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Biodegradation of phenol and m-cresol by mutated Candida tropicalis
Authors:Yan Jiang  Xun Cai  Di Wu  Nanqi Ren
Affiliation:1. State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.E-mail: yjiang@hit.edu.cn2. Department of Chemical Engineering, Daqing Oilfield Engineering Limited Company, Daqing 163712, China3. Sc,2. Department of Chemical Engineering, Daqing Oilfield Engineering Limited Company, Daqing 163712, China,2. Department of Chemical Engineering, Daqing Oilfield Engineering Limited Company, Daqing 163712, China and 1. State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.E-mail: yjiang@hit.edu.cn
Abstract:The phenol and m-cresol biodegradations were studied using the mutant strain CTM 2 obtained by the He-Ne laser irradiation on wild-type Candida tropicalis. The results showed that C. tropicalis exhibited the increased capacity of phenolic compounds degradation after laser irradiation. It could degrade 2600 mg/L phenol and 300 mg/L m-cresol by 5% inoculum concentration, respectively. In the dual-substrate biodegradation system, 0-500 mg/L phenol could accelerate m-cresol biodegradation, and 300 mg/L m-cresol could be completely utilized within 46 hr at the presence of 350 mg/L phenol. Besides, the maximum biodegradation of m-cresol could reach 350 mg/L with 80 mg/L phenol within 61 hr. Obviously, phenol, as a growth substrate, could promote CTM 2 to degrade m-cresol, and was always preferentially utilized as carbon source. Comparatively, low-concentration m-cresol could result in a great inhibition on phenol degradation. In addition, the kinetic behaviors of cell growth and substrate biodegradation were described by kinetic model proposed in our laboratory.
Keywords:biodegradation   the mutant strain CTM 2   phenol   m-cresol   kinetic
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