Dabrin A, Ghestem J-P, Uher E, Gonzalez J-L, Allan I J, Schintu M, Montero N, Balaam J, Peinerud E, Miège C, Coquery M
Irstea, UR MALY, Freshwater Systems, Ecology and Pollution Research Unit, 5 rue de la Doua, CS 70077, F-69626, Villeurbanne, France.
BRGM, 3 Avenue C. Guillemin, BP 36009, Orléans Cedex 2, France.
Environ Pollut. 2016 Jan;208(Pt B):299-308. doi: 10.1016/j.envpol.2015.08.049. Epub 2015 Nov 14.
Passive sampling devices (PS) are widely used for pollutant monitoring in water, but estimation of measurement uncertainties by PS has seldom been undertaken. The aim of this work was to identify key parameters governing PS measurements of metals and their dispersion. We report the results of an in situ intercomparison exercise on diffusive gradient in thin films (DGT) in surface waters. Interlaboratory uncertainties of time-weighted average (TWA) concentrations were satisfactory (from 28% to 112%) given the number of participating laboratories (10) and ultra-trace metal concentrations involved. Data dispersion of TWA concentrations was mainly explained by uncertainties generated during DGT handling and analytical procedure steps. We highlight that DGT handling is critical for metals such as Cd, Cr and Zn, implying that DGT assembly/dismantling should be performed in very clean conditions. Using a unique dataset, we demonstrated that DGT markedly lowered the LOQ in comparison to spot sampling and stressed the need for accurate data calculation.
被动采样装置(PS)广泛应用于水体污染物监测,但很少有人对PS测量的不确定性进行评估。这项工作的目的是确定影响金属PS测量及其分散性的关键参数。我们报告了一项地表水薄膜扩散梯度(DGT)原位比对实验的结果。考虑到参与实验室的数量(10个)和所涉及的超痕量金属浓度,时间加权平均(TWA)浓度的实验室间不确定度是令人满意的(28%至112%)。TWA浓度的数据分散主要是由DGT处理和分析程序步骤中产生的不确定度所导致的。我们强调,DGT处理对于镉、铬和锌等金属至关重要,这意味着DGT的组装/拆卸应在非常清洁的条件下进行。通过一个独特的数据集,我们证明与现场采样相比,DGT显著降低了检测限,并强调了准确数据计算的必要性。