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用分布式污染物源对颗粒介质中的趋化细菌输运进行建模。

Modeling Transport of Chemotactic Bacteria in Granular Media with Distributed Contaminant Sources.

机构信息

Department of Chemical Engineering, University of Virginia , Charlottesville, Virginia 22904, United States.

School of Chemical, Biological, and Environmental Engineering, Oregon State University , Corvallis, Oregon 97331, United States.

出版信息

Environ Sci Technol. 2017 Dec 19;51(24):14192-14198. doi: 10.1021/acs.est.7b04443. Epub 2017 Dec 5.

Abstract

Chemotaxis has the potential to improve bioremediation strategies by enhancing the transport of pollutant-degrading bacteria to the source of contamination, leading to increased pollutant accessibility and biodegradation. This computational study extends work reported previously in the literature to include predictions of chemotactic bacterial migration in response to multiple localized contaminant sources within porous media. An advection-dispersion model, in which chemotaxis was represented explicitly as an additional advection-like term, was employed to simulate the transport of bacteria within a sand-packed column containing a distribution of chemoattractant sources. Simulation results provided insight into attractant and bacterial distributions within the column. In particular, it was found that chemotactic bacteria exhibited a distinct biased migration toward contaminant sources that resulted in a 30% decrease in cell recovery, and concomitantly an enhanced retention within the sand column, compared to the nonchemotactic control. Model results were consistent with experimental observations. Parametric studies were conducted to provide insight into the influence of chemotaxis parameters on bacterial migration and cell percent recovery. The model results provide a better understanding of the effect of chemotaxis on bacterial transport in response to distributed contaminant sources.

摘要

趋化作用有可能通过增强降解污染物的细菌向污染源头的迁移,从而提高污染物的可及性和生物降解性,来改善生物修复策略。本计算研究扩展了文献中以前报道的工作,包括对多孔介质中多个局部污染物源的趋化细菌迁移的预测。采用对流-弥散模型,其中趋化作用被明确表示为附加的类对流项,来模拟含有一系列化学引诱剂源的沙填充柱内细菌的迁移。模拟结果提供了柱内引诱剂和细菌分布的深入了解。特别是,发现趋化细菌对污染物源表现出明显的偏向迁移,导致细胞回收率降低 30%,同时与非趋化控制相比,在沙柱内的保留增强。模型结果与实验观察结果一致。进行了参数研究,以深入了解趋化作用参数对细菌迁移和细胞百分比恢复的影响。模型结果提供了对趋化作用对细菌在响应分布污染物源的迁移的影响的更好理解。

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