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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Assessment of Relevant Factors Influencing Lipolytic Enzyme Production by Thermus thermophilius HB27 in Laboratory-Scale Bioreactors
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Assessment of Relevant Factors Influencing Lipolytic Enzyme Production by Thermus thermophilius HB27 in Laboratory-Scale Bioreactors

机译:在实验室规模的生物反应器中影响嗜热栖热菌HB27产生多聚酶的相关因素的评估

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摘要

Nowadays,there is not much information on the large-scale production of thermostable lipolytic enzymes by thermophilic organisms.Therefore,in this study the lipolytic enzyme production by Thermus thermophilus HB27 in laboratory-scale bioreactors was undertaken.In order to determine the most suitable bior-eactor,two configurations were investigated:stirred-tank and airlift bioreactor.It was demonstrated that the stirred-tank configuration led to the highest lipolytic extracellular activities,about 2.3-fold higher than those found in the corresponding cultivation in the airlift bioreactor.On the other hand,the influence of several factors such as culture nutrients concentration,aeration,and agitation rate on the production of thermophilic lipolytic enzymes in a 5-L stirred-tank bioreactor was assayed.At reduced nutrients concentration(50 % with respect to the basal medium),a higher product/biomass yield was attained,without any operational problems.From the relationship between mass transfer coefficient(K_La),aeration,and agitation rates it was concluded that there is a lesser dependence on the aeration than the agitation rate.In addition,the mechanical stirring of the bioreactor could tear the membranes that contain the rotund bodies often found in cultures of thermophilic microorganisms,thus increasing the extracellular enzyme production.
机译:如今,关于嗜热生物大规模生产热稳定脂解酶的信息还很少。因此,在本研究中,进行了实验室规模生物反应器中嗜热栖热菌HB27的脂解酶的生产。 -反应器,研究了两种配置:搅拌罐和空运生物反应器。事实证明,搅拌罐配置导致最高的脂解细胞外活性,比空运生物反应器中相应培养物中的2.3倍高。另一方面,测定了5-L搅拌罐式生物反应器中培养物养分浓度,曝气量和搅拌速率等因素对嗜热脂解酶产生的影响。在降低养分浓度(相对于50%发酵液)的条件下基础培养基),获得了更高的产品/生物量产量,而没有任何操作问题。得出系数(K_La),曝气和搅动速率的结论是,对曝气的依赖性比搅动速率小。此外,生物反应器的机械搅拌可能会撕裂培养物中常见的含有圆形物体的膜。嗜热微生物,从而增加细胞外酶的产生。

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