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System to Evaluate Movement of Biological Contaminants in Soil

机译:评价土壤中生物污染物迁移的系统

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Soil columns have been utilized in hydrology to study vertical solute transfer through porous material for decades. Soil columns are typically designed as open tubes with soil held in place with meshing. While this open design is sufficient for non-hazardous particles, it is not ideal for hazardous biological contaminants that may be harmful to humans. The design of this study features a closed soil column system for use with potentially hazardous biological components. The apparatus is comprised of a mist nozzle, flow-reducing cap, and meshing to simulate rainfall on each soil column. After percolating through the soil, water and contaminants pass through a funnel coupling and discharge tube into a collection container. For additional safety, the soil column design fits within a standard biosafety cabinet for use with hazardous contaminants. Its modular design allows for simple maintenance, water flowrate adjustment, and versatility that encourages use in multiple applications. These soil columns were created to study the vertical flow of pathogens, pesticides, and other biological agents. Further experimentation with various hazardous components will develop a better understanding of their fate and transport in soil. This paper details the construction processes and testing methods to validate the system’s ability to replicate a desired flowrate, which is a precursor to studying the vertical transport of pathogens and other agents through soil.
机译:数十年来,土壤柱已在水文学中用于研究溶质通过多孔材料的垂直迁移。土柱通常设计为开口管,其中土壤通过网格固定在适当的位置。尽管此开放式设计足以应对非危险性颗粒,但对于可能对人体有害的危险性生物污染物却并不理想。这项研究的设计采用了封闭的土壤柱系统,可与潜在危险的生物成分一起使用。该设备由雾状喷嘴,减流量帽和网格组成,以模拟每个土壤柱上的降雨。渗入土壤后,水和污染物通过漏斗接头和排放管进入收集容器。为了增加安全性,土壤柱设计适合用于危险污染物的标准生物安全柜中。它的模块化设计使维护简单,水流量调节和通用性得到鼓励,可在多种应用中使用。这些土壤柱的创建是为了研究病原体,农药和其他生物制剂的垂直流动。对各种有害成分的进一步试验将使人们更好地了解其在土壤中的命运和运输。本文详细介绍了构建过程和测试方法,以验证系统能够复制所需流量的能力,这是研究病原体和其他因子在土壤中垂直传播的先驱。

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