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The effect of white or grey PVC pipe and its joint solvents (primer and cement) on odour problems in drinking water distribution systems

机译:白色或灰色PVC管及其接头溶剂(底漆和水泥)对饮用水分配系统中异味问题的影响

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A study of the production of odour-causing compounds was conducted from the leaching of polyvinylchloride (PVC) pipe and its joints, primer and cement, into drinking water distribution systems. Flavour Profile Analysis (FPA), closed-loop stripping analysis – gas chromatography/mass spectrometry (CLSA-GC/MS) and sensory-GC analysis of white or grey PVC alone found no odour-causing compounds produced during the leaching experiments. FPA analysis of the PVC's primer and cement leached alone and/or when applied to grey or white PVC pipes produced a glue/varnish odour. A sweet/phenolic odour replaced the glue/varnish odour after the leached media were diluted with Milli-Q water to threshold odour intensity. Three compounds were responsible for the sweet/phenolic odour and were observed by sensory-GC analysis. The leaching study of the PVC pipe with its joint solvents (primer and cement) concluded that the original solvent compounds, and their reaction products that formed during the bonding process on the PVC pipe, were a primary source of the glue/varnish odour. The original compounds of the PVC primer and cement were not detected by CLSA-GC/MS, due to their high volatility during the CLSA extraction method and/or these compounds appeared in a solvent peak of the GC/MS analysis. However, the original primer and cement chemicals (acetone, tetrahydrofuran, methyl ethyl ketone, and cyclohexanone) had a glue/varnish odour. A total of nine odorous GC peaks were produced as reaction products from leaching of primer in water and white or grey PVC pipe with primer and cement, and white or grey PVC with primer only. None of these compounds were among the chemical ingredients in the original primer or cement. Four GC peaks with a sweet/phenolic odour were present due to the reaction products of the cement leached with white or grey PVC. None of these compounds were positively identified.
机译:从聚氯乙烯(PVC)管及其接头,底漆和水泥的浸出到饮用水分配系统中,进行了产生臭味化合物的研究。风味曲线分析(FPA),闭环溶出分析–气相色谱/质谱(CLSA-GC / MS)和仅对白色或灰色PVC的感官GC分析都没有发现在浸出实验过程中产生臭味的化合物。单独对PVC底漆和浸出的水泥和/或将其应用于灰色或白色PVC管道时的FPA分析会产生胶水/清漆的气味。用Milli-Q水将浸出的介质稀释至阈值气味强度后,甜味/酚醛味取代了胶水/清漆味。三种化合物是造成甜味/酚醛气味的原因,并通过感官GC分析观察到。对PVC管及其共溶剂(底漆和水泥)的浸出研究得出的结论是,原始溶剂化合物及其在PVC管粘合过程中形成的反应产物是胶水/清漆气味的主要来源。由于CLSA萃取方法中挥发性高和/或这些化合物出现在GC / MS分析的溶剂峰中,因此CLSA-GC / MS无法检测到PVC底漆和水泥的原始化合物。但是,原始的底漆和水泥化学品(丙酮,四氢呋喃,甲乙酮和环己酮)具有粘胶/清漆的气味。从底漆浸入水和带有底漆和水泥的白色或灰色PVC管以及仅带有底漆的白色或灰色PVC中,作为反应产物,总共产生了9个臭味GC峰。这些化合物均不属于原始底漆或水泥的化学成分。由于用白色或灰色PVC浸出的水泥的反应产物,出现了四个带有甜味/酚醛味的GC峰。这些化合物均未得到肯定鉴定。

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