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首页> 外文期刊>Water Environment Research >Decolorization of textile azo dye Novacron Red using bacterial monoculture and consortium: Response surface methodology optimization
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Decolorization of textile azo dye Novacron Red using bacterial monoculture and consortium: Response surface methodology optimization

机译:使用细菌单一栽培和联盟的纺织AZO染料Novacron Red的脱色:响应表面方法优化

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摘要

The present study was intended toward the optimization of a textile dye Novacron Red decolorization by single and mixed culture of Bacillus strains namely, B. firmus, B. filamentosus and B. subterraneus. Optimization of dye decolorization using Bacillus monocultures was conducted using central composite design. The maximum dye decolorization achieved under optimized conditions for B. firmus, B. filamentosus and B. subterraneus was 89.24%, 88.28% and 88.45%, respectively. The effect of various consortia of selected Bacillus strains on dye removal was evaluated by applying a mixture design. The best dye (100 mg/L) decolorization yield (84%) was achieved using the consortium of B. filamentosus and B. subetrraneus.The Fourier Transform Infrared Spectroscopy analyses confirmed biodegradation potential of the two Bacillus strains. The results highlighted the potential of mono- and co-cultures of Bacillus strains for application in textile wastewater treatment.Practitioner pointsNovel dye-decolorizing Bacillus strains were isolated from marine sediment.Optimization of decolorization was conducted using response surface methodology.Efficient decolorization of textile dye by Bacillus strains on mono- and co-cultures.The efficiency of the consortium B. filamentosus and B. subetrraneus on dye removal.
机译:本研究旨在通过芽孢杆菌菌株的单一和混合培养来优化纺织染料Nov克罗氏红抗沥青,即B. Filmus,B.Filmaticosus和B.底部。使用中央复合设计进行了使用芽孢杆菌单栽培的染料脱色的优化。在B. Filmus,B.Filmatensosus和B.底纤维的优化条件下实现的最大染料脱色分别为89.24%,88.28%和88.45%。通过施加混合物设计评价所选芽孢杆菌菌株各种组件对染料去除的影响。使用B.Filmatorosus和B.亚细胞的联盟实现最佳染料(100mg / L)脱色产率(84%)。傅里叶变换红外光谱分析分析了两种杆菌菌株的生物降解潜力。结果强调了芽孢杆菌菌株的单培养物的潜力,用于纺织废水处理。从海洋沉积物中分离出脱离脱色枯草芽孢杆菌菌株。使用响应表面方法进行脱色的优化。纺织染料的脱色性脱色由芽孢杆菌菌株对单体和共同培养物进行菌株。联盟B. Filmaticosus和B. subetrraneus的效率去除。

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