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Aerobic Degradation of Trichloroethylene by Co-Metabolism Using Phenol and Gasoline as Growth Substrates

机译:以苯酚和汽油为生长底物通过共代谢代谢好氧降解三氯乙烯

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Trichloroethylene (TCE) is a common groundwater contaminant of toxic and carcinogenic concern. Aerobic co-metabolic processes are the predominant pathways for TCE complete degradation. In this study, Pseudomonas fluorescens was studied as the active microorganism to degrade TCE under aerobic condition by co-metabolic degradation using phenol and gasoline as growth substrates. Operating conditions influencing TCE degradation efficiency were optimized. TCE co-metabolic degradation rate reached the maximum of 80% under the optimized conditions of degradation time of 3 days, initial OD600 of microorganism culture of 0.14 (1.26 × 107 cell/mL), initial phenol concentration of 100 mg/L, initial TCE concentration of 0.1 mg/L, pH of 6.0, and salinity of 0.1%. The modified transformation capacity and transformation yield were 20 μg (TCE)/mg (biomass) and 5.1 μg (TCE)/mg (phenol), respectively. Addition of nutrient broth promoted TCE degradation with phenol as growth substrate. It was revealed that catechol 1,2-dioxygenase played an important role in TCE co-metabolism. The dechlorination of TCE was complete, and less chlorinated products were not detected at the end of the experiment. TCE could also be co-metabolized in the presence of gasoline; however, the degradation rate was not high (28%). When phenol was introduced into the system of TCE and gasoline, TCE and gasoline could be removed at substantial rates (up to 59% and 69%, respectively). This study provides a promising approach for the removal of combined pollution of TCE and gasoline.
机译:三氯乙烯(TCE)是常见的地下水污染物,具有毒性和致癌性。有氧代谢过程是TCE完全降解的主要途径。在这项研究中,以荧光假单胞菌为活性微生物,该生物利用苯酚和汽油作为生长底物,在有氧条件下通过共代谢降解来降解三氯乙烯。优化了影响TCE降解效率的操作条件。在3天的最佳降解条件下,微生物培养的初始OD 600 为0.14(1.26×10 7 细胞/ mL),苯酚初始浓度为100 mg / L,TCE初始浓度为0.1 mg / L,pH为6.0,盐度为0.1%。修饰的转化能力和转化产量分别为20μg(TCE)/ mg(生物质)和5.1μg(TCE)/ mg(苯酚)。营养肉汤的添加以苯酚为生长底物促进了三氯乙烯的降解。结果表明,儿茶酚1,2-双加氧酶在TCE共代谢中起重要作用。 TCE的脱氯完成,并且在实验结束时未检测到较少的氯化产物。 TCE也可以在汽油存在下共同代谢;但是,降解率不高(28%)。将苯酚引入三氯乙烯和汽油系统后,三氯乙烯和汽油的去除率很高(分别高达59%和69%)。这项研究为去除三氯乙烯和汽油的混合污染提供了一种有前途的方法。

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