State Key Laboratory of Urban Water Resource and Environment, School of Municipal and Environmental Engineering, Harbin Institute of Technology, 73 Huanghe Road, Harbin 150090, China.
State Key Laboratory of Urban Water Resource and Environment, School of Municipal and Environmental Engineering, Harbin Institute of Technology, 73 Huanghe Road, Harbin 150090, China.
Bioresour Technol. 2016 Aug;214:477-486. doi: 10.1016/j.biortech.2016.04.128. Epub 2016 Apr 30.
Anaerobic baffled reactors (ABRs) have been widely used in engineering but very few models have been developed to simulate its performance. Based on the integration of biomass retention and liquid-gas mass transfer of biogas into the biochemical process derived in the International Water Association (IWA) Anaerobic Digestion Model No.1 (ADM1), a mathematical model was developed to predict volatile fatty acids (VFAs), chemical oxygen demand (CODCr) and biogas in a 4-compartment ABR operated with variable hydraulic retention time (HRT). The model was calibrated and validated with the experimental data obtained from the reactor when the HRT decreased from 2.0 to 1.0d by stages. It was found that the predicted VFAs, CODCr and biogas agreed well with the experimental data. Consequently, the developed model was a reliable tool to enhance the understanding among the mechanisms of the anaerobic digestion in ABRs, as well as to reactor's designing and operation.
厌氧折流板反应器(ABRs)已在工程中得到广泛应用,但很少有模型被开发出来以模拟其性能。本研究基于将沼气的生物截留和液-气传质与国际水协会(IWA)厌氧消化模型 1(ADM1)中推导的生化过程相集成,建立了一个预测 4 隔室 ABR 中挥发性脂肪酸(VFAs)、化学需氧量(CODCr)和沼气的数学模型,该模型通过阶段式将水力停留时间(HRT)从 2.0 降至 1.0d 进行了校准和验证。研究发现,预测的 VFAs、CODCr 和沼气与实验数据吻合良好。因此,开发的模型是增强对 ABR 中厌氧消化机制的理解以及对反应器设计和运行的可靠工具。