首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Aerobic decolorization, degradation and detoxification of azo dyes by a newly isolated salt-tolerant yeast Scheffersomyces spartinae TLHS-SF1
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Aerobic decolorization, degradation and detoxification of azo dyes by a newly isolated salt-tolerant yeast Scheffersomyces spartinae TLHS-SF1

机译:新分离的耐盐酵母斯巴氏酵母TLHS-SF1对偶氮染料的需氧脱色,降解和解毒

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Isolation, identification and characterization of a salt-tolerant yeast capable of degrading and detoxifying azo dyes were investigated in this study. Possible degradation pathway of Acid Scarlet 3R was proposed through analyzing metabolic intermediates using UV-Vis and HPLC-MS methods. Furthermore, the Microtox test was performed to evaluate the acute toxicity of the dye before and after biodegradation. The results showed that a salt-tolerant yeast named TLHS-SF1 was isolated and identified as Scheffersomyces spartinae basing on 26S rDNA analysis. The optimal decolorization and growth parameters were: sucrose 2 g L-1, (NH4)(2)SO4 0.6 g L-1, yeast extract 0.08 g L-1, NaCl <= 30 g L-1, 160 r min(-1), 30 degrees C and pH 5.0-6.0. More than 90% of 80 mg L-1 3R could be decolorized within 16 h under the optimal conditions. 3R was possibly degraded successively through azo-reduction, deamination and desulfonation pathways, and its acute toxicity obviously decreased by strain TLHS-SF1. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究研究了能够降解和解毒偶氮染料的耐盐酵母的分离,鉴定和表征。通过使用UV-Vis和HPLC-MS方法分析代谢中间体,提出了酸性猩红3R可能的降解途径。此外,进行了Microtox测试以评估染料在生物降解之前和之后的急性毒性。结果显示,基于26S rDNA分析,分离出了耐盐酵母TLHS-SF1,并将其鉴定为斯巴夫菌。最佳的脱色和生长参数为:蔗糖2 g L-1,(NH4)(2)SO4 0.6 g L-1,酵母提取物0.08 g L-1,NaCl <= 30 g L-1、160 r min(- 1),30摄氏度和pH 5.0-6.0。在最佳条件下,可在16小时内将90 mg以上的L-1 3R的90%以上脱色。 3R可能通过偶氮还原,脱氨和脱磺途径依次降解,TLHS-SF1菌株明显降低了其急性毒性。 (C)2015 Elsevier Ltd.保留所有权利。

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