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Occurrence of nonylphenol and bisphenol A in household water pipes made of different materials

机译:不同材料制成的家用水管中壬基酚和双酚A的存在

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We assessed the occurrence of nonylphenol (NP) and bisphenol A (BPA) in tap water supplied through polyvinyl chloride (PVC), stainless steel, and galvanized pipes. Water samples were collected from selected households in Taipei and Kaohsiung (Northern and Southern Taiwan, respectively) in different seasons to elucidate the effects of pipeline materials and ambient temperatures on NP and BPA concentrations in tap water. We detected higher concentrations of NP in tap water from households using PVC pipes (64-195 ng/L) than from those using stainless steel pipes (17-44 ng/L) and galvanized pipes (27-96 ng/L). To verify that water can absorb NP and BPA from PVC pipes, we sealed Milli-Q and tap water in PVC and stainless steel pipes to assess the potential release of NP and BPA from the pipes into the water. Both NP and BPA concentrations initially increased with contact time in the PVC pipes, and the concentration profiles during the retention appeared to be more strongly affected by ambient temperatures. Concentration variations in the stainless steel pipes were smaller than those in the PVC pipes.
机译:我们评估了通过聚氯乙烯(PVC),不锈钢和镀锌管提供的自来水中壬基酚(NP)和双酚A(BPA)的发生情况。在不同季节分别从台北和高雄(分别位于台湾北部和南部)的选定住户收集水样,以阐明管道材料和环境温度对自来水中NP和BPA浓度的影响。我们检测到,使用PVC管(64-195 ng / L)的家庭自来水中的NP浓度高于使用不锈钢管(17-44 ng / L)和镀锌管(27-96 ng / L)的家庭。为了验证水可以吸收PVC管中的NP和BPA,我们将Milli-Q密封并用PVC和不锈钢管中的自来水来评估NP和BPA从管中释放到水中的潜在可能性。 NP和BPA的浓度最初都随PVC管中的接触时间而增加,并且保留期间的浓度曲线似乎受到环境温度的强烈影响。不锈钢管中的浓度变化小于PVC管中的浓度变化。

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