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首页> 外文期刊>Biochemical Engineering Journal >A hybrid model combining hydrodynamic and biological effects for production of bacterial cellulose with a pilot scale airlift reactor
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A hybrid model combining hydrodynamic and biological effects for production of bacterial cellulose with a pilot scale airlift reactor

机译:利用中试气举反应器将流体动力学和生物效应相结合以生产细菌纤维素的混合模型

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摘要

A hybrid model combining hydrodynamic and biological effects is developed to describe the cultivation of Acetobacter xylinum for bacterial cellulose production in a modified airlift reactor with wire-mesh draft tubes.The hydrodynamic part is essentially a modified tanks-in-series model whose parameters are determined using a tracer response method.The modified tanks-in-series model is based on that the materials in the riser and downcomer are exchangeable across the wire-mesh draft tube.In addition,the effect of oxygen transfer is also taken into consideration for the tanks-in-series model.An artificial neural network (ANN) model based on the data of a batch cultivation in a stirred tank reactor combined with system equations is utilized as the biological part.Simulation is carried out to demonstrate that the proposed hybrid model represents the cultivation system very well.
机译:建立了一种结合了水动力和生物效应的混合模型来描述木醋杆菌在带有线网通风管的改进型空运反应器中用于细菌纤维素生产的培养。水动力部分实质上是一种改进的串联模型,其参数已确定改进的串联式储罐模型基于提升管和下降管中的物料可跨网状导流管进行交换的基础,此外,还考虑了氧气转移的影响。基于搅拌釜反应器分批培养数据的人工神经网络(ANN)模型与系统方程相结合作为生物学部分,通过仿真证明了该混合模型很好地代表了耕作制度

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