首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Determination of nonylphenol isomers in landfill leachate and municipal wastewater using steam distillation extraction coupled with comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry
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Determination of nonylphenol isomers in landfill leachate and municipal wastewater using steam distillation extraction coupled with comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry

机译:蒸汽蒸馏萃取-综合二维气相色谱/飞行时间质谱法测定垃圾渗滤液和市政废水中的壬基酚异构体

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摘要

4-Nonylphenols (4-NPs) are known endocrine disruptors and by-products of the microbial degradation of nonylphenol polyethoxylate surfactants. One of the challenges to understanding the toxic effects of nonylphenols is the large number of isomers that may exist in environmental samples. In order to attribute toxic effects to specific compounds, a method is needed for the separation and quantitation of individual nonylphenol isomers. The pre-concentration methods of solvent sublimation, solid-phase extraction or liquid-liquid extraction prior to chromatographic analysis can be problematic because of co-extraction of thousands of compounds typically found in complex matrices such as municipal wastewater or landfill leachate. In the present study, steam distillation extraction (SDE) was found to be an effective pre-concentration method for extraction of 4-NPs from leachate and wastewater, and comprehensive two-dimensional gas chromatography (GC × GC) coupled with fast mass spectral data acquisition by time-of-flight mass spectrometry (ToFMS) enhanced the resolution and identification of 4-NP isomers. Concentrations of eight 4-NP isomers were determined in leachate from landfill cells of different age and wastewater influent and effluent samples. 4-NP isomers were about 3 times more abundant in leachate from the younger cell than the older one, whereas concentrations in wastewater effluent were either below detection limits or <1% of influent concentrations. 4-NP isomer distribution patterns were found to have been altered following release to the environment. This is believed to reflect isomer-specific degradation and accumulation of 4-NPs in the aquatic environment.
机译:4-壬基酚(4-NP)是已知的内分泌干扰物和壬基酚聚乙氧基化物表面活性剂的微生物降解副产物。理解壬基酚的毒性影响的挑战之一是环境样品中可能存在大量异构体。为了将毒性作用归因于特定化合物,需要一种用于分离和定量单个壬基酚异构体的方法。在色谱分析之前进行溶剂升华,固相萃取或液-液萃取的预浓缩方法可能会出现问题,因为通常会萃取复杂基质中常见的数千种化合物,例如市政废水或垃圾填埋场渗滤液。在本研究中,发现蒸汽蒸馏萃取(SDE)是一种从渗滤液和废水中提取4-NP的有效预富集方法,并且采用综合二维气相色谱(GC×GC)和快速质谱数据通过飞行时间质谱(ToFMS)进行的质谱分析可以提高4-NP异构体的分离度和鉴定能力。从不同年龄的垃圾填埋场以及废水进水和出水样品中的渗滤液中确定了8种4-NP异构体的浓度。来自年轻细胞的沥滤液中4-NP异构体的含量大约是较老细胞的3倍,而废水流出物中的浓度要么低于检测极限,要么低于进水浓度的1%。发现释放到环境中后,4-NP异构体的分布模式已经改变。据信这反映了在水生环境中异构体特异性降解和4-NP的积累。

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