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极性有机化学整合采样器的校准和使用——批判性回顾。

Calibration and use of the polar organic chemical integrative sampler--a critical review.

机构信息

Norwegian Institute for Water Research, Oslo, Norway.

出版信息

Environ Toxicol Chem. 2012 Dec;31(12):2724-38. doi: 10.1002/etc.2011. Epub 2012 Oct 24.

Abstract

The implementation of strict environmental quality standards for polar organic priority pollutants poses a challenge for monitoring programs. The polar organic chemical integrative sampler (POCIS) may help to address the challenge of measuring low and fluctuating trace concentrations of such organic contaminants, offering significant advantages over traditional sampling. In the present review, the authors evaluate POCIS calibration methods and factors affecting sampling rates together with reported environmental applications. Over 300 compounds have been shown to accumulate in POCIS, including pesticides, pharmaceuticals, hormones, and industrial chemicals. Polar organic chemical integrative sampler extracts have been used for both chemical and biological analyses. Several different calibration methods have been described, which makes it difficult to directly compare sampling rates. In addition, despite the fact that some attempts to correlate sampling rates with the properties of target compounds such as log K(OW) have been met with varying success, an overall model that can predict uptake is lacking. Furthermore, temperature, water flow rates, salinity, pH, and fouling have all been shown to affect uptake; however, there is currently no robust method available for adjusting for these differences. Overall, POCIS has been applied to a wide range of sampling environments and scenarios and has been proven to be a useful screening tool. However, based on the existing literature, a more mechanistic approach is required to increase understanding and thus improve the quantitative nature of the measurements.

摘要

实施严格的极地有机优先污染物环境质量标准对监测计划构成挑战。极性有机化学综合采样器(POCIS)可能有助于解决测量此类有机污染物的痕量浓度低且波动的挑战,与传统采样相比具有显著优势。在本综述中,作者评估了 POCIS 的校准方法和影响采样速率的因素以及报告的环境应用。已经表明,超过 300 种化合物可以在 POCIS 中积累,包括农药、药物、激素和工业化学品。POCIS 提取物已用于化学和生物学分析。已经描述了几种不同的校准方法,这使得直接比较采样速率变得困难。此外,尽管已经尝试将采样速率与目标化合物的性质(如 log K(OW))相关联,但取得了不同程度的成功,但缺乏能够预测摄取的整体模型。此外,温度、水流速率、盐度、pH 值和污垢都会影响摄取;然而,目前尚无用于调整这些差异的稳健方法。总体而言,POCIS 已广泛应用于各种采样环境和场景,并且已被证明是一种有用的筛选工具。然而,根据现有文献,需要采用更具机制性的方法来提高理解,从而提高测量的定量性质。

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