Biochemical degradation pathway of reactive blue 13 by Candida rugopelliculosa HXL-2

A strain HXL-2 from a lab-scale sequence batch reactor (SBR) was identified as Candida rugopelliculosa based on its physiological, biochemical characteristics, and 26S rDNA D1/D2 gene phylogenetic analysis. About 90% of the 50mg/L Reactive blue 13(RB13) was degraded in 48h after inoculation with str...

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Veröffentlicht in:International biodeterioration & biodegradation 2011-01, Vol.65 (1), p.135-141
Hauptverfasser: Liu, Xiuyan, Zhang, Ji, Jiang, Jiandong, Li, Rong, Xie, Zhengmiao, Li, Shunpeng
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Sprache:eng
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Zusammenfassung:A strain HXL-2 from a lab-scale sequence batch reactor (SBR) was identified as Candida rugopelliculosa based on its physiological, biochemical characteristics, and 26S rDNA D1/D2 gene phylogenetic analysis. About 90% of the 50mg/L Reactive blue 13(RB13) was degraded in 48h after inoculation with strain HXL-2. The optimum efficiency of pH on decolorization was obtained at pH 5.The optimum efficiency temperature of C. rugopelliculosa HXL-2 decolorization RB13 was obtained at 28°C. The color removal efficiency was obtained at 80.3% when the feed concentration reached 2000mg/L. We first detected naphthalene-like compound is produced as degradation intermediate after the cleavage of RB13 azo bond, detected 1-chloro-3-aniline- 2,4,6-triazine. We proposed degradation pathway of Reactive blue 13 by Candida sp and proved RB13 degradation pathway by Candida sp. has some difference from RB13 degradation pathway by Pseudomonas sp.
ISSN:0964-8305
1879-0208
DOI:10.1016/j.ibiod.2010.10.005