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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Aerobic Decolorization and Degradation of Acid Orange G (AOG) by Suspended Growing Cells and Immobilized Cells of a Yeast Strain Candida tropicalis TL-F1
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Aerobic Decolorization and Degradation of Acid Orange G (AOG) by Suspended Growing Cells and Immobilized Cells of a Yeast Strain Candida tropicalis TL-F1

机译:酵母菌株假丝酵母TL-F1的悬浮生长细胞和固定细胞对有氧脱色和酸性橙G的降解

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In this study, aerobic decolorization and degradation of azo dye Acid Orange G (AOG) by both suspended growing cells and immobilized cells of a yeast strain Candida tropicalis TL-F1 were studied. The effects of different parameters on decolorization of AOG by both growing suspended and immobilized strain TL-F1 were investigated. Furthermore, a possible decolorization mechanism of AOG was proposed through analyzing metabolic intermediates using UV-vis and high-performance liquid chromatography-mass spectrometry (HPLC-MS) methods. Strain TL-F1 could decolorize AOG in both liquid and solid mediums through degradation. The optimal conditions for decolorization with suspended growing cells of strain TL-F1 were as follows: 6-10 g/L sucrose, 5-7 g/L urea, ≥6 % (v/v) inoculation size, ≥160 rpm, 35-40 ℃, and pH 5.0-6.0; and those for immobilized cells, the conditions were as follows: 4-6 g/L glucose, 0.2-0.4 g/L urea, 6-10 g/L (wet cell pellets) inoculation size, ≥160 rpm, 35-40 ℃, and pH 5.0-7.0. Results of UV-vis scanning spectra suggested that AOG was decolorized through biodegradation, and the possible pathway was proposed through the results of HPLC-MS analysis and related literature. This is a systematic research on aerobic decolorization and degradation of AOG by both suspended and immobilized cells of a C. tropicalis strain.
机译:在这项研究中,研究了酵母菌株热带假丝酵母TL-F1的悬浮生长细胞和固定化细胞对偶氮染料酸性橙G(AOG)的需氧脱色和降解。研究了不同参数对悬浮和固定化菌株TL-F1对AOG脱色的影响。此外,通过使用UV-vis和高效液相色谱-质谱(HPLC-MS)方法分析代谢中间体,提出了一种可能的AOG脱色机理。菌株TL-F1可以通过降解使液体和固体介质中的AOG脱色。用悬浮的TL-F1菌株生长细胞脱色的最佳条件如下:6-10 g / L蔗糖,5-7 g / L尿素,≥6%(v / v)接种量,≥160rpm,35 -40℃,pH 5.0-6.0;对于固定化细胞,条件如下:接种量为4-6 g / L葡萄糖,0.2-0.4 g / L尿素,6-10 g / L(湿细胞沉淀)接种体积,≥160rpm,35-40℃ ,pH 5.0-7.0。紫外可见扫描光谱的结果表明,AOG通过生物降解而脱色,并且通过HPLC-MS分析和相关文献提出了可能的途径。这是关于热带念珠菌菌株的悬浮细胞和固定化细胞对有氧脱色和降解AOG的系统研究。

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