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Molecularly imprinted polymer-liquid chromatography/fluorescence for the selective clean-up of hydroxylated polycyclic aromatic hydrocarbons in soils

机译:分子印迹聚合物-液相色谱/荧光法选择性清除土壤中的羟基化多环芳烃

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Hydroxylated polycyclic aromatic hydrocarbons (OH-PAHs), a group of metabolites produced during the biodegradation of PAHs by microorganisms, are known to be difficult to analyze from complex environmental or biological matrices. In the field of contaminated soils, where OH-PAHs are less studied, a new method was compared to a common method for the analysis of monohydroxylated PAH metabolites: 2-naphthol, 2-hydroxyfluorene, 9-phenanthrol and 1-hydroxypyrene. After optimizing the microwave assisted extraction (MAE) step, the obtained extracts, containing the OH-PAHs together with the corresponding PAHs, were purified by molecularly imprinted polymers (MIPs). MIPs showed an effective selectivity for the hydroxylated derivatives studied (and not for native PAHs), which allowed their identification and quantification by HPLC/FLD. By this method, good limits of detection (0.003a€“0.014 ??g ga?’1) and limits of quantification (0.010a€“0.044 ??g ga?’1) were achieved. On the other hand, following the common method, the sample extract was concentrated by evaporation, silylated, and analyzed by GC/MS. The new method was more sensitive for all OH-PAHs and the analysis showed fewer matrix effects due to the use of MIP clean-up. In the present work the advantages and disadvantages of the new method are shown, as well as the possible application to soil biodegradation studies.
机译:众所周知,羟基多环芳烃(OH-PAHs)是微生物在PAHs生物降解过程中产生的一组代谢物,很难从复杂的环境或生物基质中进行分析。在对OH-PAHs研究较少的受污染土壤领域,将一种新方法与分析单羟基化PAH代谢物的常用方法进行了比较:2-萘酚,2-羟基芴,9-菲咯啉和1-羟基py。在优化微波辅助提取(MAE)步骤之后,将获得的含有OH-PAH和相应的PAH的提取物通过分子印迹聚合物(MIP)进行纯化。 MIP对所研究的羟基化衍生物(而非天然PAH)显示出有效的选择性,从而可以通过HPLC / FLD对其进行鉴定和定量。通过这种方法,可以达到良好的检出限(0.003a€0.014 ?? g ga -1)和定量限(0.010a€0.044 g ga?-1)。另一方面,按照常规方法,将样品提取物通过蒸发浓缩,甲硅烷基化并通过GC / MS分析。该新方法对所有OH-PAHs更为敏感,并且由于使用MIP净化,分析显示出较少的基质效应。在目前的工作中,表明了该新方法的优缺点,以及在土壤生物降解研究中的可能应用。

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