Department of Building Engineering, Energy Systems and Sustainability Science, University of Gävle, SE-801 76 Gävle, Sweden.
Department of Building Engineering, Energy Systems and Sustainability Science, University of Gävle, SE-801 76 Gävle, Sweden.
Waste Manag. 2020 Apr 15;107:133-142. doi: 10.1016/j.wasman.2020.03.036. Epub 2020 Apr 10.
The configuration of the reactor influences the digestion process and thus the product yields; other factors such as the rate of biogas production or biogas loss also affect the process specifically with high solid configuration. With these in mind, the ORganic WAste REsearch (ORWARE) anaerobic digestion sub-model was modified to be able to study solid-state anaerobic digestion (SS-AD) (using plug-flow reactor). The simulation results from the updated model agreed with the operational data with respect to methane yield, digestate yield and energy turnover. The model was found to be sensitive to changes in feedstock composition but to a lesser extent to changes in process temperature and retention time. By applying the model on several cases of liquid anaerobic digestion (L-AD), it was noticed that L-AD at mesophilic condition with 25 retention days seemed to be superior to other cases of L-AD with regard to energy turnover. However, even if similar methane production were observed for L-AD and SS-AD, the model suggested higher energy turnover for the case of SS-AD at thermophilic condition, being 10% more in average in comparison with cases of L-AD.
反应器的配置会影响消化过程,从而影响产物收率;其他因素,如沼气产生速率或沼气损失率,也会对特定的高固体配置的过程产生影响。考虑到这些因素,对有机废物研究(ORWARE)厌氧消化子模型进行了修改,以便能够研究固态厌氧消化(SS-AD)(使用推流反应器)。更新模型的模拟结果与甲烷产量、消化物产量和能量转化方面的运行数据一致。结果表明,该模型对原料组成的变化很敏感,但对工艺温度和停留时间的变化不太敏感。通过将模型应用于几种液体厌氧消化(L-AD)的情况,注意到在 25 天的停留时间和中温条件下的 L-AD 似乎在能量转化方面优于其他 L-AD 情况。然而,即使对于 L-AD 和 SS-AD 观察到相似的甲烷产量,该模型表明在高温条件下 SS-AD 的能量转化更高,与 L-AD 的情况相比平均高出 10%。