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Application of bar adsorptive microextraction to determine trace organic micro-pollutants in environmental water matrices

机译:棒吸附微萃取法测定环境水基体中痕量有机微量污染物的应用

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The present work proposes the application of bar adsorptive micro-extraction (BA mu E) coated with an N-vinylpyrrolidone polymer (NVP) combined with micro-liquid desorption (200 mu L) followed by high-performance liquid chromatography with diode array detection (BA mu E(NVP)-mu LD/HPLC-DAD) for the determination of trace levels of emerging organic micro-pollutants in environmental water matrices. The model compounds selected include an antibacterial/antifungal agent (triclosan), two pharmaceuticals (carbamazepine and diclofenac) and two steroid hormones (17-ethinylestradiol and 17-estradiol), in which the latter three were recently included in the European Union watch list of substances to be monitored in the field of water policy. Assays performed on 25mL of ultrapure water samples spiked at the 8.0 mu g L-1 level yielded average recoveries ranging from 81.9 to 102.4% for the compounds studied using optimised experimental conditions. The proposed analytical methodology demonstrated suitable detection limits (0.02-0.10 mu g L-1) and good linear dynamic ranges (0.1-20.0 mu g L-1) with determination coefficients higher than 0.9909. Using the standard addition method (SAM), the present analytical approach was applied on environmental water matrices, including surface, sea, river and groundwaters. The proposed method proved to be a suitable and alternative sorption-based static micro-extraction technique for monitoring trace levels of organic micro-pollutants in environmental water matrices.
机译:本工作提出了应用N-乙烯基吡咯烷酮聚合物(NVP)涂层的棒状吸附微萃取(BA mu E)与微液体解吸(200μL)结合后进行高效液相色谱和二极管阵列检测的应用( BA mu E(NVP)-mu LD / HPLC-DAD用于测定环境水基质中痕量的新兴有机微污染物。选择的模型化合物包括抗菌/抗真菌药(三氯生),两种药物(卡马西平和双氯芬酸)和两种类固醇激素(17-乙炔雌二醇和17-雌二醇),最近这三类被列入欧盟观察名单。水政策领域中要监测的物质。使用优化的实验条件对所研究的化合物进行的25mL超纯水样品加标为8.0μgL-1浓度的平均回收率在81.9%至102.4%之间。拟议的分析方法论证明了合适的检测限(0.02-0.10μg L-1)和良好的线性动态范围(0.1-20.0μg L-1),测定系数高于0.9909。使用标准添加方法(SAM),本分析方法适用于环境水矩阵,包括地表,海洋,河流和地下水。该方法被证明是一种适用于监测环境水基质中痕量有机微量污染物的基于吸附的静态微萃取技术。

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