Complementary Substrates-Brewery Wastewater and Piggery Effluent-Assessment and Microbial Community Profiling in a Hybrid Anaerobic Reactor

被引:2
作者
Eusebio, Ana [1 ]
Neves, Andre [1 ]
Marques, Isabel Paula [1 ]
机构
[1] IP LNEG, Unidade Bioenergia & Biorrefinarias, Lab Nacl Energia & Geol, Estr Paco Lumiar 22, P-1649038 Lisbon, Portugal
来源
APPLIED SCIENCES-BASEL | 2021年 / 11卷 / 10期
关键词
anaerobic digestion; biogas; methane; unbalance; inhibiting organic waste streams; brewery wastewater; piggery effluent; microbial communities profiling; Next Generation Sequencing; OLIVE MILL; CO-DIGESTION; BIOENERGY RECOVERY; NITROGEN REMOVAL; FOOD WASTE; SP NOV; PERFORMANCE; MANURE; OPTIMIZATION; PRETREATMENT;
D O I
10.3390/app11104364
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A hybrid anaerobic reactor was operated under the complementary effluents concept to reduce the unbalanced/inhibitory capacity of the provided piggery effluent. Brewery wastewater was chosen to complement piggery effluent (60:40% v/v, respectively). The HRT reduction from 6.7 to 3.0 days allowed the testing of an organic load increase from 4.5 to 10.0 g COD/L center dot d, which resulted in the almost doubling of biogas production. Biogas volumes (1.2 and 2.1 L/L center dot d, respectively) associated with its quality (>77% CH4) revealed that the hybrid anaerobic reactor responded positively to the operational changes and that piggery effluent can be advantageously digested using the brewery wastewater as the complementary effluent. The unit bottom and the packing bed were the main functional sections recognized in the hybrid. At the beginning of anaerobic digestion, bacterial populations belonged mostly to Bacteroidales (33%) and Clostridiales (35%). The process stability and the biogas quality at 3-d HRT were related to a change in the structure composition, since Flavobacteriales (18%), Bacillales (7%), Pseudomonadales (11%) and members of the Alcaligenaceae family (5%) also integrated the microbial communities. An evident change had also occurred in archaeal populations at this phase. Methanosaeta became the dominant genus (95%), confirming that acetoclastic methanogenesis was the main way for methane production.
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页数:21
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