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一种用于中等疏水性有机化合物的新型基于胶片的被动采样器。

A New Film-Based Passive Sampler for Moderately Hydrophobic Organic Compounds.

机构信息

Southern California Coast Water Research Project Authority, Costa Mesa, 92626, California, United States.

Department of Environmental Sciences, University of California , Riverside, 92521, California, United States.

出版信息

Environ Sci Technol. 2016 Dec 20;50(24):13470-13476. doi: 10.1021/acs.est.6b04750. Epub 2016 Dec 7.

DOI:10.1021/acs.est.6b04750
PMID:27993079
Abstract

Passive samplers for moderately hydrophobic organic compounds (MHOCs) (i.e., log K ranging from 2 to 5) are under-developed compared to those that target polar or strongly hydrophobic compounds. The goal of this study was to identify a suitable polymer and develop a robust and sensitive film-based passive sampler for MHOCs in aquatic systems. Poly(methyl methacrylate) (PMMA) exhibited the highest affinity for fipronil and its three metabolites (i.e., fipronils) (log K 2.4-4.8) as model MHOCs compared with polyethylene and nylon films. In addition, a 30-60 min treatment of PMMA in ethyl ether was found to increase its sorption capacity by a factor of 10. Fipronils and 108 additional compounds (log K 2.4-8.5) reached equilibrium on solvent-treated PMMA within 120 h under mixing conditions and their uptake closely followed first-order kinetics. PMMA-water partition coefficients and K revealed an inverse parabolic relationship, with vertex at log K of 4.21 ± 0.19, suggesting that PMMA was ideal for MHOCs. The PMMA sampler was tested in an urban surface stream, and in spiked sediment. The results demonstrated that PMMA film, after a simple solvent swelling treatment, may be used as an effective passive sampler for determining C of MHOCs in aquatic environments.

摘要

与针对极性或强疏水性化合物的被动采样器相比,中等疏水性有机化合物 (MHOC)(即 log K 范围为 2 至 5)的被动采样器的发展还不够完善。本研究的目的是确定一种合适的聚合物,并开发一种用于水生系统中 MHOC 的稳健、灵敏的基于膜的被动采样器。聚甲基丙烯酸甲酯 (PMMA) 对氟虫腈及其三种代谢物(即氟虫腈)(log K 2.4-4.8)作为模型 MHOC 的亲和力最高,与聚乙烯和尼龙膜相比。此外,发现 PMMA 在乙基醚中处理 30-60 分钟可使其吸附能力提高 10 倍。在混合条件下,经溶剂处理的 PMMA 在 120 小时内达到了氟虫腈和另外 108 种化合物(log K 2.4-8.5)的平衡,其吸收过程很好地遵循了一级动力学。PMMA-水分配系数和 K 呈现出反抛物线关系,顶点位于 log K 为 4.21 ± 0.19,表明 PMMA 是 MHOC 的理想选择。PMMA 采样器在城市地表溪流和添加沉积物中进行了测试。结果表明,PMMA 薄膜经过简单的溶剂溶胀处理后,可用于有效测定水生环境中 MHOC 的 C。

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