PPI STATEMENT N-2013 Plastics Pipe Institute Position Statement on Barrier Properties of Plastic Pipe Used for Potable Water Service.pdf
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1、 STATEMENT N Plastics Pipe Institute Position Statement on Barrier Properties of Plastic Pipe Used for Potable Water Service Issued July, 1984 Revised June 2002 Revised January 2013 INTRODUCTION Plastic pipe has been used with confidence in potable water systems for over 40 years and has been demons
2、trated to be safe and economical in this application. Over these many years of satisfactory use, the occurrence of permeation has been extremely rare. It has been observed only in situations where there was unusual and severe environmental contamination. In these instances, the question of permeatio
3、n of potable water piping systemswhich can affect all types of piping systemsneeds to be addressed. Permeation refers to the phenomenon by which chemical substances in surrounding soils can travel through the walls of buried pipe or of piping components such as gaskets. PROVEN ADVANTAGES Plastic pip
4、e has been shown to be an environmentally safe way to transport drinking water because plastics used in potable water pipe are inert in the normal environment. Bacteria or fungi do not affect them, and they do not react with acidic or basic soils. Plastic pipe does not rust or corrode. It is resilie
5、nt, resisting cracking or breaking, even in unstable soil conditions. In short, plastic pipe often works better, lasts longer and is more cost effective than the materials it replaces. The documented performance of plastic pipe has made it a preferred material. CONCERNS In potable water systems, one
6、 of the primary concerns is the maintenance of water qualitythe piping materials must protect the water from any possible external contaminants while also being neutral to water quality. All piping systems appear to have some slight potential for contamination from external reagents though permeatio
7、n of gaskets, permeation of pipe wall, and liquid exchange through all types of leaks. For example, metal and concrete piping are vulnerable to corrosion by inorganic acid and alkaline contaminants that could make the piping vulnerable to infiltration. Plastic piping is immune to this type of attack
8、. On the other hand, some organic solvents, if present in sufficient quantity and over a prolonged duration, could be absorbed by the pipe material and permeate in slight concentrations into the potable water. Fortunately, serious environmental contamination of soils are rare and are readily identif
9、iable. In soils heavily contaminated with hydrocarbon solvents, permeation also can occur through the elastomeric gasket joints, which are used extensively with a variety of different types of piping materials. Battelle Research Institute1tested piping systems under exaggerated conditions in soil he
10、avily saturated with contaminants that could permeate plastics, have indicated that permeation will occur rather quickly through elastomeric gasketed joints in a variety of different types of potable water piping. In a real life situation, of course, the degree of permeation, if any would depend upo
11、n the severity of soil contamination, the type of contaminant, the composition of the soil itself, the pipe size/wall thickness and the flow rate (and dilution) past the permeated materials. In support of the plastic piping industries growing need for more detailed information, The Plastics Pipe Ins
12、titute contracted with Indiana University Purdue University Indianapolis (IUPUI)to develop a report to assist the users titled “ASSESSMENT AND CALCULATION OF BTEX PERMEATION THROUGH HDPE WATER PIPE” which was published in the summer of 2012. Previous work from Ong et al2established diffusion coeffic
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