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采用絮凝性酿酒酵母在分批补料过程中进行酒精发酵。

Alcoholic fermentation with flocculant Saccharomyces cerevisiae in fed-batch process.

作者信息

Guidini Carla Zanella, Marquez Líbia Diniz Santos, de Almeida Silva Helisângela, de Resende Miriam Maria, Cardoso Vicelma Luiz, Ribeiro Eloízio Júlio

机构信息

Faculty of Chemical Engineering, Uberlândia Federal University, P.O. Box 593, Av. João Naves de Ávila, 2121, Campus Santa Mônica-Bloco 1K, 38400-902, Uberlândia, MG, Brazil.

出版信息

Appl Biochem Biotechnol. 2014 Feb;172(3):1623-38. doi: 10.1007/s12010-013-0646-8. Epub 2013 Nov 16.

Abstract

Studies have been conducted on selecting yeast strains for use in fermentation for ethanol production to improve the performance of industrial plants and decrease production costs. In this paper, we study alcoholic fermentation in a fed-batch process using a Saccharomyces cerevisiae yeast strain with flocculant characteristics. Central composite design (CCD) was used to determine the optimal combination of the variables involved, with the sucrose concentration of 170 g/L, a cellular concentration in the inoculum of 40% (v/v), and a filling time of 6 h, which resulted in a 92.20% yield relative to the theoretical maximum yield, a productivity of 6.01 g/L h and a residual sucrose concentration of 44.33 g/L. With some changes in the process such as recirculation of medium during the fermentation process and increase in cellular concentration in the inoculum after use of the CCD was possible to reduce the residual sucrose concentration to 2.8 g/L in 9 h of fermentation and increase yield and productivity for 92.75% and 9.26 g/L h, respectively. A model was developed to describe the inhibition of alcoholic fermentation kinetics by the substrate and the product. The maximum specific growth rate was 0.103 h(-1), with K(I) and K(s) values of 109.86 and 30.24 g/L, respectively. The experimental results from the fed-batch reactor show a good fit with the proposed model, resulting in a maximum growth rate of 0.080 h(-1).

摘要

已经开展了关于选择用于乙醇生产发酵的酵母菌株的研究,以提高工业工厂的性能并降低生产成本。在本文中,我们研究了使用具有絮凝特性的酿酒酵母菌株进行分批补料过程中的酒精发酵。采用中心复合设计(CCD)来确定相关变量的最佳组合,蔗糖浓度为170 g/L,接种物中的细胞浓度为40%(v/v),补料时间为6 h,相对于理论最大产量,其产率为92.20%,生产率为6.01 g/(L·h),残余蔗糖浓度为44.33 g/L。通过对工艺进行一些改变,如在发酵过程中培养基的循环以及在使用CCD后增加接种物中的细胞浓度,有可能在9 h的发酵中将残余蔗糖浓度降低至2.8 g/L,并分别将产率和生产率提高到92.75%和9.26 g/(L·h)。建立了一个模型来描述底物和产物对酒精发酵动力学的抑制作用。最大比生长速率为0.103 h⁻¹,K(I)和K(s)值分别为109.86和30.24 g/L。分批补料反应器的实验结果与所提出的模型拟合良好,最大生长速率为0.080 h⁻¹。

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