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首页> 外文期刊>Chemical Engineering Communications >Optimization of Process Conditions Using Response Surface Methodology (RSM) for Ethanol Production from Waste Cashew Apple Juice by Zymomonas Mobilis
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Optimization of Process Conditions Using Response Surface Methodology (RSM) for Ethanol Production from Waste Cashew Apple Juice by Zymomonas Mobilis

机译:Zymomonas Mobilis使用响应表面方法(RSM)从废腰果苹果汁生产乙醇的工艺条件的优化

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摘要

Ethanol has been known for a long time, being perhaps the oldest product obtained through traditional biotechnology. It is an attractive, sustainable energy source for fuel additives. Based on a four-level central composite design (CCD) involving the variables substrate composition (20-100%) X_1, pH (4.5-6.5) X_2, incubation temperature (28°-36°C) X_3, and fermentation time (12-60 h) X_4, a response surface methodology (RSM) for the production of ethanol using waste cashew apple juice as substrate by Zymomonas mobilis MTCC 090 was standardized. The design contains a total of 31 experimental trials with the first 16 organized in a fractional factorial design and 25 to 31 involving the replications of the central points. Data obtained from RSM on ethanol production were subjected to the analysis of variance (ANO VA) and analyzed using a second-order polynomial equation, which resulted in the optimized process conditions of 62% (v/v) as substrate concentration, pH of 5.5, temperature of 32°C, and fermentation time of 37h. Maximum ethanol concentration (12.64 g/L) was obtained at the optimized conditions in an anaerobic batch fermentation.
机译:乙醇早已众所周知,它可能是通过传统生物技术获得的最古老的产品。它是一种有吸引力的,可持续的燃料添加剂能源。基于四级中央复合设计(CCD),其中涉及变量底物组成(20-100%)X_1,pH(4.5-6.5)X_2,孵育温度(28°-36°C)X_3和发酵时间(12 -60 h)X_4,采用运动发酵单胞菌MTCC 090以腰果废苹果汁为底物生产乙醇的响应面方法(RSM)进行了标准化。该设计总共包含31个实验试验,前16个试验以分数阶乘设计进行组织,而25至31个试验涉及中心点的重复。从RSM获得的有关乙醇生产的数据经过方差分析(ANO VA),并使用二阶多项式方程式进行分析,得到的最佳工艺条件为底物浓度为62%(v / v),pH为5.5 ,温度32°C,发酵时间37h。在厌氧分批发酵的最佳条件下获得最大乙醇浓度(12.64 g / L)。

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