响应面法优化大车前草过熟乳酸发酵工艺

Alao Adeyinka Idowu, Agarry Samuel Enahoro, Afolabi Tinuade Jolaade
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引用次数: 1

摘要

乳酸是许多制造业使用的基本化学物质。寻找廉价的生化原料和工艺是乳酸生产工业非常关注的问题。车前草是一种丰富的碳水化合物来源,但过度熟透的车前草由于不结实而被当作废物扔掉。研究了利用过熟大蕉作为生化原料,优化乳酸的生产。采用响应面法对过熟车前草产乳酸工艺进行了优化研究。车前草水解液初始pH为4.89,还原糖含量为166.05 g/l。研究了乳酸浓度对底物浓度(138.25 ~ 166.05 g/L)、初始pH(4 ~ 8)、发酵温度(30 ~ 50℃)和发酵时间(24 ~ 168 h) 4个因素的响应。乳酸浓度为123.50 ~ 163.00 g/l。乳酸产量的二阶二次多项式回归模型具有统计学意义[(P模型> F) < 0.0001];r2和调整后r2分别为0.9935和0.9896。在葡萄糖浓度为159.10 g/ L、pH为7.0℃、温度为42.3℃、时间为60 h时,乳酸产量为157.53 g/ L。过熟大蕉是生产乳酸的良好生化原料。
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Optimization of Lactic Acid Fermentation from Overriped Plantain Using Response Surface Methodology (RSM)
: Lactic acid is a building block chemical used by many manufacturing industries. The search for cheap biochemical feedstock and process is of great concern to lactic acid producing industries. Plantain is a rich source of carbohydrate but the overriped plantains are thrown away as waste because of their non-firmness. This study evaluates the utilization of overripe plantain as biochemical feedstock for optimum production of lactic acid. Optimization of lactic acid production with overriped plantain was studied using Response Surface Methodology. The initial pH and reducing sugar content of the plantain hydrolysate were 4.89 and 166.05 g/l respectively. The response of lactic acid concentration to four factors: substrate concentration (138.25 – 166.05 g/L), initial pH (4 – 8), fermentation temperature (30 – 50°C) and time (24 – 168 h) was studied. The lactic acid concentration ranged from 123.50 – 163.00 g/l. A statistically significant [( P model > F ) < 0.0001] second order quadratic polynomial regression model was obtained for lactic acid production; the R 2 and adjusted-R 2 were 0.9935 and 0.9896 respectively. Numerical optimization was used to obtain optimum lactic acid production (157.53 g/ L) at glucose concentration, pH, temperature and time of 159.10 g/l, 7.0, 42.3°C and 60 h respectively. Overriped plantain was a good biochemical feedstock for lactic acid production.
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