Department of Chemical Engineering and Environmental Technology, School of Industrial Engineering, University of Valladolid, Dr. Mergelina, s/n, 47011, Valladolid, Spain; Department of Analytical Chemistry, Faculty of Sciences, University of Valladolid, Campus Miguel Delibes, Paseo de Belén 7, 47011, Valladolid, Spain; Institute of Sustainable Processes, Dr. Mergelina s/n, 47011, Valladolid, Spain.
Department of Chemical Engineering and Environmental Technology, School of Industrial Engineering, University of Valladolid, Dr. Mergelina, s/n, 47011, Valladolid, Spain; Department of Analytical Chemistry, Faculty of Sciences, University of Valladolid, Campus Miguel Delibes, Paseo de Belén 7, 47011, Valladolid, Spain.
Chemosphere. 2020 Nov;258:127273. doi: 10.1016/j.chemosphere.2020.127273. Epub 2020 Jun 4.
This work describes the design, optimization and validation of an analytical method for the simultaneous determination of 14 pharmaceuticals and personal care products (PPCPs) in sewage sludge. A thorough optimization of the sample pre-treatment was carried out. As a result, microwave-assisted extraction (MAE) was combined with an in-situ clean-up stage and a filtration step. A combination of MilliQ® water/MeOH 95:5 (v/v) adjusted to pH 9 turned out to be the optimal solvent mixture for extraction. The instrumental part of the method presents a significant novelty based on a fully automated sample preparation for the analysis of PPCPs. It consisted of a direct immersion solid phase microextraction followed by on-fiber derivatization, online coupled to gas chromatography - mass spectrometry (DI-SPME-On-fiber derivatization - GC-MS). An isotope dilution approach was used for quantifying, which conferred high reliability to the method. This methodology was validated for 10 compounds with good analytical performance, limit of detection below 20 ng g and absolute recovery in the range of 30-70% for most of the compounds. It supposes an ecological analytical alternative for many routine analysis laboratories around the world. The developed method was applied to different real samples generated in both a pilot-scale thermal hydrolysis treatment plant and an anaerobic digester operated in mesophilic conditions. Salicylic acid and naproxen were found at concentrations above 1000 ng g.
本工作描述了一种分析方法的设计、优化和验证,用于同时测定污水污泥中的 14 种药物和个人护理产品(PPCPs)。对样品预处理进行了彻底的优化。结果,微波辅助提取(MAE)与原位净化阶段和过滤步骤相结合。MilliQ®水/甲醇 95:5(v/v)的组合,调节至 pH 9,结果证明是提取的最佳溶剂混合物。该方法的仪器部分基于用于 PPCPs 分析的全自动样品制备,具有显著的新颖性。它由直接浸入固相微萃取(DI-SPME) followed 在线衍生化,与气相色谱-质谱联用(DI-SPME-在线衍生化-GC-MS)在线耦合。采用同位素稀释法进行定量,这为方法提供了高度的可靠性。该方法已针对 10 种化合物进行了验证,具有良好的分析性能,检出限低于 20 ng g,大多数化合物的绝对回收率在 30-70%范围内。它为世界各地的许多常规分析实验室提供了一种生态分析替代方法。该方法应用于在中温条件下运行的中试规模热水解处理厂和厌氧消化器中产生的不同实际样品。发现水杨酸和萘普生的浓度高于 1000 ng g。