pH Control of Yeast Fed-Batch Fermentation Process by Improved Input-Output Linearization Method

IF 0.7 4区 工程技术 Q4 ENGINEERING, CHEMICAL
Hyok-Chol Ju, Kuk-Chol Ri, Ji-Song Jon, Chol-Jin Kim
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引用次数: 0

Abstract

In general, there are many influencing factors in the cultivation of microorganisms, including yeast, among which pH control is of great importance. Since the pH characteristics of yeast fermentation processes are nonlinearity and the production of acid during yeast fermentation is typically nonlinearity, the process pH values cannot be adjusted rapidly and accurately by conventional linear control techniques. Hence, the intrinsic nonlinear characteristics of the pH control system are approximated by several nonlinear models including Hammerstein–Wiener model, and a controller is designed based on the models. To increase the yield in yeast cultures, fed-batch fermentation method should be used more than batch cultivation method. In brief, fed-batch fermentation is a method of continuous addition of the nutrient solution(glucose fluid) following the number of yeast cells present inside the yeast fermentation tank. In this paper, a mathematical model based on chemical equilibrium is proposed to control the pH of an industrial yeast fermentation tank with only inflow, no outflow, and relatively large internal volume, and a controller is designed using the input-output linearization method. The performance of the designed controller is verified by numerical simulation and field experiments.

Abstract Image

Abstract Image

用改进的输入输出线性化方法控制酵母间歇发酵过程的 pH 值
摘要 一般来说,微生物(包括酵母)培养过程中的影响因素很多,其中 pH 值的控制非常重要。由于酵母发酵过程的 pH 特性是非线性的,而且酵母发酵过程中的产酸过程也是典型的非线性过程,因此传统的线性控制技术无法快速准确地调节过程 pH 值。因此,pH 控制系统的内在非线性特性可通过包括 Hammerstein-Wiener 模型在内的多个非线性模型进行近似,并根据模型设计控制器。为了提高酵母培养的产量,应更多地采用间歇发酵法而不是分批培养法。简而言之,间歇式发酵是一种根据酵母发酵罐内酵母细胞的数量连续添加营养液(葡萄糖液)的方法。本文提出了一个基于化学平衡的数学模型,用于控制只有流入、没有流出且内部容积相对较大的工业酵母发酵罐的 pH 值,并利用输入输出线性化方法设计了一个控制器。通过数值模拟和现场实验验证了所设计控制器的性能。
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来源期刊
CiteScore
1.20
自引率
25.00%
发文量
70
审稿时长
24 months
期刊介绍: Theoretical Foundations of Chemical Engineering is a comprehensive journal covering all aspects of theoretical and applied research in chemical engineering, including transport phenomena; surface phenomena; processes of mixture separation; theory and methods of chemical reactor design; combined processes and multifunctional reactors; hydromechanic, thermal, diffusion, and chemical processes and apparatus, membrane processes and reactors; biotechnology; dispersed systems; nanotechnologies; process intensification; information modeling and analysis; energy- and resource-saving processes; environmentally clean processes and technologies.
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