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采用间歇补料策略对里氏木霉 RUT-C30 生产纤维素酶的反应工程分析。

Reaction engineering analysis of cellulase production with Trichoderma reesei RUT-C30 with intermittent substrate supply.

机构信息

Lehrstuhl für Bioverfahrenstechnik, Technische Universität München, Boltzmannstr. 15, 85748 Garching, Germany.

出版信息

Bioprocess Biosyst Eng. 2013 Jul;36(7):893-900. doi: 10.1007/s00449-012-0822-1. Epub 2012 Sep 26.

Abstract

The effects of varying initial concentrations of microcrystalline cellulose on cellulase production with Trichoderma reesei RUT-C30 as well as the effects of varying lactose and ammonium sulfate concentrations in the feed medium were studied simultaneously in parallel-operated shake flasks and, alternatively, in parallel-operated stirred-tank bioreactors on a 10-mL scale. Fifteen experiments were performed as triplicates in shake flasks as well as in stirred-tank bioreactors in parallel to identify the parameters of second-order polynomials for the estimation of the final filter paper activity of T. reesei RUT-C30 after a process time of 96 h. Even though parameter estimation was not possible based on the results of the shake flasks due to final enzyme activities at or below the detection limit (with the exception of one shake flask), the identification of the second-order polynomial was successful with the results of the parallel-operated stirred-tank bioreactors on a 10-mL scale. Reaction conditions with 53.3 g L⁻¹ microcrystalline cellulose in the initial medium, no lactose feeding and 3.3 g L⁻¹ day⁻¹ intermittent ammonium sulfate addition were estimated to be optimal. The final experimental validation of the optimum substrate supply on a L-scale resulted in the production of 4.88 filter paper units (FPU) mL⁻¹ with T. reesei RUT-C30 after 96 h. This is an improvement by a factor of 3.6 compared to the reference batch process (1.35 FPU mL⁻¹).

摘要

研究了在摇瓶(平行操作)和搅拌罐生物反应器(平行操作)中,微晶纤维素初始浓度的变化对里氏木霉 RUT-C30 产纤维素酶的影响,以及在进料培养基中乳糖和硫酸铵浓度的变化对产酶的影响。在摇瓶和搅拌罐生物反应器中,以 15 次重复实验作为平行操作,以确定二次多项式的参数,用于在 96 小时的过程时间后估算里氏木霉 RUT-C30 的最终滤纸活性。尽管由于最终酶活低于检测限(除了一个摇瓶外),无法基于摇瓶的结果进行参数估计,但通过在 10 毫升规模上的平行操作搅拌罐生物反应器的结果,成功地确定了二次多项式。在初始培养基中含有 53.3 g/L 微晶纤维素、不添加乳糖和以 3.3 g/L 天间歇添加硫酸铵的反应条件下,估计是最佳的。在 L 规模上对最佳底物供应的最终实验验证,使里氏木霉 RUT-C30 在 96 小时后产生了 4.88 滤纸单位(FPU)/mL。与参考分批过程(1.35 FPU/mL)相比,这提高了 3.6 倍。

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