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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Chemical fingerprinting of petroleum biomarkers in biota samples using retention-time locking chromatography and multivariate analysis
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Chemical fingerprinting of petroleum biomarkers in biota samples using retention-time locking chromatography and multivariate analysis

机译:使用保留时间锁定色谱和多变量分析的生物群样品中石油生物标志物的化学指纹图谱

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This work was conducted to study a new Separation and evaluation approach for the chemical fingerprinting of petroleum biomarkers in biota samples. The final aim of this work was to study the correlation between the observed effects in the shore habitats (mussels and limpets) and one pollution source: the oil spill of the Prestige tanker. The method combined a clean-up step of the biota extracts (mussels and limpets), the retention-time locking of the gas chromatographic set up, and the multivariate data analysis of the chromatograms. For clean-up, solid-phase extraction and gel permeation chromatography were compared, and 5 g Florisil cartridges assured the lack of interfering compounds in the last extracts. In order to assure reproducible retention times and to avoid the realignment of the chromatograms, the retention-time locking feature of our gas chromatography-mass spectrometry (GC-MS) set up was used. Finally, in the case of multivariate analysis, the GC-MS chromatograms were treated, essentially by derivatization and by normalization, and all the chromatograms at m/z 191 (terpenes), m/z 217-218 (steranes and diasteranes) and m/z 231 (triaromatic steranes) were treated by means of principal component analysis. Furthermore, slightly different four oil samples from the Prestige oil spill were analyzed following the Nordtest method, and the GC-MS chromatograms were considered as the reference chemical fingerprints of the sources. In this sense, the correlation between the studied samples, including sediments and biota samples, and the source candidate was completed by means of a supervised pattern recognition method. As a result, the method proposed in this work was useful to identify the Prestige oil spill as the source of many of the analyzed samples. (c) 2007 Elsevier B.V. All rights reserved.
机译:开展这项工作以研究一种新的分离和评估方法,用于生物群样品中石油生物标志物的化学指纹分析。这项工作的最终目的是研究在海岸生境(贻贝和羽扇贝)中观察到的影响与一种污染源:Prestige油轮的溢油之间的相关性。该方法结合了生物群提取物(贻贝和衣壳)的净化步骤,气相色谱仪的保留时间锁定以及色谱图的多元数据分析。为了进行净化,比较了固相萃取和凝胶渗透色谱法,并使用5 g Florisil小柱确保了最后一次萃取物中没有干扰化合物。为了确保可重现的保留时间并避免色谱图重新对齐,我们使用了气相色谱-质谱(GC-MS)设置的保留时间锁定功能。最后,在进行多变量分析的情况下,基本上通过衍生化和归一化处理了GC-MS色谱图,并且所有m / z 191(萜烯),m / z 217-218(甾烷和非对映烷)和m通过主成分分析处理/ z 231(三芳族甾烷)。此外,按照Nordtest方法分析了来自Prestige溢油的略有不同的四个油样,并将GC-MS色谱图视为来源的参考化学指纹。从这个意义上说,研究样本(包括沉积物和生物群样本)与候选源之间的相关性是通过监督模式识别方法完成的。因此,这项工作中提出的方法对于识别作为许多分析样品来源的Prestige溢油很有用。 (c)2007 Elsevier B.V.保留所有权利。

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