4.8 Article

Response of anaerobic digestion of waste activated sludge to residual ferric ions

期刊

BIORESOURCE TECHNOLOGY
卷 322, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2020.124536

关键词

Waste activated sludge; Anaerobic digestion; Ferric ions; Short-chain fatty acids; Methane

资金

  1. National Natural Science Foundation of China [52000147, 51908448]
  2. Natural Science Foundation of Shaanxi Province [2020JQ-658, 2020JQ-661]
  3. Open Project of Key Laboratory of Environmental Biotechnology, CAS [kf2020011]
  4. Natural Science Foundation project of Education Department of Shaanxi Province [20JK0715]
  5. Key Industrial Innovation Chain Project of Shaanxi Key RD Plan [2020ZDLNY06-08]
  6. Key Scientific Research Project of Education Department of Shaanxi Province [20JS081]

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The study found that residual ferric ions had significant effects on the anaerobic digestion of waste activated sludge, with different concentrations of FI leading to varying impacts on methane production and short chain fatty acids accumulation. Low FI levels enhanced methane production, while high FI levels inhibited acidogenesis and methanogenesis.
This study was conducted to investigate the effects of residual ferric ions (FI), released from iron or its oxides for wastewater or waste activated sludge (WAS) treatment, on anaerobic digestion of WAS. Herein it was found that the anaerobic digestion process was greatly affected by FI dosages as well as FI distributions. The responses of performance and microorganism suggested that a low FI (e.g., 0.125 mmol/g volatile suspended solid (VSS)) enhanced methane production by 29.3%, and a medium FI (e.g., 0.3 mmol/g VSS) promoted short chain fatty acids accumulation to reach the maximum of 247 mg chemical oxygen demand/g VSS, conversely, a high FI (e. g., 0.9 mmol/g VSS) led to severe inhibition on acidogenesis and methanogenesis. The findings may provide some new insights for mechanism understanding on anaerobic digestion process influenced by iron or its oxides, as well as the disposal of WAS contained FI.

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