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Bacterial Enrichment at the Gas-Water Interface of a Laboratory Apparatus

机译:实验室仪器气水界面处的细菌富集

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摘要

The gas-water interface (GWI) is likely to have important effects on bacterial adsorption and transport in unsaturated porous media. A glass apparatus that isolated GWIs in ports above a flowthrough suspension of a groundwater bacterial isolate was used to represent unsaturated porous media. The surface microlayer was collected by placing a polycarbonate filter on the GWI. The filter was stained, and the bacteria were enumerated by direct count. The significance of five independent variables on the surface density of cells (s, in cells per square millimeter) was determined by nonlinear multiple regression. Three of the variables were shown to be significant: surfactant concentration (d), time (t), and bulk bacterial concentration (B). The surface density decreased with increasing d and increased with increasing t and B. When surfactant was absent, the GWI became highly enriched in bacteria. For example, when d = 0, 48 h < t < 72 h, and 5,000 cells mm(sup-3) < B < 10,000 cells mm(sup-3), s averaged 3.0 x 10(sup4) cells mm(sup-2). This surface density occupied about 6.0% of the GWI, and the surface microlayer concentration of cells was 190 times the bulk concentration. The other two variables: pH (p) and ionic strength (I) were shown to be insignificant. The strong effect of d and the lack of effect of I and p support the hypothesis that hydrophobic interaction dominates bacterial adsorption to the GWI.
机译:气-水界面(GWI)可能会对细菌在不饱和多孔介质中的吸附和迁移产生重要影响。使用玻璃设备在地下水细菌分离物的流通悬浮液上方的端口中隔离GWI,以表示不饱和多孔介质。通过将聚碳酸酯滤膜放置在GWI上收集表面微层。将滤纸染色,并通过直接计数来计数细菌。通过非线性多元回归确定五个独立变量对细胞表面密度(s,以每平方毫米为单位)的显着性。已显示三个变量是重要的:表面活性剂浓度(d),时间(t)和细菌总体浓度(B)。表面密度随着d的增加而降低,并随着t和B的增加而增加。当不存在表面活性剂时,GWI高度富含细菌。例如,当d = 0、48 h

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