厌氧消化
沼气
食物垃圾
生化工程
生物系统
甲烷
化学
沼气生产
生产(经济)
动力学
数学
工业与生产工程
反应速率
制浆造纸工业
生物化学
废物管理
工程类
物理
生物
有机化学
经济
催化作用
宏观经济学
电气工程
量子力学
作者
Raymond Ogundu Owhondah,Mark Walker,Lin Ma,Bill Nimmo,D.B. Ingham,Davide Poggio,Mohamed Pourkashanian
标识
DOI:10.1007/s00449-016-1577-x
摘要
Biochemical reactions occurring during anaerobic digestion have been modelled using reaction kinetic equations such as first-order, Contois and Monod which are then combined to form mechanistic models. This work considers models which include between one and three biochemical reactions to investigate if the choice of the reaction rate equation, complexity of the model structure as well as the inclusion of inhibition plays a key role in the ability of the model to describe the methane production from the semi-continuous anaerobic digestion of green waste (GW) and food waste (FW). A parameter estimation method was used to investigate the most important phenomena influencing the biogas production process. Experimental data were used to numerically estimate the model parameters and the quality of fit was quantified. Results obtained reveal that the model structure (i.e. number of reactions, inhibition) has a much stronger influence on the quality of fit compared with the choice of kinetic rate equations. In the case of GW there was only a marginal improvement when moving from a one to two reaction model, and none with inclusion of inhibition or three reactions. However, the behaviour of FW digestion was more complex and required either a two or three reaction model with inhibition functions for both ammonia and volatile fatty acids. Parameter values for the best fitting models are given for use by other authors.
科研通智能强力驱动
Strongly Powered by AbleSci AI