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Enhancement of phenol degradation by free and immobilized mixed culture of Providencia stuartii PL4 and Pseudomonas aeruginosa PDM isolated from activated sludge

机译:通过自由和固定混合培养从活性污泥中分离的斯氏普罗维登斯菌PL4和铜绿假单胞菌PDM促进酚降解

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Biodegradation of phenol has been investigated using a bacterial consortium consisting of two bacterial isolates; one of them used for the first time in phenol biodegradation. This consortium was isolated from activated sludge and identified as Providencia stuartii PL4 and Pseudomonas aeruginosa PDM (accession numbers KY848366 and MF445102, respectively). The degradation of phenol by this consortium was optimal at pH 7 with using 1500 mg l(-1) ammonium chloride as a nitrogen source. Interestingly, after optimizing the biodegradation conditions, this consortium was able to degrade phenol completely up to 1500 mg l(-1) within 58 h. The immobilization of this consortium on various supporting materials indicated that polyvinyl alcohol (PVA)-alginate beads and polyurethane foam (PUF) were more suitable for biodegradation process. The freely suspended cells could degrade only 6% (150 mg l(-1)) of 2500 mg l(-1) phenol, whereas, the immobilized PVA-alginate beads and the immobilized PUF degraded this concentration completely within 120 h of incubation with degradation rates (q) 0.4839 and 0.5368 (1/h) respectively. Thus, the immobilized consortium of P. stuartii PL4 and P. aeruginosa PDM can be considered very promising in the treatment of effluents containing phenol.
机译:已经使用由两种细菌分离物组成的细菌联盟研究了苯酚的生物降解。其中一个首次用于苯酚生物降解。从活性污泥中分离出该财团,并将其鉴定为斯氏普罗维登斯氏菌PL4和铜绿假单胞菌PDM(分别为登录号KY848366和MF445102)。使用1500 mg l(-1)氯化铵作为氮源,在pH 7时该财团对苯酚的降解最佳。有趣的是,在优化生物降解条件后,该财团能够在58小时内完全降解苯酚,直至1500 mg l(-1)。该财团在各种支撑材料上的固定化表明聚乙烯醇(PVA)-海藻酸酯珠和聚氨酯泡沫(PUF)更适合于生物降解过程。自由悬浮的细胞只能降解6%(150 mg l(-1))2500 mg l(-1)苯酚,而固定化的PVA-藻酸盐珠和固定化的PUF则在孵育120小时内完全降解了该浓度。降解率(q)分别为0.4839和0.5368(1 / h)。因此,在处理含苯酚的废水中,斯图亚特氏假单胞菌PL4和铜绿假单胞菌PDM的固定联合体被认为非常有前途。

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