The Role of Slurry Reflux in a Corn Stalk Continuous Anaerobic Digestion System: Performance and Microbial Community

Slurry reflux is a low-cost slurry reduction technology, which can solve the problem that a large amount of slurry cannot be completely consumed in a biogas plant. Anaerobic digestion (AD) of corn stalks with slurry reflux and non-reflux was compared and evaluated in continuous anaerobic digestion t...

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Veröffentlicht in:International journal of environmental research and public health 2023-01, Vol.20 (3), p.1687
Hauptverfasser: Zhao, Ling, Gao, Yang, Sun, Jiaxing, Wang, Yanan, Wang, Congxin, Yu, Shuai, Wang, Zhen, Li, Jingyang, Liu, Ronghou, Kou, Wei
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Sprache:eng
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Zusammenfassung:Slurry reflux is a low-cost slurry reduction technology, which can solve the problem that a large amount of slurry cannot be completely consumed in a biogas plant. Anaerobic digestion (AD) of corn stalks with slurry reflux and non-reflux was compared and evaluated in continuous anaerobic digestion to clarify the effects of slurry reflux on AD with organic loading rate (OLR) variation. It was found that slurry reflux increased cumulative methane production and improved system stability. The average methane yield of the slurry reflux group was 224.19 mL/gVS, which was 41.35% higher than that of the non-reflux group. High-throughput sequencing results showed that slurry reflux increased the microbial community richness. The dominant microorganisms in the reflux group were in phylum Bacteroidetes, which have the capacity to degrade polymers, and , which is an aceticlastic methanogen. The relative abundances of Bacteroidetes and were 32.41% and 41.75%, respectively. III and , which are related to syntrophic acetate oxidation and hydrolysis, were increased in relative abundance in the slurry reflux system. The increase of the OLR altered the main methane-producing pathway from the acetoclastic methanogenic pathway to the hydrogenotrophic methanogenic pathway in the AD system, and the slurry reflux can delay this trend. This study provided an effective way for the reduction and utilization of slurry in a biogas plant.
ISSN:1660-4601
1661-7827
1660-4601
DOI:10.3390/ijerph20031687