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Identification of high-strength phenol degrading strain Candida tropicalis Z-04 and degradation condition optimization

Weimin Cai

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Abstract

A phenol-degrading strain,capable of tolerating high-strength phenol up to 2.0g/L,was isolated from phenol-degrading aerobic granules.According to its morphological and ITS gene analysis,the strain was identified as the genus Candida tropicalis,and was named Candida tropicalis Z-04.A Central Composite Design(CCD) was employed to optimize the phenol degrading conditions.The obtained experiments data were analyzed by Design-Expert software,base on which,the effect of influence factors and their interaction on phenol degradation efficiency were investigated.The results showed that the optimal degradation conditions were: yeast extract 0.41 g/L,phenol 1.03 g/L,inoculum size 1.43%(volume ratio) and temperature 30.04 ℃,and the maximum removal efficiency of phenol(99.10%) was obtained under the optimum conditions.

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What this paper is about

A phenol-degrading strain,capable of tolerating high-strength phenol up to 2.0g/L,was isolated from phenol-degrading aerobic granules.According to its morphological and ITS gene analysis,the strain was identified as the genus Candida tropicalis,and was named Candida tropicalis Z-04.A Central Composite Design(CCD) was employed to optimize the phenol degrading conditions.The obtained experiments data were analyzed by Design-Expert software,base on which,the effect of influence factors and their interaction on phenol degradation efficiency were investigated.The results showed that the optimal degradation conditions were: yeast extract 0.41 g/L,phenol 1.03 g/L,inoculum size 1.43%(volume ratio) and temperature 30.04 ℃,and the maximum removal efficiency of phenol(99.10%) was obtained under the optimum conditions.

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Available abstract

A phenol-degrading strain,capable of tolerating high-strength phenol up to 2.0g/L,was isolated from phenol-degrading aerobic granules.According to its morphological and ITS gene analysis,the strain was identified as the genus Candida tropicalis,and was named Candida tropicalis Z-04.A Central Composite Design(CCD) was employed to optimize the phenol degrading conditions.The obtained experiments data were analyzed by Design-Expert software,base on which,the effect of influence factors and their interaction on phenol degradation efficiency were investigated.The results showed that the optimal degradation conditions were: yeast extract 0.41 g/L,phenol 1.03 g/L,inoculum size 1.43%(volume ratio) and temperature 30.04 ℃,and the maximum removal efficiency of phenol(99.10%) was obtained under the optimum conditions.

Key concepts: Phenol, Candida tropicalis, Strain (injury), Degradation (telecommunications), Chemistry, Yeast, Chromatography, Biology

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