Charriau Adeline, Lissalde Sophie, Poulier Gaëlle, Mazzella Nicolas, Buzier Rémy, Guibaud Gilles
Groupement de Recherche Eau Sol Environnement (GRESE), Faculté des Sciences et Techniques - Université de Limoges, 123 Avenue Albert Thomas, 87060 Limoges Cedex, France.
Groupement de Recherche Eau Sol Environnement (GRESE), Faculté des Sciences et Techniques - Université de Limoges, 123 Avenue Albert Thomas, 87060 Limoges Cedex, France; Unité de recherche EABX, Groupement Irstea de Bordeaux, 50 Avenue de Verdun, Gazinet, 33612 Cestas Cedex, France.
Talanta. 2016 Feb 1;148:556-71. doi: 10.1016/j.talanta.2015.06.064. Epub 2015 Jul 13.
The passive sampler Chemcatcher(®), which was developed in 2000, can be adapted for various types of water contaminants (e.g., trace metals, polycyclic aromatic hydrocarbons, pesticides and pharmaceutical residues) depending on the materials chosen for the receiving phase and the membrane. The Chemcatcher(®) has been used in numerous research articles in both laboratory experiments and field exposures, and here we review the state-of-the-art in applying this passive sampler. Part A of this review covers (1) the theory upon which the sampler is based (i.e., brief theory, calculation of water concentration, Performance and Reference Compounds), (2) the preparation of the device (i.e., sampler design, choice of the membrane and disk, mounting of the tool), and (3) calibration procedures (i.e., design of the calibration tank, tested parameters, sampling rates).
被动式采样器Chemcatcher(®)于2000年研发,根据接收相和膜所选用的材料,可适用于各种类型的水中污染物(如痕量金属、多环芳烃、农药和药物残留)。Chemcatcher(®)已在众多实验室实验和现场暴露的研究文章中得到应用,在此我们综述了应用这种被动式采样器的最新技术。本综述的A部分涵盖:(1)采样器所基于的理论(即简要理论、水中浓度计算、性能和参比化合物);(2)装置的制备(即采样器设计、膜和盘的选择、工具的安装);以及(3)校准程序(即校准槽的设计、测试参数、采样率)。