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利用被动采样器中相关性能参考化合物的现场数据调整当前模型,以准确监测水介质中的疏水性有机化合物。

Adapting current model with field data of related performance reference compounds in passive samplers to accurately monitor hydrophobic organic compounds in aqueous media.

作者信息

Temoka Pokem, Pfister Gerd, Henkelmann Bernhard, Schramm Karl-Werner

机构信息

TUM, Wissenschaftszentrum Weihenstephan für Ernährung, Landnutzung und Umwelt, Department für Grundlagen der Biowissenschaften, Weihenstephaner Steig 23, 85350, Freising, Germany.

Helmholtz Zentrum München - German Research Center for Environmental Health (GmbH), Molecular EXposomics (MEX), Ingolstädter Landstr.1, D-85764, Neuherberg, Germany.

出版信息

Environ Monit Assess. 2017 Oct 7;189(11):543. doi: 10.1007/s10661-017-6252-4.

Abstract

Performance reference compounds (PRCs) are neutral organic compounds, introduced in a passive sampler prior deployment for the assessment of in situ sampling rate. In this study, evaluation of in situ sampling rates of 16 C-PAH-PRCs with moderate and high hydrophobicity was established to provide an overall correction factor for variations in virtual organism (VO) uptake rates of the analytes of interest. In situ sampling rate was compared to an empirical model during sampling campaign in 2011 with VO in 12 different sites along the Three Gorges Reservoir (TGR) in China. A discrepancy was observed for high hydrophobic compounds with log K ranging from 5.18 to 6.63 where ΣPAH concentration in TGR from Huckins model (305,624 pg/L) was resulted to be roughly 2-fold higher than the alternative procedure (182,292 pg/L). A relationship between in situ sampling rates of the 16 C-PAH-PRCs (Rs, ) and log K was set up to allow then calculation of analyte sampling rate Rs (N) of various organic pollutants with log K  ≤ 6.63.

摘要

性能参考化合物(PRCs)是中性有机化合物,在被动采样器部署前引入,用于评估原位采样率。在本研究中,建立了对16种具有中等和高疏水性的碳多环芳烃PRCs原位采样率的评估,以提供一个针对目标分析物虚拟生物(VO)摄取率变化的总体校正因子。在2011年的采样活动中,将原位采样率与一个经验模型进行了比较,该模型涉及中国三峡水库(TGR)沿线12个不同地点的VO。对于log K在5.18至6.63范围内的高疏水性化合物,观察到了差异,其中哈金斯模型得出的三峡水库中ΣPAH浓度(305,624 pg/L)大约比另一种方法(182,292 pg/L)高2倍。建立了16种碳多环芳烃PRCs的原位采样率(Rs, )与log K 之间的关系,以便随后计算log K ≤ 6.63的各种有机污染物的分析物采样率Rs (N)。

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