Water and Soil Quality Research Group, Department of Environmental Chemistry, IDAEA-CSIC, Barcelona, Spain.
Catalan Institute for Water Research (ICRA), Girona, Spain.
J Chromatogr A. 2014 Jul 25;1352:29-37. doi: 10.1016/j.chroma.2014.05.028. Epub 2014 May 17.
A novel fully automated method based on dual column switching using turbulent flow chromatography followed by liquid chromatography coupled to tandem mass spectrometry (TFC-LC-MS/MS) was applied for the determination of endocrine disruptors (EDCs) and related compounds in sediment and sewage sludge samples. This method allows the unequivocal identification and quantification of the most relevant environmental EDCs such as natural and synthetic estrogens and their conjugates, antimicrobials, parabens, bisphenol A (BPA), alkylphenolic compounds, benzotriazoles, and organophosphorus flame retardants, minimizing time of analysis and alleviating matrix effects. Applying this technique, after the extraction of the target compounds by pressurized liquid extraction (PLE), sediment and sewage sludge extracts were directly injected to the chromatographic system and the analytes were concentrated into the clean-up loading column. Using six-port switching system, the analytes were transferred to the analytical column for subsequent detection by MS-MS (QqQ). In order to optimize this multiplexing system, a comparative study employing six types of TurboFlow™ columns, with different chemical modifications, was performed to achieve the maximum retention of analytes and best elimination of matrix components. Using the optimized protocol low limits of quantification (LOQs) were obtained ranging from 0.0083 to 1.6 ng/g for sediment samples and from 0.10 to 125 ng/g for sewage sludge samples (except for alkylphenol monoethoxylate). The method was used to evaluate the presence and fate of target EDCs in the Ebro River which is the most important river in Spain with intensive agricultural and industrial activities in the basin that contribute to deteriorating soil and water quality.
一种新颖的全自动方法,基于双柱切换,使用湍流色谱,随后是液相色谱与串联质谱(TFC-LC-MS/MS),用于测定沉积物和污水污泥样品中的内分泌干扰物(EDCs)和相关化合物。该方法能够明确鉴定和定量最相关的环境 EDCs,如天然和合成雌激素及其共轭物、抗生素、对羟基苯甲酸酯、双酚 A(BPA)、烷基酚化合物、苯并三唑和有机磷阻燃剂,最大限度地减少分析时间并减轻基质效应。应用该技术,在通过加压液体萃取(PLE)提取目标化合物后,将沉积物和污水污泥提取物直接注入色谱系统,并将分析物浓缩到清洁加载柱中。使用六通切换系统,将分析物转移到分析柱中,随后通过 MS-MS(QqQ)进行检测。为了优化这种多重分析系统,进行了使用六种不同化学修饰的 TurboFlow™ 柱的比较研究,以实现分析物的最大保留和基质成分的最佳去除。使用优化的方案,可获得低定量限(LOQs),范围从 0.0083 到 1.6 ng/g 对于沉积物样品,从 0.10 到 125 ng/g 对于污水污泥样品(除了烷基酚单乙氧基化物)。该方法用于评估目标 EDCs 在埃布罗河中的存在和命运,埃布罗河是西班牙最重要的河流,流域内有密集的农业和工业活动,导致土壤和水质恶化。