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The Kinetic Models for Biomass and Extracellular Polysaccharide of Ganoderma tsugae

机译:Ganoderma Tsugae生物量和细胞外多糖的动力学模型

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Ganoderma tsugae has long been a well known medicinal mushroom and it has many pharmacological properties. The mathematical relationship of productions from G. tsugae is quite interested from industrial fermentation to predict and control the bioprocess. Therefore, the kinetic models of biomass and extracellular polysaccharide (EPS) by G. tsugae were studied in a batch cultivation at the optimal condition. The pellet of mycelium was described by the cube-root equation whereas the extracellular polysaccharide was explained by Luedekin-Piret equation. The parameters of both equations determine by observed experiment and algorithm solving. The correlation between the experimental values and predicted models of biomass and EPS for G. tsugae obtained the high R-square at 0.9605 and 0.9916, respectively. The both kinetic models may be useful to predict the both productions of G. tsugae.
机译:Ganoderma Tsugae长期以来一直是众所周知的药用蘑菇,它具有许多药理学特性。 G. Tsugae的产量的数学关系非常感兴趣于工业发酵来预测和控制生物过程。因此,在最佳条件下在分批培养中研究了G.Tsugae的生物质和细胞外多糖(EPS)的动力学模型。立方根方程描述了菌丝体的颗粒,而细胞外多糖由Luedekin-Pireet方程解释。两个方程的参数通过观察到的实验和算法求解来确定。 G.Tsugae生物量和EPS的实验值和预测模型的相关性分别在0.9605和0.9916分别获得高R型正方形。这两种动力学模型可能有助于预测G. Tsugae的两种产品。

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