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Factors that Influence the Transport of Bacillus cereus Spores through Sand

机译:影响蜡状芽孢杆菌孢子通过沙运输的因素

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The goal of this study is to clarify the surface-chemical and microphysical variables that influence bacterial spore transport through soil, thereby defining the factors that may affect spore transport velocity. Bacillus cereus spores were continuously monitored in a soil column under saturated conditions with experimental variations in soil grain size (0.359 and 0.718 mm), pH (7.2 and 8.5), and water flow rate (1.3 and 3.0 mL/min). Increasing soil grain size, flow rate, and pH resulted in enhanced spore movement. Spore transport increased 82% when soil grain size was doubled. An increase in effluent flow rate from 1.3 to 3.0 mL/min increased spore movement by 71%. An increase in pH increasedrnspore transport by 53%. The increase in hydrody-namic forces resulting from the larger grain size soil and higher flow rate functioned to overcome the hydrophobic nature of the spore's coat, and the interparticle bonding forces between the spore and soil particles.
机译:这项研究的目的是阐明影响细菌孢子通过土壤运输的表面化学和微物理变量,从而确定可能影响孢子运输速度的因素。在饱和条件下,在土壤柱中连续监测蜡状芽孢杆菌的芽孢,实验结果表明土壤粒径(0.359和0.718 mm),pH(7.2和8.5)和水流速(1.3和3.0 mL / min)有所变化。增加土壤粒度,流速和pH值会导致孢子运动增强。当土壤粒度增加一倍时,孢子运输增加了82%。出水流速从1.3 mL / min增加到3.0 mL / min,使孢子运动提高了71%。 pH的增加使孢子转运增加了53%。由较大粒径的土壤和较高的流速引起的水动力的增加起到了克服孢子皮的疏水性以及孢子与土壤颗粒之间的颗粒间结合力的作用。

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