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首页> 外文期刊>Open Access Library Journal >Response Surface Methodology to Optimize Degradation on Phenol by &i&Pseudomonas stutzeri&/i& ZH-1
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Response Surface Methodology to Optimize Degradation on Phenol by &i&Pseudomonas stutzeri&/i& ZH-1

机译:响应表面方法通过&& pseudomonas stutzeri优化苯酚的降解。 ZH-1

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In order to obtain the optimal conditions for the degradation of phenol by Pseudomonas stutzeri ZH-1, based on the single factor experiment, the Box Behnken design test of Response Surface Method was used. Four variables of glucose concentration (0.4, 0.6, 0.8 g/L), inoculation concentration (3%, 5%, 7%), pH (6, 7, 8) and temperature (35°C, 37.5°C, 40°C) were used to identify the significant effects and interactions in the batch studies. A second order polynomial regression model, has been developed using the experimental data. The experimental values were in good agreement with the predicted values, and the correlation coefficient was found to be 0.9901. Optimum conditions of the variables for the growth of Pseudomonas stutzeri ZH-1 and for maximum biodegradation of phenol are glucose concentration (0.7 g/L), inoculation concentration 5%, pH = 7 and temperature 37°C with maximum phenol degradation rate of 89.62%.
机译:为了获得苯酚的劣化的最佳条件,基于单因素实验,使用了响应面法的盒子Behnken设计试验。葡萄糖浓度的四个变量(0.4,0.6,0.8g / L),接种浓度(3%,5%,7%),pH(6,7,8)和温度(35℃,37.5°C,40° c)用于鉴定批量研究中的显着效果和相互作用。已经使用实验数据开发了二阶多项式回归模型。实验值与预测值吻合良好,并且存在相关系数为0.9901。用于生长的变量的最佳条件假单胞菌符号ZH-1和最大生物降解的苯酚是葡萄糖浓度(0.7g / L),接种浓度5%,pH = 7和温度37℃,具有最大酚类降解率为89.62%。

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