Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, 510640, China; Guangzhou Institute of Energy Conversion, CAS Key Laboratory of Renewable Energy, Chinese Academy of Sciences, Guangzhou, 510640, PR China; Guangdong Key Laboratory of New and Renewable Energy Research and Development, Guangzhou, 510640, PR China.
Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, 510640, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
Chemosphere. 2020 May;247:125871. doi: 10.1016/j.chemosphere.2020.125871. Epub 2020 Jan 7.
To investigate how the changes in performance and the microbial community of the co-digestion system of Pennisetum hybrid and pig manure, two co-digestion systems in a semi-continuous mode were established at different grass:manure mixture ratios (50:50 and 75:25), and at variable organic loading rates (OLRs). The two reactors were in a steady-state at the OLRs of 2.0-5.0 g VS/(L·d), with the specific and volumetric biogas yields of 383.86 ± 65.13 to 574.28 ± 72.04 mL/g VS and 0.87 ± 0.07 to 2.36 ± 0.13 m/(m·d), respectively. The co-digestion system with a mixture ratio of 75:25 failed at an OLR of 5.5 g VS/(L⋅d). This failure could be attributed to the accumulation of volatile fatty acids (VFAs) owing to the imbalance between acid-production and -oxidation bacteria. By contrast, the co-digestion system with mixture ratio of 50:50 failed at an OLR of 7.0 g VS/(L⋅d), which was likely due to mechanical issues or improper reactor configuration. The genus Proteiniphilum contributed to the increase in total ammonia nitrogen. These findings provide useful guidance for optimizing co-digestion system, enhancing reactor performance and improving the wastes treatment.
为了研究混合比例和有机负荷率(OLR)变化对杂交狼尾草(Pennisetum hybrid)与猪粪共消化系统性能和微生物群落的影响,在不同的草粪混合比例(50:50 和 75:25)和可变的有机负荷率(OLR)下建立了两个半连续模式的共消化系统。在 OLR 为 2.0-5.0 g VS/(L·d)时,两个反应器均处于稳定状态,比沼气产量分别为 383.86±65.13 至 574.28±72.04 mL/g VS 和 0.87±0.07 至 2.36±0.13 m/(m·d)。混合比例为 75:25 的共消化系统在 OLR 为 5.5 g VS/(L·d)时失败。这一失败可归因于产酸菌和产甲烷菌之间的不平衡导致挥发性脂肪酸(VFAs)的积累。相比之下,混合比例为 50:50 的共消化系统在 OLR 为 7.0 g VS/(L·d)时失败,这可能是由于机械问题或反应器配置不当所致。属蛋白菌(Proteiniphilum)对总氨氮的增加有贡献。这些发现为优化共消化系统、提高反应器性能和改善废物处理提供了有用的指导。