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Microbial Degradation of Alkyl Carbazoles in Norman Wells Crude Oil

机译:诺曼威尔斯原油中烷基咔唑的微生物降解

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摘要

Norman Wells crude oil was fractionated by sequential alumina and silicic acid column chromatography methods. The resulting nitrogen-rich fraction was analyzed by gas chromatography-mass spectrometry and showed 26 alkyl (C1 to C5) carbazoles to be the predominant compounds. An oil-degrading mixed bacterial culture was enriched on carbazole to enhance its ability to degrade nitrogen heterocycles. This culture was used to inoculate a series of flasks of mineral medium and Norman Wells crude oil. Residual oil was recovered from these cultures after incubation at 25°C for various times. The nitrogen-rich fraction was analyzed by capillary gas chromatography, using a nitrogen-specific detector. Most of the C1-, C2-, and C3- carbazoles and one of the C4-isomers were degraded within 8 days. No further degradation occurred when incubation was extended to 28 days. The general order of susceptibility of the isomers to biodegradation was C1 > C2 > C3 > C4. The carbazole-enriched culture was still able to degrade n-alkanes, isoprenoids, aromatic hydrocarbons, and sulfur heterocycles in the crude soil.
机译:通过连续的氧化铝和硅酸柱色谱法对Norman Wells原油进行分馏。通过气相色谱-质谱法分析所得的富氮级分,并显示出26种烷基(C 1至C 5)咔唑是主要化合物。一种降解油的混合细菌培养物富含咔唑,以增强其降解氮杂环的能力。该培养物用于接种一系列矿物培养基和Norman Wells原油的烧瓶。在25°C下孵育不同时间后,从这些培养物中回收残留油。使用氮特异性检测器通过毛细管气相色谱法分析富氮级分。大多数C1-,C2-和C3-咔唑以及一种C4-异构体在8天内被降解。孵育时间延长至28天时,不再发生降解。异构体对生物降解的敏感性一般顺序为C1> C2> C3> C4。富含咔唑的培养物仍能够降解粗土壤中的正构烷烃,类异戊二烯,芳烃和硫杂环。

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