首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Application of Taguchi Design and Response Surface Methodology for Improving Conversion of Isoeugenol into Vanillin by Resting Cells of Psychrobacter sp. CSW4
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Application of Taguchi Design and Response Surface Methodology for Improving Conversion of Isoeugenol into Vanillin by Resting Cells of Psychrobacter sp. CSW4

机译:Taguchi设计和响应面方法学在通过精神杆菌属细胞静息细胞促进异丁香酚转化为香兰素中的应用。 CSW4

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摘要

For all industrial processes, modelling, optimisation and control are the keys to enhance productivity and ensure product quality. In the current study, the optimization of process parameters for improving the conversion of isoeugenol to vanillin by Psychrobacter sp. CSW4 was investigated by means of Taguchi approach and Box-Behnken statistical design under resting cell conditions. Taguchi design was employed for screening the significant variables in the bioconversion medium. Sequentially, Box-Behnken design experiments under Response Surface Methodology (RSM) was used for further optimization. Four factors (isoeugenol, NaCl, biomass and tween 80 initial concentrations), which have significant effects on vanillin yield, were selected from ten variables by Taguchi experimental design. With the regression coefficient analysis in the Box-Behnken design, a relationship between vanillin production and four significant variables was obtained, and the optimum levels of the four variables were as follows: initial isoeugenol concentration 6.5 g/L, initial tween 80 concentration 0.89 g/L, initial NaCl concentration 113.2 g/L and initial biomass concentration 6.27 g/L. Under these optimized conditions, the maximum predicted concentration of vanillin was 2.25 g/L. These optimized values of the factors were validated in a triplicate shaking flask study and an average of 2.19 g/L for vanillin, which corresponded to a molar yield 36.3%, after a 24 h bioconversion was obtained. The present work is the first one reporting the application of Taguchi design and Response surface methodology for optimizing bioconversion of isoeugenol into vanillin under resting cell conditions.
机译:对于所有工业过程,建模,优化和控制是提高生产率和确保产品质量的关键。在当前的研究中,优化工艺参数以提高Psychrobacter sp。转化异丁香酚向香兰素的转化。通过Taguchi方法和Box-Behnken统计设计在静止细胞条件下研究了CSW4。 Taguchi设计用于筛选生物转化培养基中的重要变量。顺序地,在响应表面方法论(RSM)下的Box-Behnken设计实验被用于进一步的优化。 Taguchi实验设计从十个变量中选择了四个对香兰素产量有重大影响的因素(异丁香酚,NaCl,生物量和吐温80的初始浓度)。通过Box-Behnken设计中的回归系数分析,获得了香兰素生产与四个显着变量之间的关系,并且四个变量的最佳水平如下:异丁香酚初始浓度为6.5 g / L,吐温80初始浓度为0.89 g / L,NaCl初始浓度113.2 g / L,生物质初始浓度6.27 g / L。在这些优化条件下,香草醛的最大预测浓度为2.25 g / L。在三次重复摇瓶研究中验证了这些因素的优化值,并且在进行24小时的生物转化后,香兰素的平均含量为2.19 g / L,相当于摩尔产率为36.3%。本工作是第一个报告Taguchi设计和Response surface方法在静止细胞条件下优化异丁香酚向香草醛生物转化的应用的研究。

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