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Biodegradation of Methyl tert-Butyl Ether by Co-Metabolism with a Pseudomonas sp. Strain

机译:与假单胞菌属共代谢代谢甲基叔丁基醚。应变

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摘要

Co-metabolic bioremediation is supposed to be an impressive and promising approach in the elimination technology of methyl tert-butyl ether (MTBE), which was found to be a common pollutant worldwide in the ground or underground water in recent years. In this paper, bacterial strain DZ13 (which can co-metabolically degrade MTBE) was isolated and named as Pseudomonas sp. DZ13 based on the result of 16S rRNA gene sequencing analysis. Strain DZ13 could grow on n-alkanes (C5-C8), accompanied with the co-metabolic degradation of MTBE. Diverse n-alkanes with different carbon number showed a significant influence on the degradation rate of MTBE and accumulation of tert-butyl alcohol (TBA). When Pseudomonas sp. DZ13 co-metabolically degraded MTBE with n-pentane as the growth substrate, a higher MTBE-degrading rate (Vmax = 38.1 nmol/min/mgprotein, Ks = 6.8 mmol/L) and lower TBA-accumulation was observed. In the continuous degradation experiment, the removal efficiency of MTBE by Pseudomonas sp. Strain DZ13 did not show an obvious decrease after five times of continuous addition.
机译:在甲基叔丁基醚(MTBE)的消除技术中,协同代谢生物修复被认为是一种令人印象深刻且很有前途的方法,而甲基叔丁基醚(MTBE)是近年来在全世界地下水或地下水中常见的污染物。在本文中,分离出可协同代谢降解MTBE的细菌菌株DZ13,并将其命名为Pseudomonas sp。 DZ13基于16S rRNA基因测序结果。 DZ13菌株可以在正构烷烃(C5-C8)上生长,并伴随MTBE的代谢分解。不同碳原子数的不同正构烷烃对MTBE的降解速率和叔丁醇(TBA)的积累有显着影响。当假单胞菌sp。 DZ13以正戊烷为生长底物共代谢降解了MTBE,观察到更高的MTBE降解速率(Vmax = 38.1 nmol / min / mg蛋白,Ks = 6.8 mmol / L)和更低的TBA积累。在连续降解实验中,假单胞菌(Pseudomonas sp。)去除MTBE的效率。连续添加五次后,菌株DZ13没有显示出明显的下降。

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