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首页> 外文期刊>International Biodeterioration & Biodegradation >Microaerophilic degradation of sulphonated azo dye - Reactive Red 195 by bacterial consortium AR1 through co-metabolism
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Microaerophilic degradation of sulphonated azo dye - Reactive Red 195 by bacterial consortium AR1 through co-metabolism

机译:细菌财团AR1通过共代谢将磺化偶氮染料微需氧降解-活性红195

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摘要

The textile and dye industries are considered as one of the foremost sectors that pollutes environment. Technologies employing biological methods showed promising approach to remediate sites polluted with dye and dye intermediates. Bacterial consortium AR1 developed through culture enrichment method was comprised of four distinct bacterial strains. The synergistic metabolic activities of AR1 led to complete decolourization of monoazo dye Reactive Red 195 within 14 h under microaerophilic environment. The co-metabolic decolourization of Reactive Red 195 by consortium, in presence of maltose and proteose peptone (0.1%, w/v, each) in minimal medium, easily reduced Reactive Red 195 (100 mg/L) for five consecutive cycles without any replenishment of nutrient. The maximum decolourization was observed at pH 8.0 and 40 degrees C. The consortium was acclimatized to decolourize Reactive Red 195 at higher concentration (2000 mg/L) even under high salt concentration (1 M NaCl). Consortium exhibited broad substrate specificity where it decolourized 15 structurally different dyes and more than 50% decolourization was observed in a medium containing mixture of dyes. The degradation products analyzed using FTIR, HPTLC and H-1 NMR revealed the formation of 2-amino-naphthalene, 1-amino-benzene and 1-nitro-benzene. Thus the ability of bacterial consortium for simultaneous decolourization and degradation of azo compounds signifies its potential application in dye remediation
机译:纺织和染料工业被认为是污染环境的最重要部门之一。采用生物方法的技术显示出有希望的方法来修复被染料和染料中间体污染的位点。通过培养富集方法开发的细菌联盟AR1由四个不同的细菌菌株组成。在微需氧环境下,AR1的协同代谢活性导致单偶氮染料Reactive Red 195完全脱色。麦芽糖和蛋白ose(0.1%,w / v,每种)在最小培养基中存在时,财团对活性红195的代谢进行了脱色,连续五个循环轻松还原了活性红195(100 mg / L)营养补充。在pH 8.0和40摄氏度下观察到最大的脱色。财团已适应高浓度(2000 mg / L)的活性红195的脱色,即使在高盐浓度(1 M NaCl)下也是如此。财团表现出广泛的底物特异性,其中它使15种结构上不同的染料脱色,并且在含有染料混合物的介质中观察到超过50%的脱色。使用FTIR,HPTLC和H-1 NMR分析降解产物,发现形成了2-氨基萘,1-氨基苯和1-硝基苯。因此,细菌财团具有同时脱色和降解偶氮化合物的能力,标志着其在染料修复中的潜在应用。

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