Title :
Numerical simulation of transient radial temperature distribution in rotating drum bioreactor for solid state fermentation
Author :
Erqiang Wang ; Bing Han ; Shizhong Li
Author_Institution :
Coll. of Chem. & Chem. Eng., Grad. Univ. of Chinese Acad. of Sci., Beijing, China
Abstract :
Solid-state fermentation (SSF) has received more and more attention and been applied to produce many kinds of chemicals in recent years, especially in the field of biofuel. The major problems to overcome in large-scale application of SSF are heat accumulation and heterogeneous distribution in this complex gas-liquid-solid multiphase bioreactor (or fermentor) system. In this work, a mathematical model of a rotating drum bioreactor for solid state anaerobic fermentation was developed which consider the transient radial temperature distribution in the substrate bed. Corresponding partial differential equations were solved using the finite volume method (FVM). Validation experiments were conducted in a 50L rotating drum fermentor. Simulation results could agree well with the experimental data. From these results, it was concluded that the mathematical model developed is a powerful tool to investigate design and scale-up of anaerobic SSF fermentors.
Keywords :
biofuel; bioreactors; fermentation; finite volume methods; partial differential equations; temperature distribution; FVM; anaerobic SSF fermentors; complex gas-liquid-solid multiphase bioreactor system; fermentor system; finite volume method; heat accumulation; heterogeneous distribution; partial differential equations; rotating drum bioreactor; solid state anaerobic fermentation; substrate bed; transient radial temperature distribution; Ethanol; Mathematical model; Production; Solids; Substrates; Temperature distribution; Temperature measurement; ethanol; finite volume method; rotating drum bioreactor; solid-state fermentation; sweet sorghum stalk;
Conference_Titel :
Materials for Renewable Energy and Environment (ICMREE), 2013 International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4799-3335-8
DOI :
10.1109/ICMREE.2013.6893668