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Biodegradation influence on alkylphenanthrenes in oils from Bongor Basin, SW Chad

机译:Bongor Basin,SW乍得油中油脂烷基苯的生物降解影响

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Oil samples from the Bongor Basin, SW Chad have been geochemically characterized to investigate the biodegradation influence on alkylphenanthrenes. Concentrations of C0-3-alkylphenanthrenes (C0-3Ps) increase markedly after level 6 biodegradation due to the removal of other vulnerable components, decrease sharply after level 7 biodegradation and approach to absence at level 8. Phenanthrene appears to have higher ability to resist biodegradation than C1-3Ps at certain biodegradation levels (≤level 7) due to demethylation, which has been inferred as a possible reaction process during biodegradation of the aromatic hydrocarbons. The enrichment of non-alkylated phenanthrene in biodegraded oils makes biodegradation assessment complicated on the basis of alkylphenanthrene distributions. Individual isomers in alkylphenanthrenes exhibit variable ability to resist biodegradation influence. While certain isomers do show higher ability to resist biodegradation than others, no uniform biodegradation sequence can be established. Meanwhile, the biodegradation susceptibility between hopanes and alkylphenanthrenes varies greatly in different samples. The biodegradation systematics of alkylphenanthrenes proves to be highly complex, which may be indicative of the multiple charges and mixing during biodegradation.
机译:来自Bongor盆地的石油样品,SW乍得已经着种地,以研究生物降解对烷基苯的影响。 C0-3-烷基苯的浓度在6级生物降解之后显着增加,由于除去其他脆弱的组分,在7级生物降解后急剧下降,并且在8水平的情况下缺席。菲蛋白似乎具有更高的抵抗生物降解能力由于去甲基化,在某些生物降解水平(≤LEVEL7)中的C1-3PS比在芳族烃的生物降解期间被推断为可能的反应过程。在生物降解的油中富含非烷基化菲的富集使得基于烷基苯蒽分布的生物降解评估。烷基苯树中的单独异构体表现出可变的能力来抵抗生物降解的影响。虽然某些异构体确实显示出比其他异构化更高的抗抗生物降解,但不能建立均匀的生物降解序列。同时,料斗和烷基苯体之间的生物降解敏感性在不同的样品中变化大大变化。烷基挥霍的生物降解系统被证明是高度络合物,其可以指示生物降解期间的多重电荷和混合。

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