Martins de Barros Rachel, Rougerie Juliette, Guibal Robin, Lissalde Sophie, Buzier Rémy, Simon Stéphane, Guibaud Gilles
University of Limoges, E2Lim, 123 Avenue Albert Thomas, 87060 Limoges Cedex, France.
University of Limoges, E2Lim, 16 rue Atlantis, 87068 Limoges Cedex, France.
Environ Pollut. 2023 Apr 15;323:121257. doi: 10.1016/j.envpol.2023.121257. Epub 2023 Feb 22.
In this work, the performances of a Large Diffusive Gradients in Thin films (L-DGT, i.e., a DGT based on a Chemcatcher® holder with a 5-fold larger sampling area) were compared on-field with the conventional DGT and the Polar Organic Chemical Integrative Sampler (POCIS) for the monitoring of a wide range of organic contaminants (i.e., 65 pesticides and metabolites, 53 pharmaceuticals and 12 hormones). These three passive samplers were simultaneously deployed in four rivers during 14 days. Their performances were then evaluated according to their detection and quantification capacities and their physical robustness. The results obtained confirm the advantages of the L-DGT over the conventional DGT regarding its sensitivity but also its robustness during field deployment. The POCIS provides the higher sensitivity, allowing the detection of more organic compounds compared to the DGT and, to a lesser extent, the L-DGT. However, both L-DGT and DGT reduces the uncertainty on the determination of the time-weighted average concentrations (C), mainly due to the narrow range of variation of their calibration parameters. Indeed, for a given compound, C can vary up to only a 3-fold factor with DGT and L-DGT compared to a 2 to 10-fold factor (up to 50) with POCIS. Thus, the L-DGT appears to be more suitable than DGT in low-contaminated contexts, which require higher sensitivity, or than POCIS when a C determination is needed. For a qualitative evaluation however, the POCIS remains the most suitable passive sampler.
在本研究中,将薄膜大扩散梯度装置(L-DGT,即基于Chemcatcher®支架的DGT,采样面积大5倍)的性能与传统DGT和极性有机化学综合采样器(POCIS)进行了现场比较,以监测多种有机污染物(即65种农药和代谢物、53种药物和12种激素)。这三种被动采样器在四条河流中同时部署了14天。然后根据它们的检测和定量能力以及物理稳健性对其性能进行评估。获得的结果证实了L-DGT相对于传统DGT在灵敏度方面的优势,以及在现场部署期间的稳健性。POCIS具有更高的灵敏度,与DGT相比,能够检测到更多的有机化合物,与L-DGT相比,检测到的有机化合物数量也更多。然而,L-DGT和DGT都降低了时间加权平均浓度(C)测定的不确定性,这主要是由于它们校准参数的变化范围较窄。实际上,对于给定的化合物,与POCIS的2至10倍因子(高达50倍)相比,DGT和L-DGT的C变化最多仅为3倍因子。因此,在需要更高灵敏度的低污染环境中,L-DGT似乎比DGT更合适;而在需要测定C时,L-DGT比POCIS更合适。然而,对于定性评估,POCIS仍然是最合适的被动采样器。