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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Ultra-preconcentration and determination of selected pharmaceutical and personal care products in different water matrices by solid-phase extraction combined with dispersive liquid-liquid microextraction prior to ultra high pressure liquid chromatography tandem mass spectrometry analysis
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Ultra-preconcentration and determination of selected pharmaceutical and personal care products in different water matrices by solid-phase extraction combined with dispersive liquid-liquid microextraction prior to ultra high pressure liquid chromatography tandem mass spectrometry analysis

机译:在超高压液相色谱串联质谱分析之前,通过固相萃取与分散液-液微萃取相结合,对不同水基质中的精选药物和个人护理产品进行超浓缩和测定

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摘要

Pharmaceutical and personal care products (PPCPs) are one of the most important classes of emerging contaminants. The potential of ecological and environmental impacts associated with PPCPs are of particular concern because they continually penetrate the aquatic environment. This work describes a novel ultra-preconcentration technique for the rapid and highly sensitive analysis of selected PPCPs in environmental water matrices at ppt levels. Selected PPCPs were rapidly extracted and concentrated from large volumes of aqueous solutions (500 and 250 mL) by solid-phase extraction combined with dispersive liquid-liquid microextraction (SPE-DLLME) and then analyzed using UHPLC-MS/MS. Experimental parameters were carefully investigated and optimized to achieve the best SPE-DLLME efficiency and higher enrichment factors. The best results were obtained using the ternary mixture acetonitrile/methanol/dichloromethane 3:3:4, v/v/v, both as SPE eluent and DLLME extractant/dispersive mixture. DLLME aqueous solution (5% NaCl, 10mgL~(-1) TBAB) was also modified to improve the extraction efficiency of more hydrophilic PPCPs. Under the optimal conditions, an exhaustive extraction for most of the investigated analytes (recoveries >70%), with a precision (RSD<10%) and very high enrichment factors were attained for different aqueous matrices (drinking, sea, river and wastewater). Method detection and quantification limits were at very low ppt levels and below 1 and 3 ngL~(-1), respectively, for 15 of selected PPCPs. The proposed analytical procedure offers numerous advantages such as the simplicity of operation, rapidity, a high enrichment factor and sensitivity. So it is suitable for monitoring and studies of occurrence of PPCPs in different environmental compartments.
机译:药品和个人护理产品(PPCP)是新兴污染物中最重要的类别之一。与PPCP相关的生态和环境影响的潜力特别令人关注,因为它们不断渗透到水生环境中。这项工作描述了一种新颖的超浓缩技术,可对ppt级环境水基质中的选定PPCP进行快速和高度灵敏的分析。通过固相萃取结合分散液-液微萃取(SPE-DLLME),从大量水溶液(500和250 mL)中快速萃取并浓缩所选的PPCP,然后使用UHPLC-MS / MS进行分析。实验参数经过仔细研究和优化,以实现最佳的SPE-DLLME效率和更高的富集因子。使用乙腈/甲醇/二氯甲烷3:3:4(v / v / v)三元混合物作为SPE洗脱液和DLLME萃取剂/分散液混合物,可获得最佳结果。还对DLLME水溶液(5%NaCl,10mgL〜(-1)TBAB)进行了改性,以提高亲水性更强的PPCP的萃取效率。在最佳条件下,对于不同的水性基质(饮用水,海水,河流和废水),对大多数研究的分析物(回收率> 70%),精确度(RSD <10%)和非常高的富集因子都进行了详尽的萃取。 。对于15种选定的PPCP,方法检测和定量限分别在非常低的ppt水平和1和3 ngL〜(-1)以下。所提出的分析方法具有许多优点,例如操作简单,快速,富集因子高和灵敏度高。因此,它适用于监测和研究不同环境隔室中PPCP的发生。

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