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Optimization of o-Chlorophenol Biodegradation by Combined Mycelial Pellets Using Response Surface Methodology

机译:响应面法优化组合菌丝团对邻氯苯酚的生物降解

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摘要

In the present study, the immobilizing fermentation characteristics and o-chlorophenol biodegradation of Rhodopseudomonas palustris using mycelial pellets as a biomass carrier were investigated. To improve the o-chlorophenol degradation efficiency of the combined mycelial pellets, eight cultivation variables including glucose concentration, yeast extract concentration, spore inoculum size, pH, and agitation speed were optimized with an integrated strategy involving a combination of statistical designs. First, Plackett-Burman experiments identified glucose, yeast extract, and spore inoculum size as three statistically significant factors important for o-chlorophenol removal. Then, the steepest ascent method was used to access the optimal region of these significant factors. Finally, response surface methodology by Box-Behnken optimization was used to examine the mutual interactions among these three variables to determine their optimal levels. The ideal culture conditions for maximum o-chlorophenol removal according to a second-order polynomial model were as follows: 15.60 g/L glucose, 3.09 g/L yeast extract, and 9% (v/v) spore inoculum size, resulting in an expected o-chlorophenol removal rate of 92.60% with an o-chlorophenol initial concentration of 50 mg/L and 96-h culture time. The correlation coefficient (R-2 = 0.9933) indicated excellent agreement between the experimental and predicted values, whereas a fair association was observed between the predicted model values and those obtained from subsequent experimentation at the optimized conditions.
机译:在本研究中,研究了以菌丝沉淀为生物质载体的拟南芥的固定化发酵特性和邻氯苯酚的生物降解作用。为了提高组合菌丝体颗粒的邻氯苯酚降解效率,采用了涉及统计学设计的综合策略,优化了八个培养变量,包括葡萄糖浓度,酵母提取物浓度,孢子接种物大小,pH和搅拌速度。首先,Plackett-Burman实验将葡萄糖,酵母提取物和孢子接种物的大小确定为对去除邻氯苯酚很重要的三个统计学上重要的因素。然后,使用最陡峭的上升方法来访问这些重要因素的最佳区域。最后,采用Box-Behnken优化方法的响应面方法研究了这三个变量之间的相互影响,以确定它们的最佳水平。根据二阶多项式模型,最大去除邻氯苯酚的理想培养条件如下:15.60 g / L葡萄糖,3.09 g / L酵母提取物和9%(v / v)孢子接种物大小,产生了预期的邻氯苯酚去除率为92.60%,邻氯苯酚初始浓度为50 mg / L,培养时间为96小时。相关系数(R-2 = 0.9933)表明实验值和预测值之间具有极好的一致性,而在优化条件下,预测模型值与随后的实验获得的模型值之间存在公平关联。

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