Determination of kinetic parameters of the anaerobic biotransformation process of corn cob (Zea Mays L.) with Lactobacillus acidophilus

Nohemí Sánchez-Valeriano, Diana I. Romero-Mota, E. S. Rosas-Mendoza, E. Hernández-Aguilar, J. M. Méndez-Contreras
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引用次数: 4

Abstract

The cob is the residue generated from the separation of the grain from the cob, and due to its components, it is considered a lignocellulosic material, so its use is limited, which favors the burning of the cob and its spreading, thus generating a problem of environmental pollution. Probiotics are live microorganisms that, when supplied in adequate amounts, provide a beneficial effect to the host, reducing the carbohydrate content in lignocellulosic materials through fermentation, obtaining a product rich in nutrients. Therefore, this research aimed to determine the kinetic parameters of biotransformation of corn residues through the fermentative action of the probiotic bacteria Lactobacillus acidophilus. Anaerobic fermentation kinetics were performed using the bacterium Lactobacillus acidophilus at different concentrations (10 and 15% v/v) to obtain kinetic parameters of microbial growth and substrate consumption for the biotransformation of white corn (Zea MaysL.) residues. The kinetic parameters indicate that when using 15% inoculum, the bacteria adapt to a greater extent to the substrate since the Ks value was 0.5693 g/L and the adaptation time was 18.25 h, thus allowing the growth of Lactobacillus acidophilus and therefore the process of biotransformation of corn residues. While for the consumption of substrate, it was identified that the use of 10% inoculum was better since it presented a value of k of 0.2534 that is higher than the value obtained when 15% is used because the rate of substrate consumption is faster. Therefore, the dose of 15% inoculum seems to be the most suitable for the adaptation of the bacteria in the shortest time and therefore the biotransformation process is carried out.
嗜酸乳杆菌对玉米芯厌氧生物转化过程动力学参数的测定
玉米芯是谷物与玉米芯分离后产生的残渣,由于其成分,被认为是木质纤维素材料,因此其使用受到限制,这有利于玉米芯的燃烧和扩散,从而产生了环境污染问题。益生菌是一种活的微生物,当提供足够的量时,可以为宿主提供有益的作用,通过发酵降低木质纤维素材料中的碳水化合物含量,获得富含营养的产品。因此,本研究旨在通过益生菌嗜酸乳杆菌的发酵作用,确定玉米秸秆生物转化的动力学参数。利用嗜酸乳杆菌在不同浓度(10%和15% v/v)下进行厌氧发酵动力学,以获得微生物生长和底物消耗的动力学参数,以实现白玉米(Zea MaysL.)残留物的生物转化。动力学参数表明,当接种量为15%时,细菌对底物的适应程度更大,Ks值为0.5693 g/L,适应时间为18.25 h,有利于嗜酸乳杆菌的生长,从而实现玉米秸秆的生物转化过程。而对于底物的消耗,由于底物的消耗速度更快,因此确定10%接种量的k值为0.2534,高于15%接种量的k值,因此使用10%接种量更好。因此,15%的接种量似乎是最适合细菌在最短时间内适应的,因此进行生物转化过程。
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