Brockmeyer Berit, Kraus Uta R, Theobald Norbert
Federal Maritime and Hydrographic Agency (BSH), Bernhard-Nocht-Str. 78, 20359, Hamburg, Germany.
Environ Sci Pollut Res Int. 2015 Dec;22(24):19887-95. doi: 10.1007/s11356-015-5192-1. Epub 2015 Aug 21.
Silicone passive samplers have gained an increasing attention as single-phased, practical and robust samplers for monitoring of organic contaminants in the aquatic environment in recent years. However, analytical challenges arise in routine application during the extraction of analytes as silicone oligomers are co-extracted and interfere severely during chemical analyses (e.g. gas chromatographic techniques). In this study, we present a fast, practical pre-cleaning method for silicone passive samplers applying accelerated solvent extraction (ASE) for the removal of silicone oligomers prior to the water deployment (hexane/dichloromethane, 100 °C, 70 min). ASE was also shown to be a very fast (10 min) and efficient extraction method for non-polar contaminants (non-exposed PRC recoveries 66-101 %) sampled by the silicone membrane. For both applications, temperature, extraction time and the solvent used for ASE have been optimized. Purification of the ASE extract was carried out by silica gel and high-pressure liquid size exclusion chromatography (HPLC-SEC). The silicone oligomer content was checked by total reflection X-ray fluorescence spectroscopy (TXRF) in order to confirm the absence of the silicone oligomers prior to analysis of passive sampler extracts. The established method was applied on real silicone samplers from the North- and Baltic Sea and showed no matrix effects during analysis of organic pollutants. Internal laboratory standard recoveries were in the same range for laboratory, transport and exposed samplers (85-126 %).
近年来,硅胶被动采样器作为一种单相、实用且耐用的采样器,在监测水环境中的有机污染物方面越来越受到关注。然而,在常规应用中,由于硅胶低聚物会被共萃取并在化学分析(如气相色谱技术)过程中产生严重干扰,因此在分析物萃取过程中会出现分析挑战。在本研究中,我们提出了一种快速、实用的硅胶被动采样器预清洗方法,即在水样投放前应用加速溶剂萃取(ASE)去除硅胶低聚物(己烷/二氯甲烷,100℃,70分钟)。ASE还被证明是一种非常快速(10分钟)且高效的非极性污染物萃取方法(硅胶膜采样的未暴露PRC回收率为66-101%)。对于这两种应用,都对ASE的温度、萃取时间和所用溶剂进行了优化。通过硅胶和高压液相尺寸排阻色谱(HPLC-SEC)对ASE提取物进行纯化。通过全反射X射线荧光光谱法(TXRF)检查硅胶低聚物含量,以确认在分析被动采样器提取物之前不存在硅胶低聚物。将所建立的方法应用于波罗的海和北海的实际硅胶采样器,在有机污染物分析过程中未显示出基质效应。实验室、运输和暴露采样器的内部实验室标准回收率在相同范围内(85-126%)。