Theoretical one-dimensional porous media model for microbial growth on pore plugging and permeability evolution and its verification.

IF 2.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Journal of the Air & Waste Management Association Pub Date : 2023-10-01 Epub Date: 2023-08-21 DOI:10.1080/10962247.2023.2248923
Xinyu Luo, Angran Tian, Yuru Chen, Yu Zhou, Qiang Tang
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Abstract

The growth, reproduction, and metabolic activities of microorganisms can lead to blockages within porous media, a phenomenon commonly observed in landfill engineering. Termed as microbial plugging, this phenomenon is significantly influenced by the inherent permeability characteristics of the system. In this study, we propose a simulation model based on the Monod equation to elucidate the clogging process caused by microorganisms in one-dimensional pore channels. Our primary focus is on the application of this model in landfill bioreactor systems. We demonstrate that microbial clogging in these systems is predominantly affected by factors such as the maximum environmental carrying capacity and pore size. These factors are directly influenced by the presence of solid waste within the landfill. By offering a theoretical foundation for mitigating microbial clogging in pore channels of landfill bioreactor systems, this research has the potential to contribute to the development of more efficient and effective waste management practices.Implications: Microbial plugging is a hot research topic in the field of environmental geotechnical engineering. Previous papers often only considered the reduction of pore volumes, while neglecting the role of clogging and the uneven distribution of permeability. In this paper, we established a permeability model for porous media that considers microbial growth and plugging. This model can reflect the temporal variation of permeability with microbial growth and predict the spatial distribution of permeability. This paper can promote on the utilization of microbial plugging technology in landfills or solid waste.

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微生物生长对孔隙堵塞和渗透率演化的一维多孔介质理论模型及其验证。
微生物的生长、繁殖和代谢活动会导致多孔介质堵塞,这是垃圾填埋工程中常见的现象。这种现象被称为微生物堵塞,受到系统固有渗透特性的显著影响。在本研究中,我们提出了一个基于Monod方程的模拟模型,以阐明微生物在一维孔道中引起的堵塞过程。我们的主要关注点是该模型在垃圾填埋场生物反应器系统中的应用。我们证明,这些系统中的微生物堵塞主要受最大环境承载能力和孔径等因素的影响。这些因素直接受到垃圾填埋场内固体废物存在的影响。通过为缓解垃圾填埋场生物反应器系统孔道中的微生物堵塞提供理论基础,本研究有可能为开发更高效、更有效的废物管理实践做出贡献。启示:微生物封堵是环境岩土工程领域的一个热门研究课题。以往的论文往往只考虑孔隙体积的减少,而忽略了堵塞和渗透率分布不均的作用。在本文中,我们建立了一个考虑微生物生长和堵塞的多孔介质渗透率模型。该模型可以反映渗透率随微生物生长的时间变化,并预测渗透率的空间分布。本文对微生物堵头技术在垃圾填埋场或固体废弃物中的应用具有一定的推广意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of the Air & Waste Management Association
Journal of the Air & Waste Management Association ENGINEERING, ENVIRONMENTAL-ENVIRONMENTAL SCIENCES
CiteScore
5.00
自引率
3.70%
发文量
95
审稿时长
3 months
期刊介绍: The Journal of the Air & Waste Management Association (J&AWMA) is one of the oldest continuously published, peer-reviewed, technical environmental journals in the world. First published in 1951 under the name Air Repair, J&AWMA is intended to serve those occupationally involved in air pollution control and waste management through the publication of timely and reliable information.
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