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表征用于水生综合被动采样器的膜过滤器的吸附和渗透特性。

Characterizing Sorption and Permeation Properties of Membrane Filters Used for Aquatic Integrative Passive Samplers.

机构信息

Urban Research Plaza and ‡Graduate School of Engineering, Osaka City University , Sugimoto 3-3-138, Sumiyoshi-ku, 558-8585 Osaka, Japan.

出版信息

Environ Sci Technol. 2018 Feb 20;52(4):2118-2125. doi: 10.1021/acs.est.7b05144. Epub 2018 Feb 2.

DOI:10.1021/acs.est.7b05144
PMID:29366322
Abstract

Aquatic integrative passive sampling is a promising approach to measure the time-weighted average concentration, yet our understanding for the sampling mechanisms of polar organic contaminants should be further advanced to fully exploit the potential of the method for real-world applications. This study aimed to characterize the sorption and permeation properties of poly(ether sulfone) (PES) and poly(tetrafluoroethylene) (PTFE) membrane filters (MFs) used for passive samplers. Batch sorption experiments with 14 probe chemicals showed that the sorption by PES was generally strong, with the respective sorption coefficients greater than the octanol-water partition coefficients by 2-3 log units. In contrast, the PTFE filter exhibited no significant sorption for all tested chemicals, representing a promising candidate MF that avoids lag-times and slow responses to fluctuating concentrations. Permeation experiments in a glass cell system and successive modeling demonstrated that, if no sorption to the MF occurs, the MF permeation of a chemical can be fully described with a first-order model that considers the transfer through the aqueous boundary layers and the diffusion in water-filled MF pores. Significant sorption to the MF coincided with substantial delay of permeation, which was successfully modeled with the local sorption equilibrium assumption. These findings have implications for improved sampler configurations and successful models for the chemical uptake.

摘要

水相整体被动采样是测量时间加权平均浓度的一种很有前途的方法,但为了充分发挥该方法在实际应用中的潜力,我们应该进一步深入了解极性有机污染物的采样机制。本研究旨在表征用于被动采样器的聚醚砜(PES)和聚四氟乙烯(PTFE)膜过滤器(MF)的吸附和渗透特性。采用 14 种探针化学品进行的批量吸附实验表明,PES 的吸附通常很强,相应的吸附系数大于辛醇-水分配系数 2-3 个对数单位。相比之下,所有测试的化学品在 PTFE 滤膜上均无明显吸附,这代表了一种很有前途的 MF,它可以避免滞后时间和对波动浓度的缓慢响应。在玻璃池系统中的渗透实验和连续建模表明,如果 MF 对化学品没有吸附,则可以使用考虑通过水边界层的转移和充满水的 MF 孔中的扩散的一级模型来完全描述 MF 对化学品的渗透。与 MF 的显著吸附同时发生的是渗透的显著延迟,这可以通过局部吸附平衡假设成功建模。这些发现对于改进采样器配置和化学物质摄取的成功模型具有重要意义。

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