Biochar-mediated regulation of anaerobic digestion of swine wastewater at low temperature: Performance and microbial mechanism

Anaerobic digestion (AD) is a promising technology for livestock waste treatment and renewable biogas production, yet its cold-region application is limited by high heating energy consumption and low biogas yield at low temperatures. Biochar improves mesophilic/thermophilic AD performance, while its regulatory effects and mechanisms on 20°C swine wastewater AD remain unclear. Here, rice husk biochar (0, 0.5, 1.0, 1.5 wt%) was added to 20°C swine wastewater AD systems to investigate biogas production, organic matter degradation, physicochemical properties, and microbial/metabolic succession. The 1.5 wt% biochar group increased cumulative biogas yield by 30.88%, reduced organic matter concentration by 20.96%, and saved ∼18% heating energy via lower system specific heat capacity. Biochar enhanced AD stability, as shown by milder volatile fatty acid (VFA) fluctuations. Bacteroides, Streptococcus, Proteiniphilum, Advenella, Sedimentibacter were core organic-converting bacteria, and Methanobrevibacter, Methanocorpusculum, Methanobacterium were psychrophilic methanogenic marker archaea. Biochar simultaneously enhanced hydrogenotrophic and methylotrophic methanogenesis, with the former remaining dominant. Although limited to batch tests and a single biochar type, these findings offer a solid foundation for validating the strategy in continuous reactors and with other biochar feedstocks. This study clarifies biochar's regulatory effect and microbial mechanism on low-temperature swine wastewater AD, providing theoretical and technical support for cold-region AD project operation.

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Publication Details

Journal
Biomass and Bioenergy
Published
2026-09-28
DOI
https://doi.org/10.1016/j.biombioe.2026.110133
Primary Topic
Anaerobic Digestion and Biogas Production
Type
article
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article

Biochar-mediated regulation of anaerobic digestion of swine wastewater at low temperature: Performance and microbial mechanism

Fengmei Shi, 匡恩俊, Zhanjiang Pei, Yujun Bao et al.
Biomass and Bioenergy
Anaerobic Digestion and Biogas Production
article

Biochar-mediated regulation of anaerobic digestion of swine wastewater at low temperature: Performance and microbial mechanism

Fengmei Shi, 匡恩俊, Zhanjiang Pei, Yujun Bao, Yuxin Ma, Jie Liu, Yifei Yu, Shiwen Liang, Pengfei Li, Su Wang
article en

Abstract

Anaerobic digestion (AD) is a promising technology for livestock waste treatment and renewable biogas production, yet its cold-region application is limited by high heating energy consumption and low biogas yield at low temperatures. Biochar improves mesophilic/thermophilic AD performance, while its regulatory effects and mechanisms on 20°C swine wastewater AD remain unclear. Here, rice husk biochar (0, 0.5, 1.0, 1.5 wt%) was added to 20°C swine wastewater AD systems to investigate biogas production, organic matter degradation, physicochemical properties, and microbial/metabolic succession. The 1.5 wt% biochar group increased cumulative biogas yield by 30.88%, reduced organic matter concentration by 20.96%, and saved ∼18% heating energy via lower system specific heat capacity. Biochar enhanced AD stability, as shown by milder volatile fatty acid (VFA) fluctuations. Bacteroides, Streptococcus, Proteiniphilum, Advenella, Sedimentibacter were core organic-converting bacteria, and Methanobrevibacter, Methanocorpusculum, Methanobacterium were psychrophilic methanogenic marker archaea. Biochar simultaneously enhanced hydrogenotrophic and methylotrophic methanogenesis, with the former remaining dominant. Although limited to batch tests and a single biochar type, these findings offer a solid foundation for validating the strategy in continuous reactors and with other biochar feedstocks. This study clarifies biochar's regulatory effect and microbial mechanism on low-temperature swine wastewater AD, providing theoretical and technical support for cold-region AD project operation.

Biomass and BioenergyVol. 217
Heilongjiang Academy of Sciences (CN), Heilongjiang Bayi Agricultural University (CN), Heilongjiang University (CN)
Clean water and sanitation
Openalex Percentile: Top 15%
Anaerobic Digestion and Biogas Production
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