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Cell Preparation Methods Influence Escherichia coli D21g Surface Chemistry and Transport in Saturated Sand

机译:细胞制备方法影响大肠杆菌D21g表面化学和在饱和沙土中的迁移

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摘要

The effect of cell preparation methods on the surface chemistry and retention of Escherichia coli D21 g was investigated over a range of ionic strength conditions. The cell preparation methods that were considered included filtration and centrifugation (at various speeds and for different durations). For a given ionic strength condition, it was found that cells prepared by filtration were more negatively charged and hydrophobic than cells prepared by centrifugation. Increasing the centrifugation speed (force imposed) or duration produced cells with a higher zeta potential (less negative) and a lower hydrophobicity. Column transport experiments for E. coli D21 g were also conducted with ultra pure quartz sand and the same solution chemistries. The first-order retention rate coefficient for E. coli D21 g increased with increasing speed and duration of centrifugation, and was lowest in the case of filtered cells. Moreover, the influence of cell preparation method was more pronounced in lower ionic strength solutions.
机译:在一系列离子强度条件下,研究了细胞制备方法对大肠杆菌D21 g的表面化学和保留率的影响。考虑的细胞制备方法包括过滤和离心分离(以不同的速度和不同的持续时间)。对于给定的离子强度条件,发现通过过滤制备的细胞比通过离心制备的细胞带更多的负电荷和疏水性。增加离心速度(施加的作用力)或持续时间会产生具有较高zeta电位(较少负值)和较低疏水性的细胞。还使用超纯石英砂和相同的溶液化学方法对D21 g。大肠杆菌进行了色谱柱迁移实验。大肠杆菌D21 g的一级保留率系数随着离心速度和离心时间的增加而增加,在过滤细胞的情况下最低。此外,细胞制备方法的影响在较低离子强度的溶液中更为明显。

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