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Micro-TLC Approach for Fast Screening of Environmental Samples Derived from Surface and Sewage Waters

机译:Micro-TLC方法可快速筛选地表水和污水中的环境样品

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摘要

In this work we demonstrated analytical capability of micro-planar (micro-TLC) technique comprising one and two-dimensional (2D) separation modes to generate fingerprints of environmental samples originated from sewage and ecosystems waters. We showed that elaborated separation and detection protocols are complementary to previously invented HPLC method based on temperature-dependent inclusion chromatography and UV-DAD detection. Presented 1D and 2D micro-TLC chromatograms of SPE (solid-phase extraction) extracts were optimized for fast and low-cost screening of water samples collected from lakes and rivers located in the area of Middle Pomerania in northern part of Poland. Moreover, we studied highly organic compounds loaded in the treated and untreated sewage waters obtained from municipal wastewater treatment plant “Jamno” near Koszalin City (Poland). Analyzed environmental samples contained number of substances characterized by polarity range from estetrol to progesterone as well as chlorophyll-related dyes previously isolated and pre-purified by simple SPE protocol involving C18 cartridges. Optimization of micro-TLC separation and quantification protocols of such samples were discussed from the practical point of view using simple separation efficiency criteria including total peaks number, log(product ΔhRF), signal intensity and peak asymmetry. Outcomes of the presented analytical approach, especially using detection involving direct fluorescence (UV366/Vis) and phosphomolybdic acid (PMA) visualization are compared with UV-DAD HPLC-generated data reported previously. Chemometric investigation based on principal components analysis revealed that SPE extracts separated by micro-TLC and detected under fluorescence and PMA visualization modes can be used for robust sample fingerprinting even after long-term storage of the extracts (up to 4 years) at subambient temperature (−20 °C). Such approach allows characterization of wide range of sample components that are present in given extract in high and middle concentration range. Due to protocol simplicity and low cost of analysis this method can be useful for preliminary sample screening.
机译:在这项工作中,我们展示了包含一维和二维(2D)分离模式的微平面(micro-TLC)技术的分析能力,可以生成源自污水和生态系统水的环境样品的指纹。我们表明,精心设计的分离和检测方案是对以前发明的基于温度依赖性夹杂物色谱和UV-DAD检测的HPLC方法的补充。对SPE(固相萃取)提取物的1D和2D微型TLC色谱图进行了优化,可快速,低成本地筛选从波兰北部中波美拉尼亚地区的湖泊和河流收集的水样。此外,我们研究了从科萨林市(波兰)附近的市政废水处理厂“ Jamno”获得的处理过的和未经处理的污水中装载的高度有机化合物。经分析的环境样品中含有数量众多的物质,其极性范围从雌甾醇到孕酮以及叶绿素相关的染料,以前通过涉及C18小柱的简单SPE规程进行了分离和预纯化。从实际的角度,使用简单的分离效率标准(包括总峰数,log(乘积ΔhRF),信号强度和峰不对称性),从实际角度讨论了此类样品的微TLC分离和定量方案的优化。所提出的分析方法的结果,尤其是使用涉及直接荧光(UV366 / Vis)和磷钼酸(PMA)可视化的检测结果,与先前报道的HPLC-UV-DAD数据进行了比较。基于主成分分析的化学计量学研究表明,即使将提取物长期保存在环境温度下(长达4年),通过微型TLC分离并在荧光和PMA可视化模式下检测到的SPE提取物也可以用于强大的样品指纹识别。 −20°C)。这种方法可以表征在给定提取物中存在的高浓度和中等浓度范围的各种样品成分。由于协议简单和分析成本低,该方法可用于初步样品筛选。

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