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Biochar alleviates inhibition effects of humic acid on anaerobic digestion: Insights to performances and mechanisms

  • Sheng Jie Sun
  • , Fei Wang
  • , Zhang Wei He*
  • , Cong Cong Tang
  • , Ai Juan Zhou
  • , Yong Xiang Ren
  • , Zhihua Li
  • , Wenzong Liu
  • *Corresponding author for this work
  • Xi'an University of Architecture and Technology
  • Taiyuan University of Technology
  • Harbin Institute of Technology Shenzhen

Research output: Contribution to journalArticlepeer-review

Abstract

To recover methane from waste activated sludge through anaerobic digestion (AD) is one promising alternative to achieve carbon neutrality for wastewater treatment plants. However, humic acids (HAs) are one of the major compositions in waste activated sludge, and their accumulation performs inhibition effects on AD. This study investigated the potentials of biochar (BC) in alleviating inhibition effects of HAs on AD. Results showed that although the accumulated HAs reduced methane yield by 9.37% compared to control, the highest methane yield, 132.6 mL CH4/g VSS, was obtained after adding BC, which was 45.9% higher than that in HA group. Mechanism analysis showed that BC promoted the activities of hydrolase such as protease and α-glucosidase, which were 69.7% and 29.7% higher than those in HA group, respectively. The conversion of short-chain fatty acids was accelerated. In addition, the evolutions of electroactive microorganisms like Clostridium_sensu_stricto_13 and Methanosaeta were consistent with the activitiies of electron transfer and the contents of cytochrome c. Furthermore, parts of HAs rather than all of them were adsorbed by BC, and the remaining free HAs and BC formed synergistic effects on methanogenesis, then both CO2 reduction and acetoclastic methanogenesis pathways were improved. The findings may provide some solutions to alleviate inhibition effects of HAs on AD.

Original languageEnglish
Article number119537
JournalEnvironmental Research
Volume259
DOIs
StatePublished - 15 Oct 2024
Externally publishedYes

Keywords

  • Anaerobic digestion
  • Biochar
  • Humic acids
  • Inhibition effect
  • Methane production

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