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一株粘附缺陷型细菌菌株在石英砂中沉积速率系数的空间变化

Spatial variation in deposition rate coefficients of an adhesion-deficient bacterial strain in quartz sand.

作者信息

Tong Meiping, Camesano Terri A, Johnson William P

机构信息

Department of Geology & Geophysics, University of Utah, Salt Lake City, Utah, USA.

出版信息

Environ Sci Technol. 2005 May 15;39(10):3679-87. doi: 10.1021/es048850s.

Abstract

The transport of bacterial strain DA001 was examined in packed quartz sand under a variety of environmentally relevant ionic strength and flow conditions. Under all conditions, the retained bacterial concentrations decreased with distance from the column inlet at a rate that was faster than loglinear, indicating that the deposition rate coefficient decreased with increasing transport distance. The hyperexponential retained profile contrasted againstthe nonmonotonic retained profiles that had been previously observed for this same bacterial strain in glass bead porous media, demonstrating that the form of deviation from log-linear behavior is highly sensitive to system conditions. The deposition rate constants in quartz sand were orders of magnitude below those expected from filtration theory, even in the absence of electrostatic energy barriers. The degree of hyperexponential deviation of the retained profiles from loglinear behavior did not decrease with increasing ionic strength in quartz sand. These observations demonstrate thatthe observed low adhesion and deviation from log-linear behavior was not driven by electrostatic repulsion. Measurements of the interaction forces between DA001 cells and the silicon nitride tip of an atomic force microscope (AFM) showed that the bacterium possesses surface polymers with an average equilibrium length of 59.8 nm. AFM adhesion force measurements revealed low adhesion affinities between silicon nitride and DA001 polymers with approximately 95% of adhesion forces having magnitudes < 0.8 nN. Steric repulsion due to surface polymers was apparently responsible for the low adhesion to silicon nitride, indicating that steric interactions from extracellular polymers controlled DA001 adhesion deficiency and deviation from log-linear behavior on quartz sand.

摘要

在各种与环境相关的离子强度和流动条件下,对细菌菌株DA001在填充石英砂中的输运进行了研究。在所有条件下,保留的细菌浓度随离柱入口距离的增加而降低,其速率比对数线性更快,这表明沉积速率系数随输运距离的增加而降低。这种超指数保留分布与先前在玻璃珠多孔介质中观察到的该相同细菌菌株的非单调保留分布形成对比,表明偏离对数线性行为的形式对系统条件高度敏感。即使在没有静电能垒的情况下,石英砂中的沉积速率常数也比过滤理论预期的低几个数量级。在石英砂中,保留分布与对数线性行为的超指数偏离程度并未随离子强度的增加而降低。这些观察结果表明,观察到的低附着力和偏离对数线性行为并非由静电排斥驱动。对DA001细胞与原子力显微镜(AFM)的氮化硅探针之间相互作用力的测量表明,该细菌具有平均平衡长度为59.8 nm的表面聚合物。AFM附着力测量显示氮化硅与DA001聚合物之间的附着力亲和力较低,约95%的附着力大小<0.8 nN。表面聚合物引起的空间排斥显然是对氮化硅低附着力的原因,这表明细胞外聚合物的空间相互作用控制了DA001在石英砂上的附着力缺陷和偏离对数线性行为。

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