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Biodegradation of Remazol Black B in sequential microaerophilic-aerobic operations by NAR-2 bacterial consortium

机译:NAR-2细菌联合体在顺序微需氧-好氧操作中对Remazol Black B的生物降解

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摘要

The ability of the NAR-2 bacterial consortium, consisting of A1, C1, and L17, to degrade the azo dye model, Remazol Black B (RBB), was studied in an upflow packed-bed reactor for continuous sequential microaerophilic-aerobic batch operations. Continuous decolourisation was performed in a borosilicate glass column (12 mm 9 20 mm) packed with surfactant-modified clinoptilolite immobilised by the NAR-2 bacterial consortium. In column bioreactor studies, decolourisation was observed at 45 degrees C and was carried out by varying the flow rates and dye concentrations in a modified P5 medium with pH 7.0 under microaerophilic conditions. A decolourisation of 95.87 % of 0.1 g/L RBB was achieved at a flow rate of 0.2 mL/min under microaerophilic conditions by the immobilised NAR-2 bacterial consortium. An analysis of the decolourised and biodegradation products of the RBB using total aromatic amines showed that a reduction in the RBB resulted in the formation of aromatic amines. On further aerobic degradation for 15 days, the concentration of the amines dropped significantly, from an initial concentration of 34 to 11 mg/L, following the aerobic batch treatment experiment. The findings of this study showed that SMC can be a support material for bacterial cell immobilisation in a single upflow reactor with intermittent microaerophilic-aerobic operations, and it was found to be suitable and eco-friendly for the degradation of azo dyes.
机译:由A1,C1和L17组成的NAR-2细菌联合体降解偶氮染料模型Remazol Black B(RBB)的能力在上流式填充床反应器中进行,以进行连续连续的微需氧-好氧分批操作。在装有由NAR-2细菌联合体固定化的表面活性剂修饰的斜发沸石的硼硅酸盐玻璃柱(12 mm 9 20 mm)中进行连续脱色。在柱式生物反应器研究中,在45摄氏度下观察到脱色,这是通过在微需氧条件下,通过在pH 7.0的改良P5培养基中改变流速和染料浓度来进行的。固定的NAR-2细菌联合体在微需氧条件下以0.2 mL / min的流速实现了0.1g / L RBB的95.87%的脱色。使用总芳族胺对RBB的脱色和生物降解产物进行的分析表明,RBB的减少导致形成了芳族胺。在需氧分批处理实验后,进一步需氧降解15天后,胺的浓度从最初的34至11 mg / L显着下降。这项研究的结果表明,SMC可以作为细菌在单个上流式反应器中进行间歇性好氧-需氧操作的固定化支持材料,被发现对于偶氮染料的降解是合适的且对环境友好。

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