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高浓度苯酚降解菌Candida tropicalis Z-04的鉴定及其对苯酚降解条件的优化 被引量:10
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作者 周江亚 李娟 +1 位作者 于晓娟 蔡伟民 《环境污染与防治》 CAS CSCD 北大核心 2011年第2期12-17,22,共7页
从降解苯酚的好氧颗粒污泥中筛选出一株苯酚降解菌,该菌株最高可耐受2.0 g/L的苯酚。依据形态特征和内源转录间隔区(ITS)的核酸序列分析,将该菌株鉴定为热带假丝酵母菌(Candida tropicalis),并命名为Candida tropicalis Z-04。采用中心... 从降解苯酚的好氧颗粒污泥中筛选出一株苯酚降解菌,该菌株最高可耐受2.0 g/L的苯酚。依据形态特征和内源转录间隔区(ITS)的核酸序列分析,将该菌株鉴定为热带假丝酵母菌(Candida tropicalis),并命名为Candida tropicalis Z-04。采用中心复合设计(CCD)法对Candida tropicalis Z-04降解苯酚的条件进行合理设计,利用Design-Expert软件对试验数据进行分析,考察了各因素及其交互作用对苯酚降解率的影响,并得到苯酚最佳降解条件。结果表明,Candida tropicalis Z-04降解苯酚的最佳条件为:酵母提取物投加量0.41 g/L,苯酚初始质量浓度1.03 g/L,菌种投加量1.43%(体积分数),温度30.04℃。在此条件下苯酚的理论预测降解率可达到最大值99.10%。 展开更多
关键词 candida tropicalis z-04 苯酚 降解 优化
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Optimization of phenol degradation by Candida tropicalis Z-04 using Plackett-Burman design and response surface methodology 被引量:48
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作者 Jiangya Zhou Xiaojuan Yu Cong Ding Zhiping Wang Qianqian Zhou Hao Pao Weimin Ca 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2011年第1期22-30,共9页
Statistical experimental designs were used to optimize the process of phenol degradation by Candida tropicalis Z-04, isolated from phenol-degrading aerobic granules. The most important factors influencing phenol degra... Statistical experimental designs were used to optimize the process of phenol degradation by Candida tropicalis Z-04, isolated from phenol-degrading aerobic granules. The most important factors influencing phenol degradation (p 〈 0.05), as identified by a two-level Plackett-Burman design with 11 variables, were yeast extract, phenol, inoculum size, and temperature. Steepest ascent method was undertaken to determine the optimal regions of these four significant factors. Central composite design (CCD) and response surface analysis were adopted to further investigate the mutual interactions between these variables and to identify their optimal values that would generate maximum phenol degradation. The analysis results indicated that interactions between yeast extract and temperature, phenol and temperature, inocuhim size and temperature affected the response variable (phenol degradation) significantly. The predicted results showed that the maximum removal efficiency of phenol (99.10%) could be obtained under the optimum conditions of yeast extract 0.41 g/L, phenol 1.03 g/L, inoculum size 1.43% (V/V) and temperature 30.04℃. These predicted values were further verified by validation experiments. The excellent correlation between predicted and experimental values confirmed the validity and practicability of this statistical optimum strategy. This study indicated the excellent ability of C. tropicalis Z-04 in degrading high-strength phenol. Optimal conditions obtained in this experiment laid a solid foundation for further use of this microorganism in the treatment of highstrength phenol effluents. 展开更多
关键词 phenol degradation candida tropicalis z-04 OPTIMIZATION Plackett-Burman design response surface methodology
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