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. 2000 Jun 1;26(9-10):826-833.
doi: 10.1016/s0141-0229(00)00178-2.

Mathematical modeling of citric acid production by repeated batch culture

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Mathematical modeling of citric acid production by repeated batch culture

TE Arzumanov et al. Enzyme Microb Technol. .

Abstract

A mathematical model has been created for the process of citric acid biosynthesis by yeast (mutant strain Yarrowia lipolytica) cultivated by the repeated batch (RB) method on ethanol under conditions of nitrogen limitation. The model accounts for cell growth as a function of nitrogen concentration in the culture liquid; nitrogen uptake by growing cells; citric acid production; pH control in the fermentor by means of NaOH addition; and changes in system volume. The model represents a system of five nonlinear differential equations. Experimental measurements of cell concentration, citric acid concentration, and cultivation broth volume were used with the least squares method to determine the values of eight model parameters. The parameter values obtained were consistent with literature data and general concepts of cell growth and citric acid biosynthesis. The model has been used to predict optimum RB culture conditions.

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