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Metal Accumulation in Representative Plastic Drinking Water Plumbing Systems

机译:代表性的塑料饮用水水管系统中的金属积累

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Metal abundance and scale morphology for cross-linked polyethylene plastic pipes and pipe oxidative condition were examined in a one-year-old residential plumbing system. Experiments were also conducted to determine whether plastic pipe surfaces can influence scale formation. Within a single plumbing system, significant differences were found for scale morphology, the amount of metals present on pipe inner walls, and pipe aging condition. Metals found on the plastic pipes (aluminum, calcium, cobalt, copper, iron, lead, magnesium, manganese, nickel, selenium, and zinc) were corrosion products from water distribution and plumbing materials and were present in the source water. Iron was the most abundant contaminant. Bench-scale experiments revealed that plastic served as a nucleation site for iron crystal growth and expedited crystal formation. Plastic plumbing pipes can adsorb metals that have health and aesthetic drinking water limits, and additional work is needed to understand the conditions that affect metal accumulation and release.
机译:在已使用一年的住宅水暖系统中检查了交联聚乙烯塑料管的金属丰度和水垢形态以及管的氧化条件。还进行了实验以确定塑料管表面是否会影响水垢的形成。在单个管道系统中,发现水垢形态,管道内壁上存在的金属量以及管道老化状况存在显着差异。在塑料管道上发现的金属(铝,钙,钴,铜,铁,铅,镁,锰,镍,硒和锌)是自来水和管道材料的腐蚀产物,并存在于水源水中。铁是最丰富的污染物。实验室规模的实验表明,塑料充当了铁晶体生长和加速晶体形成的成核位置。塑料水暖管道可以吸收具有健康和美观饮用水限制的金属,因此需要做更多的工作才能了解影响金属积累和释放的条件。

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