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首页> 外文期刊>Journal of Applied Research and Technology >Modeling of microbial growth and ammonia consumption at different temperatures in the production of a polyhydroxyalkanoate (PHA) biopolymer
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Modeling of microbial growth and ammonia consumption at different temperatures in the production of a polyhydroxyalkanoate (PHA) biopolymer

机译:聚羟基链烷酸酯(PHA)生物聚合物生产中不同温度下微生物生长和氨消耗的建模

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Modeling of microbial growth and ammonia consumption at different temperatures was developed in the production of a polyhydroxyalkanoate (PHA) biopolymer in Pseudomona fluorescens in the range of 25-35 °C. A logistic model was employed to predict accurately the microbial growth limiting conditions of nitrogen. A new model based in a mixed mathematical equation comprising a logistic model, and a magnetic saturation model resulted appropriate to estimate the ammonia consumption under limiting conditions. Favorable conditions for PHA production in P. fluorescens were found at temperature of 30 °C, reaching the maximum biomass concentration of 2.83 g L?1, and consuming 99.9% of the initial ammonia, to produce 2.13 g L?1 of PHA. The proposed models could be useful to predict the behavior of a fermentation process to produce PHA in real time.
机译:在荧光假单胞菌中在25-35°C范围内生产聚羟基链烷酸酯(PHA)生物聚合物时,开发了不同温度下微生物生长和氨消耗的模型。使用逻辑模型准确预测氮的微生物生长限制条件。基于混合数学方程的新模型包括逻辑模型和磁饱和模型,适用于估算极限条件下的氨消耗量。发现在荧光假单胞菌中生产PHA的有利条件是,在30°C的温度下,达到2.83 g L?1的最大生物量浓度,消耗99.9%的初始氨,即可生产2.13 g L?1的PHA。所提出的模型可用于预测实时生产PHA的发酵过程的行为。

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