首页> 外文期刊>Journal of AOAC International >Miniaturized Temperature-Controlled Planar Chromatography (Micro-TLC) as a Versatile Technique for Fast Screening of Micropollutants and Biomarkers Derived from Surface Water Ecosystems and During Technological Processes of Wastewater Treatment
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Miniaturized Temperature-Controlled Planar Chromatography (Micro-TLC) as a Versatile Technique for Fast Screening of Micropollutants and Biomarkers Derived from Surface Water Ecosystems and During Technological Processes of Wastewater Treatment

机译:小型化温度控制平面色谱(Micro-TLC)作为快速筛选微量渗透剂和源自地表水生态系统的生物标志物的通用技术,以及在废水处理的技术过程中

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摘要

There is increasing interest in the development of simple analytical systems enabling the fast screening of target components in complex samples. A number of newly invented protocols are based on quasi separation techniques involving microfluidic paper-based analytical devices and/or micro total analysis systems. Under such conditions, the quantification of target components can be performed mainly due to selective detection. The main goal of this paper is to demonstrate that miniaturized planar chromatography has the capability to work as an efficient separation and quantification tool for the analysis of multiple targets within complex environmental samples isolated and concentrated using an optimized SPE method. In particular, we analyzed various samples collected from surface water ecosystems (lakes, rivers, and the Baltic Sea of Middle Pomerania in the northern part of Poland) in different seasons, as well as samples collected during key wastewater technological processes (originating from the "Jamno" wastewater treatment plant in Koszalin, Poland). We documented that the multiple detection of chromatographic spots on RP-18W microplates-under visible light, fluorescence, and fluorescence quenching conditions, and using the visualization reagent phosphomolybdic acid enables fast and robust sample classification. The presented data reveal that the proposed micro-TLC system is useful, inexpensive, and can be considered as a complementary method for the fast control of treated sewage water discharged by a municipal wastewater treatment plant, particularly for the detection of low molecular mass micropollutants with polarity ranging from estetrol to progesterone, as well as chlorophyll-related dyes. Due to the low consumption of mobile phases composed of water alcohol binary mixtures (less than 1 mL/run for the simultaneous separation of up to nine samples), this method can be considered an environmentally friendly and green chemistry analytical tool. The described analytical protocol can be complementary to those involving classical column chromatography (HPLC) or various planar microfluidic devices.
机译:对简单分析系统的发展越来越兴趣,可以快速筛选复杂样品中的目标组分。许多新发明的协议基于涉及基于微流体纸的分析装置和/或微量分析系统的准分离技术。在这种条件下,可以主要是由于选择性检测来进行靶分组分的定量。本文的主要目的是表明,小型化平面色谱法具有有效的分离和定量工具,用于使用优化的SPE方法分离和浓缩的复杂环境样品中的多个靶标的高效分离和定量工具。特别是,我们分析了在不同季节中从地表水生态系统(湖泊,河流和波兰人的波罗的海)中收集的各种样本,以及在关键废水技术过程中收集的样品(源自“)贾诺州“霍沙林,波兰的废水处理厂)。我们记录了RP-18W微孔板上的多次检测在可见光,荧光和荧光猝灭条件下,并使用可视化试剂磷钼酸使得能够快速且鲁棒的样品分类。所提出的数据表明,所提出的微型技术系统是有用的,便宜的,并且可以被认为是通过城市废水处理厂排出处理过的污水处理的互补方法,特别是用于检测低分子量微污染物极性从Estretrol到黄体酮以及叶绿素相关染料。由于含水醇二元混合物组成的流动阶段的低耗水量(小于1毫升/运行,同时分离九个样品),可以考虑这种方法是一种环保和绿色化学分析工具。所描述的分析方案可以与涉及经典柱色谱(HPLC)或各种平面微流体装置的分析方案互补。

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