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Particle size for improvement of peptide production in mixed-culture solid-state fermentation of soybean meal and the corresponding kinetics

机译:豆粕混合培养固态发酵中提高肽产量的粒径及其动力学

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Experiments were undertaken to study particle size and its distribution for improvement of peptide production by mixed-culture (Bacillus sublitis, Saccharomyces sp. and Lactococcus lactis) solid-state fermentation (SSF) of soybean meal and the corresponding kinetics. A particle size of 1-1.4mm of soybean meal gave the highest finial peptide yield, and as the proportion of 1-1.4mm/1-2mm in natural soybean meal up to 61.30%/58.58%, the distribution of particle size was also appropriate for peptide production. Logistic model fitted the data most accurately and could be used for growth kinetic profiles during the course of fermentation, and the higher growth rate was calculated for the substrate with optimal particle size distribution. Hence the mechanism could be inferred that appropriate particle size did improve the according rate of microbial growth, thus leading to the higher peptide yield in soybean meal SSF within a limited fermentation time.
机译:进行了实验研究豆粕的粒径及其分布,以改善豆粕混合发酵(豆芽孢杆菌,酿酒酵母和乳酸乳球菌)固态发酵(SSF)的多肽产量以及相应的动力学。豆粕的粒径为1-1.4mm可获得最高的最终多肽产量,当天然豆粕中的1-1.4mm / 1-2mm比例达到61.30%/ 58.58%时,粒径分布也呈适用于多肽生产。 Logistic模型最准确地拟合了数据,可用于发酵过程中的生长动力学曲线,并为具有最佳粒径分布的底物计算出较高的生长速率。因此,可以推断出适当的粒度确实改善了微生物生长的相应速率的机理,从而导致豆粕SSF在有限的发酵时间内具有更高的肽产量。

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