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Fate of virus in wastewater applied to slow-infiltration land treatment systems.

机译:污水中病毒的命运应用于慢渗土地处理系统。

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摘要

The removal of seeded coliphage f2 and indigenous enteroviruses from primary and secondary wastewaters applied by spray irrigation to sandy loam and silt loam soils in field test cells was examined. The amount of f2 recovered from 170-cm-deep soil percolate samples taken over a 53-day period never exceeded 0.1% of applied virus levels and was usually below detection limits. Indigenous enterovirus levels in percolate waters also constituted only a small portion of those found in the wastewaters. At 10 days after seeding, f2 virus was present throughout the soil column but tended to accumulate around the soil core middepths. Coliphage f2 disappeared from the soil surface regions at a high rate, and by 53 days very little virus could be detected within the length of the soil columns. Sterilized soil core segments from different depths were studied to determine their virus adsorption capabilities when suspended in either wastewater, test cell percolate water, or distilled water containing divalent cations. The adsorptive capacity of Windsor and Charlton soils for poliovirus 1 and coliphage f2 increased greatly with the soil sample depth until leveling off at the midcore depths. Soil suspended in wastewater had the least virus adsorption capability for all depths studied.
机译:考察了通过喷灌对田间试验池中的砂壤土和粉质壤土土壤中的一级和二级废水中的种子噬菌体f2和本地肠病毒的去除情况。在53天的时间内从170厘米深的土壤渗滤样品中回收的f2量从未超过所应用病毒水平的0.1%,通常低于检测极限。渗滤液水中的土著肠道病毒水平也仅占废水中的一小部分。播种后第10天,f2病毒遍布整个土壤柱,但倾向于在土壤核心中深度附近聚集。鹅粪菌f2以很高的速度从土壤表层消失,到53天,在土壤柱的长度范围内几乎未检测到病毒。研究了来自不同深度的无菌土壤核心段,以确定它们悬浮在废水,测试池的渗滤水或含有二价阳离子的蒸馏水中时的病毒吸附能力。温莎和查尔顿土壤对脊髓灰质炎病毒1和大肠杆菌2的吸附能力随土壤样品深度的增加而大大增加,直到中核深度趋于平稳。在所有研究深度中,悬浮在废水中的土壤对病毒的吸附能力最低。

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