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首页> 外文期刊>Biochemical Engineering Journal >Prediction of oxygen mass transfer coefficients in stirred bioreactors for bacteria,yeasts and fungus broths
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Prediction of oxygen mass transfer coefficients in stirred bioreactors for bacteria,yeasts and fungus broths

机译:细菌,酵母和真菌肉汤搅拌生物反应器中氧气传质系数的预测

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The oxygen mass transfer represents the most important parameter implied on the design and operation of mixing-sparging equipment of the bioreactors.It can be described and analyzed by means of mass transfer coefficient,k_1a.The k_1a values are affected by a lot of factors,such as geometrical and operational characteristics of the vessels,media composition,type,concentration and microorganisms morphology,biocatalysts properties.The aim of these experiments is to study the oxygen mass transfer rate through the mass transfer coefficient,for a stirred bioreactor and different fermentation broths,using a large domain of operating variables.For quantifying the effects of the considered factors(concentration and morphology of biomass,specific power input,superficial air velocity)on k_1a for submerged and surface aeration,the experiments were carried out for non-respiring biomass suspensions of Propionibacterium shermanii,Saccharomyces cerevisiae and Penicillium chrysogenum,mycelial aggregates(pellets)and free mycelia morphological structures.By means of the experimental data and using MATLAB software,some mathematical correlations describing the influences of the considered factors on k_1a have been proposed for each microbial culture.These equations offer a good agreement with the experiment,the maximum deviation being +-8.4% for submerged aeration,and +-9.1% for surface aeration,respectively.
机译:氧气的传质是生物反应器混合流化设备设计和运行中最重要的参数,可以通过传质系数k_1a来描述和分析.k_1a值受许多因素影响,例如容器的几何和操作特性,培养基组成,类型,浓度和微生物形态,生物催化剂特性。这些实验的目的是通过传质系数研究氧气的传质速率,用于搅拌的生物反应器和不同的发酵液为了量化考虑的因素(生物质的浓度和形态,比功率输入,表面空气速度)对淹没和表面曝气的k_1a的影响,进行了非呼吸性生物质的实验谢尔氏丙酸杆菌,酿酒酵母和产黄青霉菌,菌丝体的悬浮液s(团粒)和游离菌丝体形态结构。通过实验数据并使用MATLAB软件,针对每种微生物培养物提出了一些描述考虑因素对k_1a影响的数学关联式。这些方程式与实验有很好的一致性,对于潜水曝气,最​​大偏差分别为+ -8.4%和对于表面曝气的最大偏差为+ -9.1%。

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