有效生物降解苯酚的新型细菌联合体的形成

V. Dhanya
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引用次数: 0

摘要

苯酚是石油化工和农药工业废水中常见的有害污染物。由于苯酚具有高毒性和致癌性,因此需要对其进行适当处理,以减少其排放到环境中的危害。微生物联合降解苯酚是一种非常有前途的方法。本研究以三株分离菌为原料,研究了苯酚降解菌群的组成。采用土壤富集技术从洗涤剂污染土壤中分离到蜡样芽孢杆菌VCRC B540、蜡样芽孢杆菌BRL02-43和草藻杆菌科菌株CC11D,并进行16s rDNA序列分析鉴定。单个培养物在72 h内降解100 μl苯酚。该菌群在pH为7的条件下,对250 μl苯酚的降解效果良好,降解时间为48 h。利用傅里叶变换红外光谱(FT/IR)和气相色谱-质谱(GC-MS)对生物降解产物进行了分析。分析表明苯酚完全降解,生成苯二羧酸单(2-乙基己基)酯和乙烷1,2二氧基代谢中间体。在成本效益和消除二次污染方面,微生物辅助生物降解是一种潜在的方法。本研究确定了细菌联合体降解苯酚的效率。生物降解条件的优化和生物反应器的构建可进一步用于大规模工业应用。
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Formulation of a novel bacterial consortium for the effective biodegradation of phenol
Phenol is frequently present as the hazardous pollutant in petrochemical and pesticide industry wastewater. Because of its high toxicity and carcinogenic potential, a proper treatment is needed to reduce the hazards of phenol carrying effluent before being discharged into the environment. Phenol biodegradation with microbial consortium offers a very promising approach now a day’s. This study focused on the formulation of phenol degrading bacterial consortium with three bacterial isolates. The bacterial strains Bacillus cereus strain VCRC B540, Bacillus cereus strain BRL02-43 and Oxalobacteraceae strain CC11D were isolated from detergent contaminated soil by soil enrichment technique and was identified by 16s rDNA sequence analysis. Individual cultures were degrade 100 μl phenol in 72 hrs. The formulated bacterial consortium was very effective in degrading 250 μl of phenol at a pH 7 with in 48 hrs. The study further focused on the analysis of the products of biodegradation with Fourier Transform Infrared Spectroscopy (FT/IR) and Gas Chromatography-Mass Spectroscopy (GC-MS). The analysis showed the complete degradation of phenol and the production of Benzene di-carboxylic acid mono (2-ethylhexyl) ester and Ethane 1,2Diethoxyas metabolic intermediates. Biodegradation with the aid of microorganisms is a potential approach in terms of cost-effectiveness and elimination of secondary pollutions. The present study established the efficiency of bacterial consortium to degrade phenol. Optimization of biodegradation conditions and construction of a bioreactor can be further exploited for large scale industrial applications.
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