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Study of biodegradation products from azo dyes in fungal degradation by capillary electrophoresis/electrospray mass spectrometry

机译:毛细管电泳/电喷雾质谱法研究偶氮染料在真菌降解中的生物降解产物

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摘要

Biodegradation products from four model sulfonated azo dyes Orange II, Acid Orange 8, Food Yellow 3, and 4-[(4-hydroxyphenyl)azo]-benzenesulfonic acid, sodium salt (4HABA), during fungal degradation were determined by capillary electrophoresis coupled with ion trap mass spectrometry (CE–MS) with electrospray ionization and a coaxial sheath flow interface. The development and optimization of this analytical method including the sheath liquid composition and flow rate, nebulizing gas flow rate, carrier electrolyte, and MS voltage are described herein. Detection of unknown biodegradation products was carried out under negative ion mode with base peak electrophorogram (BPE) or extractive ion electrophorogram (EIE) monitoring. A volatile ammonium acetate buffer (10 mM) without organic modifier and a shealth liquid made from 2-propanol and water (80:20, v/v) were suited for the separation and ESI interface. The sulfonated ion was the base peak for model azo dyes and their metabolites containing sulfonic group. Results showed that the tested azo dyes were degraded quickly in the culture of white rot fungus, Pleurotus ostreatus in 3 days with the major biodegradation products being 4-hydroxy-benzenesulfonic acid, 3-methyl-4-hydroxy-benzenesulfonic acid, benzenesulfonic acid, 1,2-naphthoquinone-6-sulfonic acid and 3-methyl-benzenesulfonic acid.
机译:通过毛细管电泳-质谱联用测定了四种模型磺化偶氮染料橙II,酸性橙8,食用黄3和4-[(4-羟基苯基)偶氮]-苯磺酸钠盐(4HABA)的生物降解产物。离子阱质谱(CE-MS),具有电喷雾电离和同轴鞘流接口。本文介绍了这种分析方法的开发和优化,包括鞘液组成和流速,雾化气体流速,载体电解质和MS电压。未知的生物降解产物的检测是在负离子模式下通过碱峰电泳图(BPE)或萃取离子电泳图(EIE)监控进行的。不含有机改性剂的挥发性乙酸铵缓冲液(10 mM)和由2-丙醇和水(80:20,v / v)制成的保健液适用于分离和ESI界面。磺化离子是模型偶氮染料及其含有磺酸基的代谢物的基峰。结果表明,所测试的偶氮染料在3天的白腐真菌平菇培养中迅速降解,主要的生物降解产物为4-羟基苯磺酸,3-甲基-4-羟基苯磺酸,苯磺酸, 1,2-萘醌-6-磺酸和3-甲基-苯磺酸。

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