首页> 外文会议>International symposium on environmental science and technology >Comprehensive Molecular Characterization of Organic Contaminants in Freshwater Sediments by Gas Chromatography/Mass Spectrometry and Liquid Chromatography/Time-of-Flight Mass Spectrometry
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Comprehensive Molecular Characterization of Organic Contaminants in Freshwater Sediments by Gas Chromatography/Mass Spectrometry and Liquid Chromatography/Time-of-Flight Mass Spectrometry

机译:气相色谱/质谱/质谱法综合分子表征淡水沉积物中有机污染物及液相色谱/飞行时间质谱法

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A complex scheme for a broad-spectrum molecular characterization of organic contaminants in polluted freshwater sediments has been developed. The extracts were prepared by an exhaustive accelerated solvent extraction procedure, covering both hydrophobic and polar organic contaminants. Before analysis using mass spectrometric techniques, including gas chromatography/mass spectrometry (GC/MS) and liquid chromatography/quadrupole time-of-flight mass spectrometry (LC-QToF), the extracts were fractionated into three distinct fractions on a silica gel column, involving sequential elution with hexane, dichloromethane and methanol as eluting solvents. The first two fractions, containing nonpolar and medium polar contaminants, respectively, were characterized by electron impact GC/MS, while LC-QToF was applied for the analysis of the polar contaminants contained in dichloromethane and methanol fractions. The developed analytical scheme was applied for the molecular characterization of contaminants in polluted freshwater sediments, collected in the area of the city of Zagreb, Croatia. The analyses showed a significant presence of classical non-polar contaminants such as petroleum hydrocarbons and polycyclic aromatic hydrocarbons however they also revealed the importance of some polar compound classes, which possess a hydrophobic moiety (surfactants and their metabolites, sterols, fatty acids). As expected, the results showed that polar contaminants lacking a hydrophobic moiety were much less abundant, but in some samples significant levels of highly polar pharmaceuticals were detected. The application of LC-QToF allowed a successful identification of several non-target organic contaminants of pharmaceutical origin using accurate mass determination, thorough data-base search and subsequent confirmation of tentatively identified compounds by comparison with corresponding reference compounds. The combination of GC/MS and LC-QToF techniques showed clear advantages over the single-technique approach in providing a much broader analytical window for identification of specific organic contaminants, which might be essential for a better ecotoxicological assessment of polluted freshwater sediments.
机译:用于在污染淡水沉积物有机污染物的广谱分子表征甲复杂的方案已被开发出来。通过详尽的制备将萃取加速溶剂萃取过程中,覆盖疏水性和极性的有机污染物。使用质谱技术,包括气相色谱/质谱(GC / MS)和液相色谱/时间飞行四极杆质谱(LC-QTOF)分析前,提取物分馏成三个不同的级分在硅胶柱,涉及用己烷,二氯甲烷和甲醇作为洗脱溶剂连续洗脱。前两个级分,将含有非极性和极性介质的污染物,分别通过电子碰撞GC / MS表征,而涂敷了用于包含在二氯甲烷和甲醇的级分的极性污染物的分析LC-QTOF。所开发的分析方案被应用于污染物在污染淡水沉积物的分子特征,在城市萨格勒布,克罗地亚的区域收集。分析结果显示经典的非极性污染物,例如石油烃和多环芳族烃的存在显著然而它们也暴露出一些极性化合物类,其具有疏水性部分(表面活性剂和它们的代谢物,甾醇,脂肪酸)的重要性。正如预期的那样,结果显示缺乏疏水部分极地污染物较丰富得多,但有些样品中检测到高极性的药品显著水平。 LC-QTOF的应用通过用相应的参考化合物相比允许使用精确的质量测定,彻底数据基搜索和初步确定化合物的事后确认药物来源的多个非目标的有机污染物的成功识别。 GC / MS和LC-QTOF技术的组合显示出超过在特定的有机污染物,这可能对污染淡水沉积物的一个更好的生态毒理学评估是必不可少的识别提供更广泛的分析窗口中的单技术方法明显的优点。

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