然扩散,细菌生长和细菌对流迁移,这些机制已成功地耦合到该模型的非线性偏微分控制方程中。温度是重要的环境因素,已在模型中明确建模。通过实验验证了有限元模型,然后将其用于评估细菌在不同环境条件下在土壤中的传播。发现土壤温度和水分运动是影响细菌进化行为的主要因素。工作结束时给出的示例应用程序表明,开发的模型可用于设计针对有机物污染的地下区域的最佳性能生物修复策略。

著录项

  • 来源
    《Environmental Engineering Science》 |2017年第6期|385-393|共9页
  • 作者

    Pan Tongyan; Miao Tao; Yu Qifeng;

  • 作者单位

    IIT, Dept Civil Architectural & Environm Engn, 3201 South Dearborn St, Chicago, IL 60616 USA;

    IIT, Dept Civil Architectural & Environm Engn, 3201 South Dearborn St, Chicago, IL 60616 USA;

    IIT, Dept Civil Architectural & Environm Engn, 3201 South Dearborn St, Chicago, IL 60616 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    convective transport; diffusion; microbial growth; variably saturated soils;

    机译:对流输运;扩散;微生物生长;饱和土壤;
  • 入库时间 2022-08-17 13:28:31

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