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Valorization of sugarcane bagasse for bioethanol production through simultaneous saccharification and fermentation: Optimization and kinetic studies

机译:通过同时糖化和发酵进行生物乙醇生产甘蔗甘蔗蛋白的储价:优化和动力学研究

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摘要

This study focuses on the valorization of sugarcane bagasse (SCB), which is a waste by-product from the sugar industry for ethanol production. A simultaneous saccharification and fermentation process was modelled and optimized. In addition, the kinetics of Saccharomyces cerevisiae cell growth and ethanol formation under the optimized conditions were assessed using the logistic and modified Gompertz models respectively. The response surface methodology (RSM) was used for the optimization with input parameters consisting of enzyme loading (20-100 U/g), temperature (30-50 degrees C) and yeast titre (1-5 times). A maximum bioethanol concentration of 4.88 g/L was observed under the optimal process conditions of 1 time (yeast titre), 100 U/g (enzyme loading) and 39 degrees C (temperature). The RSM model revealed that the enzyme loading parameter significantly affected bioethanol production. Kinetics of cell growth gave a maximum specific growth rate (mu(max)) of 0.15 h(-1) and a maximum cell biomass concentration (X-max) of 2.58 g/L. The modified Gompertz model showed a maximum bioethanol concentration (P-m) and maximum bioethanol production rate (r(p, m)) of 3.12 g/L and 0.29 g/L/h respectively. These findings demonstrated the potential of sugarcane waste valorization for biofuel production through SSF processes, and provided insights into process design for large scale operations.
机译:本研究重点介绍甘蔗甘蔗(SCB)的储价,这是来自糖工业的乙醇产业的废物副产品。建模和优化同时糖化和发酵过程。此外,使用逻辑和改性的Gompertz模型评估了在优化条件下进行了酿酒酵母细胞生长和乙醇形成的动力学。响应表面方法(RSM)用于优化与酶负载(20-100U / g),温度(30-50℃)和酵母滴度(1-5次)组成的输入参数。在1次(酵母滴度),100u / g(酶负载)和39℃(温度)的最佳过程条件下观察到最大生物乙醇浓度为4.88g / l。 RSM模型显示,酶负荷参数显着影响生物乙醇生产。细胞生长的动力学产生了0.15小时(-1)的最大比生长速率(MU(最多),最大细胞生物质浓度(X-MAX)为2.58g / L.改性的Gompertz模型显示出最大的生物乙醇浓度(P-M)和3.12g / L和0.29g / L / h的最大生物乙醇生产速率(R(p,m))。这些研究结果证明了通过SSF工艺进行生物燃料生产的甘蔗废料,并为大规模操作提供了过程设计的见解。

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