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Microscopic visualization technique to predict the permeation of organic solvents through pvc pipes in water distribution systems

机译:微观可视化技术预测配水系统中PVC管道中有机溶剂的渗透

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Organic contaminants may permeate through plastic pipes in water distribution systems and adversely affect the quality of drinking water. In this study, we developed a microscopic visualization technique to investigate the permeation of common organic contaminants (benzene, toluene, ethylbenzene, xylene, and trichloroethene) through polyvinyl chloride (PVC) pipes. By observing the propagation of organic moving fronts in the pipe materials with a light microscope, the technique was able to predict the permeation breakthrough times through PVC pipes that were determined in the pipe-bottle test. The advance of an organic moving front was found to be linearly dependent on the square-root of time and the propagation rate increased with an increase in the external organic chemical activity. Permeation of organic mixtures into PVC pipes was found to be additive in proportion to the permeation rates and volume percents of each component. In combination with a 2-year pipe-bottle test for PVC pipes exposed to premium gasoline, mathematical extrapolations based on the microscopic visualization tests predicted that PVC pipe are likely to resist permeation by commercial gasoline for the service life of the pipe.
机译:有机污染物可能会通过配水系统中的塑料管渗透,并对饮用水质量产生不利影响。在这项研究中,我们开发了一种显微镜可视化技术,以研究通过聚氯乙烯(PVC)管道渗透的常见有机污染物(苯,甲苯,乙苯,二甲苯和三氯乙烯)。通过用光学显微镜观察管材中有机移动前沿的传播,该技术能够预测在管瓶测试中确定的PVC管的渗透穿透时间。发现有机移动前沿的进展与时间的平方根成线性关系,并且随着外部有机化学活性的增加,传播速率也增加。发现有机混合物渗透到PVC管中与每种组分的渗透率和体积百分比成正比。结合对暴露于优质汽油的PVC管进行的为期2年的瓶装测试,基于微观可视化测试的数学推断预测,PVC管在使用寿命期内很可能抵抗商业汽油的渗透。

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