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原位无脂聚乙烯膜被动采样器摄取率的现场试验与建模

Field trial and modeling of uptake rates of in situ lipid-free polyethylene membrane passive sampler.

作者信息

Anderson K A, Sethajintanin D, Sower G, Quarles L

机构信息

Environmental and Molecular Toxicology Department, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

Environ Sci Technol. 2008 Jun 15;42(12):4486-93. doi: 10.1021/es702657n.

Abstract

Lipid-free polyethylene membrane tubing (LFT) has been further developed in response to a growing need for an inexpensive and simple time-integrative sampling device for dissolved hydrophobic contaminants in water. The LFT sampler is based on the diffusion of dissolved hydrophobic target compounds through the aqueous boundary layer and into the polyethylene membrane, mimicking uptake by organisms. We demonstrate through laboratory and field validation studies that LFT provided the same benefits as many other passive sampling devices, withoutthe potential of analytical interference from lipid impurities. A total of 370 LFTs and semipermeable membrane devices were deployed for 21 days in paired studies at highly urbanized, undeveloped, and two Superfund sites, representing several river conditions. A simple internal surrogate spiking method served as an in situ calibration indicator of the effects of environmental conditions on the uptake rates. A modified extraction method for the LFT increased recoveries while decreasing solvent use and labor compared to other organic extraction procedures. LFT sampling rates were estimated using ratios, in situ calibration and modeling for over 45 target analytes, including PAHs, PCBs, and pesticides.

摘要

无脂聚乙烯膜管(LFT)是为满足对一种用于水中溶解的疏水性污染物的廉价且简单的时间积分采样装置日益增长的需求而进一步开发的。LFT采样器基于溶解的疏水性目标化合物通过水相边界层扩散进入聚乙烯膜,模拟生物体的吸收过程。我们通过实验室和现场验证研究表明,LFT具有与许多其他被动采样装置相同的优点,且不存在脂质杂质造成分析干扰的可能性。在高度城市化、未开发地区以及两个超级基金场地进行的配对研究中,总共部署了370个LFT和半透膜装置,为期21天,这些场地代表了几种河流状况。一种简单的内部替代物加标方法用作环境条件对吸收速率影响的原位校准指标。与其他有机萃取程序相比,一种改进的LFT萃取方法提高了回收率,同时减少了溶剂使用量和劳动量。使用比率、原位校准和建模方法估算了LFT对45种以上目标分析物的采样速率,这些分析物包括多环芳烃、多氯联苯和农药。

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