Department of Environmental Analysis, Faculty of Chemistry, University of Gdansk, ul. Wita Stwosza 63, Gdansk 80-308, Poland.
Department of Environmental Analysis, Faculty of Chemistry, University of Gdansk, ul. Wita Stwosza 63, Gdansk 80-308, Poland.
J Environ Sci (China). 2021 Mar;101:413-427. doi: 10.1016/j.jes.2020.08.034. Epub 2020 Sep 17.
Passive techniques are a constantly evolving approach to the long-term monitoring of micropollutants, including pharmaceuticals, in the aquatic environment. This paper presents, for the first time, the calibration results of a new CNTs-PSDs (carbon nanotubes used as a sorbent in passive sampling devices) with an examination of the effect of donor phase salinity, water pH and the concentration of dissolved humic acids (DHAs), using both ultrapure and environmental waters. Sampling rates (R) were determined for the developed kinetic samplers. It has been observed that the impact of the examined environmental factors on the R values strictly depends on the type of the analytes. In the case of β-blockers, the only environmental parameter affecting their uptake rate was the salinity of water. A certain relationship was noted, namely the higher the salt concentration in water, the lower the R values of β-blockers. In the case of sulfonamides, water salinity, water pH 7-9 and DHAs concentration decreased the uptake rate of these compounds by CNTs-PSDs. The determined R values differed in particular when the values obtained from the experiments carried out using ultrapure water and environmental waters were compared. The general conclusion is that the calibration of novel CNTs-PSDs should be carried out under physicochemical conditions of the aquatic phase that are similar to the environmental matrix.
被动采样技术是一种不断发展的方法,用于长期监测水生环境中的微量污染物,包括药物。本文首次介绍了一种新型 CNTs-PSDs(碳纳米管作为被动采样器中的吸附剂)的校准结果,研究了供体相盐度、水 pH 值和溶解腐殖酸(DHAs)浓度对 CNTs-PSDs 的影响,同时使用了超纯水和环境水。确定了所开发的动力学采样器的采样速率(R)。结果表明,所研究的环境因素对 R 值的影响严格取决于分析物的类型。对于β-受体阻滞剂,唯一影响其摄取速率的环境参数是水的盐度。注意到了某种关系,即水中盐浓度越高,β-受体阻滞剂的 R 值越低。对于磺胺类药物,水的盐度、pH 值为 7-9 和 DHAs 浓度降低了 CNTs-PSDs 对这些化合物的摄取速率。在比较使用超纯水和环境水进行实验所获得的 R 值时,确定的 R 值存在差异。总的来说,新型 CNTs-PSDs 的校准应在与环境基质相似的水相物理化学条件下进行。