Fedorovich Vyacheslav, Lens Piet, Kalyuzhnyi Sergey
Department of Chemical Enzymology, Moscow State University, Moscow, 119992, Russia.
Appl Biochem Biotechnol. 2003 Apr-Jun;109(1-3):33-45. doi: 10.1385/abab:109:1-3:33.
In the present work, the Anaerobic Digestion Model No. 1 (ADM1) for computer simulation of anaerobic processes was extended to the processes of sulfate reduction. The upgrade maintained the structure of ADM1 and included additional blocks describing sulfate-reducing processes (multiple reaction stoichiometry, microbial growth kinetics, conventional material balances for ideally mixed reactor, liquid-gas interactions, and liquid-phase equilibrium chemistry). The extended model was applied to describe a longterm experiment on sulfate reduction in a volatile fatty acid-fed upflow anaerobic sludge bed reactor and was generally able to predict the outcome of competition among acetogenic bacteria, methanogenic archaea, and sulfate- reducing bacteria for these substrates. The computer simulations also showed that when the upward liquid velocity in the reactor exceeds 1 m/d, the structure of the sludge becomes essential owing to bacterial detachment.
在本研究中,用于厌氧过程计算机模拟的1号厌氧消化模型(ADM1)被扩展至硫酸盐还原过程。此次升级保留了ADM1的结构,并纳入了描述硫酸盐还原过程的附加模块(多重反应化学计量学、微生物生长动力学、理想混合反应器的常规物料平衡、液-气相互作用以及液相平衡化学)。扩展后的模型被用于描述在挥发性脂肪酸进料的上流式厌氧污泥床反应器中进行的硫酸盐还原长期实验,并且总体上能够预测产乙酸细菌、产甲烷古菌和硫酸盐还原细菌对这些底物的竞争结果。计算机模拟还表明,当反应器中的向上液体流速超过1米/天时,由于细菌脱离,污泥结构变得至关重要。