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Decolorization and biodegradation of reactive sulfonated azo dyes by a newly isolated Brevibacterium sp. strain VN-15

机译:新分离的短杆菌属细菌对活性磺化偶氮染料的脱色和生物降解。 VN-15株

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摘要

Azo dyes constitute the largest and most versatile class of synthetic dyes used in the textile, pharmaceutical, food and cosmetics industries and represent major components in wastewater from these industrial dying processes. Biological decolorization of azo dyes occurs efficiently under low oxygen to anaerobic conditions. However, this process results in the formation of toxic and carcinogenic amines that are resistant to further detoxification under low oxygen conditions. Moreover, the ability to detoxify these amines under aerobic conditions is not a wide spread metabolic activity. In this study we describe the use of Brevibacterium sp. strain VN-15, isolated from an activated sludge process of a textile company, for the sequential decolorization and detoxification of the azo dyes Reactive Yellow 107 (RY107), Reactive Black 5 (RB5), Reactive Red 198 (RR198) and Direct Blue 71 (DB71). Tyrosinase activity was observed during the biotreatment process suggesting the role of this enzyme in the decolorization and degradation process, but no-activity was observed for laccase and peroxidase. Toxicity, measured using Daphnia magna, was completely eliminated.
机译:偶氮染料构成了用于纺织,制药,食品和化妆品行业的最大和最通用的一类合成染料,并且代表了这些工业染色过程中废水的主要成分。在低氧至厌氧条件下,偶氮染料的生物脱色有效发生。但是,此过程导致形成有毒和致癌的胺类,这些胺类在低氧条件下可抵抗进一步的排毒。而且,在有氧条件下将这些胺解毒的能力并不是广泛传播的代谢活性。在这项研究中,我们描述了短杆菌属的使用。从纺织公司的活性污泥工艺中分离出的VN-15菌株,用于偶氮染料的顺序脱色和脱毒活性黄107(RY107),活性黑5(RB5),活性红198(RR198)和直接蓝71 (DB71)。在生物处理过程中观察到酪氨酸酶活性,表明该酶在脱色和降解过程中的作用,但漆酶和过氧化物酶未观察到活性。完全消除了使用水蚤(Daphnia magna)测量的毒性。

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