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Penetration of different human pathogenic viruses into sand columns percolated with distilled water groundwater or wastewater.

机译:将不同的人类致病病毒渗透到渗透有蒸馏水地下水或废水的沙柱中。

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摘要

The adsorption of several enteroviruses and rotavirus SA11 to sand from an aquifer in the Federal Republic of Germany was estimated in sand-filled columns loaded with ca. 10(7) PFU and run at a velocity of 2.5 m/day for 12 h. After either distilled water, groundwater, secondary effluent, or tertiary effluent was percolated, the sand core was slowly extruded out of the column and cut in 1-cm slices. The slices were eluted with nutrient broth, and the amount of viruses in the broth was estimated. The best adsorption was promoted by groundwater and tertiary effluent, followed by distilled water and secondary effluent. Similar experiments, carried out at different percolation rates, indicated that a 50-day underground stay of recharged water probably suffices to eliminate viruses in the groundwater-recharged tertiary effluent. However, when viruses and sand were incubated in the presence of the surfactants sodium dodecyl sulfate, nonyl phenol, dodigen 226, or alkylbenzylsulfonate, the adsorption of the viruses was substantially diminished. Experiments in the presence of nonyl phenol seem to indicate that hydrophobic interactions are involved in the adsorption of viruses to sand.
机译:据估计,在装满约20%碳纳米管的沙子填充柱中,几种肠病毒和轮状病毒SA11从德意志联邦共和国的一个含水层中吸附到沙子上。 10(7)PFU并以2.5 m / day的速度运行12 h。过滤掉蒸馏水,地下水,二次流出物或三次流出物后,将砂芯缓慢地从色谱柱中挤出并切成1厘米的切片。用营养肉汤洗脱切片,并估计肉汤中的病毒量。最好的吸附是由地下水和第三级废水促进的,其次是蒸馏水和二级废水。在不同的渗滤速率下进行的类似实验表明,在地下停留50天的补给水可能足以消除在地下水补给的三次流出物中的病毒。但是,当病毒和沙子在表面活性剂十二烷基硫酸钠,壬基苯酚,digengen 226或烷基苄基磺酸盐的存在下孵育时,病毒的吸附会大大降低。在壬基酚存在下的实验似乎表明,疏水相互作用与病毒对沙子的吸附有关。

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