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二维气相色谱/质谱联用鉴定石油馏分中环芳烃能否更深入地揭示芳烃生物转化途径的细节?

Can two-dimensional gas chromatography/mass spectrometric identification of bicyclic aromatic acids in petroleum fractions help to reveal further details of aromatic hydrocarbon biotransformation pathways?

机构信息

Petroleum and Environmental Geochemistry Group, Biogeochemistry Research Centre, Plymouth University, Drake Circus, Plymouth, PL4 8AA, UK.

出版信息

Rapid Commun Mass Spectrom. 2014 May 15;28(9):1023-32. doi: 10.1002/rcm.6876.

Abstract

RATIONALE

The identification of key acid metabolites ('signature' metabolites) has allowed significant improvements to be made in our understanding of the biodegradation of petroleum hydrocarbons, in reservoir and in contaminated natural systems, such as aquifers and seawater. On this basis, anaerobic oxidation is now more widely accepted as one viable mechanism, for instance. However, identification of metabolites in the complex acid mixtures from petroleum degradation is challenging and would benefit from use of more highly resolving analytical methods.

METHODS

Comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry (GCxGC/TOFMS) with both nominal mass and accurate mass measurement was used to study the complex mixtures of aromatic acids (as methyl esters) in petroleum fractions.

RESULTS

Numerous mono- and di-aromatic acid isomers were identified in a commercial naphthenic acids fraction from petroleum and in an acids fraction from a biodegraded petroleum. In many instances, compounds were identified by comparison of mass spectral and retention time data with those of authentic compounds.

CONCLUSIONS

The identification of a variety of alkyl naphthalene carboxylic and alkanoic and alkyl tetralin carboxylic and alkanoic acids, plus identifications of a range of alkyl indane acids, provides further evidence for 'signature' metabolites of biodegradation of aromatic petroleum hydrocarbons. Identifications such as these now offer the prospect of better differentiation of metabolites of bacterial processes (e.g. aerobic, methanogenic, sulphate-reducing) in polar petroleum fractions.

摘要

原理

关键酸代谢物(“特征”代谢物)的鉴定使得我们对石油烃在储层和受污染的自然系统(如含水层和海水)中的生物降解有了更深入的了解。在此基础上,例如,现在更广泛地接受厌氧氧化是一种可行的机制。然而,在石油降解的复杂酸混合物中鉴定代谢物具有挑战性,并且受益于使用更具分辨率的分析方法。

方法

使用具有标称质量和精确质量测量的全面二维气相色谱/飞行时间质谱(GCxGC/TOFMS)研究石油馏分中芳香酸(作为甲酯)的复杂混合物。

结果

在石油的环烷酸馏分和生物降解的石油酸馏分中鉴定出许多单和二芳烃酸异构体。在许多情况下,通过将质谱和保留时间数据与纯化合物的数据进行比较来鉴定化合物。

结论

鉴定出各种烷基萘羧酸和烷酸以及烷基四氢萘羧酸和烷酸,加上鉴定出一系列烷基茚酸,为芳香石油烃生物降解的“特征”代谢物提供了进一步的证据。这些鉴定为更好地区分极地石油馏分中细菌过程(例如好氧、产甲烷、硫酸盐还原)的代谢物提供了前景。

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