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首页> 外文期刊>Advances in Bioscience and Biotechnology >Optimization of Mycelial Biomass Production in Submerged Culture Fermentation of Pleurotus flabellatus Using Response Surface Methodology
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Optimization of Mycelial Biomass Production in Submerged Culture Fermentation of Pleurotus flabellatus Using Response Surface Methodology

机译:响应面法优化平菇深层发酵菌丝的生物量生产。

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摘要

The factors selected to optimize the productivity of Pleurotus flabellatus biomass in 250ml working volume Erlenmeyer flask were agitation rate, initial pH value and incubation temperature. The central composite design was applied to study the significant factors and the interactions between the chosen factors, if present. The Design Expert software generated 20 runs. The optimized conditions obtained were as follows: the agitation rate of 129.8 rpm, incubation temperature at 27.8°C, and initial pH of 6.06. The optimized conditions tripled the productivity at the range of 980 - 1040 mg/litre/day compared to the initial rate productivity at 310 mg/litre/day. From the quadratic equation,the agitation rate, temperature and the interaction between agitation rate and temperature were found to be significant (p < 0.05). At optimum conditions, the experimental data supported the theoretical estimate.
机译:在250 ml工作量锥形瓶中优化平菇侧耳生物量生产力的选择因素是搅拌速率,初始pH值和孵育温度。中心综合设计用于研究重要因素和所选因素之间的相互作用(如果存在)。 Design Expert软件生成了20个运行。获得的优化条件如下:搅拌速度为129.8 rpm,孵育温度为27.8°C,初始pH为6.06。与最初的310 mg / L /天的生产率相比,优化的条件使980-1040 mg / L /天的生产率提高了三倍。根据二次方程,发现搅拌速率,温度以及搅拌速率与温度之间的相互作用显着(p <0.05)。在最佳条件下,实验数据支持理论估计。

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