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Determining the permeability of organic solvents through PVC pipes using a direct SPME model

机译:使用直接SPME模型确定有机溶剂通过PVC管道的渗透性

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The permeability of aromatic hydrocarbons, i.e. BTEX and styrene, through PVC pipes was investigated using a 6-cm pipe-bottle model with direct solid-phase microextraction (SPME) sampling. It was found that an aromatic hydrocarbon with a large molecular size or low polarity may be less permeable through PVC pipes. In addition, the diffusion coefficients of BTEX and styrene in PVC pipes ranged from 4.87 to 7.64 x 10(-8) cm(2)/s. According to the simulation results of a one-dimensional diffusion model, it is speculated that diffusion transport of benzene and toluene in PVC pipes may have non-Fickian behavior. The advantage of using the innovated test model is that SPME provides a nondestructive analytical means to monitor the concentrations of organic compounds in pipe-water. Therefore, the pipe-bottle model developed herein has potential applications in determining the resistance of polymeric pipes to permeation by solvents in the aqueous solution. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用具有直接固相微萃取(SPME)采样的6厘米管瓶模型研究了芳烃(即BTEX和苯乙烯)在PVC管中的渗透性。已经发现,具有大分子尺寸或低极性的芳族烃可能较难通过PVC管渗透。此外,BTEX和苯乙烯在PVC管中的扩散系数范围为4.87至7.64 x 10(-8)cm(2)/ s。根据一维扩散模型的模拟结果,推测PVC管道中苯和甲苯的扩散传输可能具有非菲克行为。使用创新的测试模型的优势在于SPME提供了一种非破坏性的分析手段来监控管道水中有机化合物的浓度。因此,本文开发的管瓶模型在确定聚合物管对水溶液中溶剂渗透的抵抗力方面具有潜在的应用。 (C)2016 Elsevier Ltd.保留所有权利。

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