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首页> 外文期刊>Scientific reports. >Ecofriendly biodegradation of Reactive Black 5 by newly isolated Sterigmatomyces halophilus SSA1575, valued for textile azo dye wastewater processing and detoxification
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Ecofriendly biodegradation of Reactive Black 5 by newly isolated Sterigmatomyces halophilus SSA1575, valued for textile azo dye wastewater processing and detoxification

机译:Ecofriendly对反应性黑色5的生物降解,通过新孤立的菌株嗜烟菌SSA1575,有价值的纺织偶氮染料废水加工和排毒

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A total of seven yeast strains from 18 xylanolytic and/or xylose-fermenting yeast species isolated from the wood-feeding termite Reticulitermes chinenesis could efficiently decolorize various azo dyes under high-salt conditions. Of these strains, a novel and unique azo-degrading and halotolerant yeast, Sterigmatomyces halophilus SSA1575, has been investigated in this study. This strain could significantly decolorize four combinations of a mixture of dyes. It showed a high capability for decolorizing Reactive Black 5 (RB5) even at 1,500?mg L?1. The strain SSA1575 still showed a high capability for decolorizing a 50?mg L?1 RB5 with a salt mixing at a NaCl concentration of up to 80?g L?1. It also exhibited significant ability to decolorize repeated additions of dye aliquots, with a reduction in time of up to 18?h. Most of the tested carbon and nitrogen sources could significantly enhance a RB5 decolorization. However, this process was inhibited by the addition of sucrose and sodium nitrate. NADH-dichlorophenol indophenol (NADH-DCIP) reductase and lignin peroxidase were determined as the key reductase and oxidase of S. halophilus SSA1575. Finally, strain SSA1575, can effectively detoxify RB5 into non-toxic products. Overall, S. halophilus SSA1575, might be a promising halotolerant yeast valued for the treatment of various textile effluents with high salinity.
机译:从木材饲养的白蚁网状蛋白皮肤中分离的18个木聚糖和/或木糖 - 发酵酵母种类的总共七种酵母菌株可以在高盐条件下有效地脱色各种偶氮染料。在这项研究中,在这些菌株中,新颖和独特的偶氮降解和Halotolerant酵母,Stergmatomyces Halophilus SSA1575已经研究过。该菌株可以显着脱色染料混合物的四种组合。它表明,即使在1,500Ωmgl≤1中,也表明了脱色反应性黑5(RB5)的高能力。菌株SSA1575仍然显示出脱色50Ωmg的高能力,用盐混合在高达80Ω·g 1·1的NaCl浓度下混合。它还表现出显着的能力来脱色反复添加染料等分试样,其时间最高可达18μm。大多数测试的碳和氮源可显着增强RB5脱色。然而,通过添加蔗糖和硝酸钠来抑制该过程。将Nadh-二氯苯酚靛蓝醇(NADH-DCIP)还原酶和木质素过氧化物酶确定为SSA1575的核心还原酶和氧化酶。最后,菌株SSA1575可以有效地解毒RB5进入无毒产品。总体而言,S.Halophilus SSA1575可能是一种有前途的Halotolerant酵母,用于治疗具有高盐度的各种纺织品流出物。

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