Tartakovsky B, Morel E, Steyer J P, Guiot S R
Biotechnology Research Institute, National Research Council, 6100 Royalmount Avenue, Montreal, Quebec, Canada H4P 2A2.
Biotechnol Prog. 2002 Jul-Aug;18(4):898-903. doi: 10.1021/bp010142c.
In this work, a variable structure model (VSM) of an anaerobic digestion process was developed. The anaerobic biodegradation process was described by four nonlinear submodels representing methanogenic, chemical oxygen demand overload, acidogenic, and hydrogen-inhibited states of the anaerobic process. At any instant, process dynamics was modeled only by one of the submodels, while the others were considered trailing. The choice of a leading submodel was handled by a knowledge-based system, which analyzed available process variables, such as off-gas composition and reactor pH. The feasibility of the proposed method was demonstrated both by using the VSM to predict the outputs of a comprehensive process model, and the experimental results obtained in a pilot scale anaerobic fixed-bed bioreactor.
在这项工作中,开发了一种厌氧消化过程的可变结构模型(VSM)。厌氧生物降解过程由四个非线性子模型描述,分别代表厌氧过程的产甲烷、化学需氧量过载、产酸和氢气抑制状态。在任何时刻,过程动态仅由其中一个子模型建模,而其他子模型则被视为滞后。领先子模型的选择由一个基于知识的系统处理,该系统分析可用的过程变量,如废气成分和反应器pH值。通过使用VSM预测综合过程模型的输出以及在中试规模厌氧固定床生物反应器中获得的实验结果,证明了所提方法的可行性。