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Biodegradation of real petroleum wastewater by immobilized hyper phenol-tolerant strains of Bacillus cereus in a fluidized bed bioreactor

机译:固定化的高耐酚性芽孢杆菌在流化床生物反应器中对实际石油废水的生物降解

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摘要

Microbial bioremediation of petroleum wastewater by phenol-degrading-bacteria holds promise in circumventing the issue of petroleum-spill related pollution. Herein, biodegradation of petroleum wastewater samples collected from oil refinery site was carried out in a fluidized bed bioreactor by Ca-alginate immobilized biomass of phenol-degrading strains of Bacillus cereus (AKG1 MTCC9817 and AKG2 MTCC9818). Degradation performance of the system was evaluated by measuring the changes in chemical oxygen demand (COD) and level of phenolic compounds in the wastewater samples during the microbial treatment. The microbial treatment reduced initial COD level and concentration of phenolic compounds by 95 % or more, demonstrating the excellent efficacy of immobilized AKG1 and AKG2 strains in treating petroleum wastewater in continuous mode of operation. The present study demonstrates the potential of immobilized AKG1 and AKG2 in treating petroleum wastewater in fluidized bed bioreactors.
机译:通过苯酚降解细菌对石油废水进行微生物生物修复有望避免与石油泄漏有关的污染问题。在此,通过固定化蜡状芽孢杆菌的苯酚降解菌株(AKG1 MTCC9817和AKG2 MTCC9818)的藻酸钙固定化,在流化床生物反应器中对从炼油厂现场收集的石油废水样品进行生物降解。通过测量微生物处理过程中废水样品中化学需氧量(COD)和酚类化合物含量的变化来评估系统的降解性能。微生物处理将初始COD水平和酚类化合物的浓度降低了95%或更多,证明了固定化AKG1和AKG2菌株在连续操作模式下处理石油废水的出色功效。本研究表明固定化AKG1和AKG2在流化床生物反应器中处理石油废水的潜力。

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