4.8 Article

Sewage sludge digestion beyond biogas: Electrochemical pretreatment for biochemicals

期刊

WATER RESEARCH
卷 208, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.watres.2021.117839

关键词

Anaerobic digestion; Electrochemical process; Volatile fatty acids (VFA); Resource recovery; Waste activated sludge

资金

  1. Key Program of National Natural Science of China [51638005]
  2. Science and Technology Development Fund, Macau SAR [0040/2018/A1]
  3. Hong Kong Innovation and Technology Commission [ITC-CNERC14EG03]
  4. Research Grants Council, Hong Kong SAR, China [T21-604/19-R]
  5. National Natural Science Founda-tion of China [51778165]

向作者/读者索取更多资源

Research on shifting biogas to VFA production for higher economic gains has led to the discovery that electrochemical pretreatment (EPT) can efficiently produce VFA during anaerobic sludge digestion, reducing the dependence on chemicals.
Low economic gains from biogas drive research on shifting to volatile fatty acid (VFA) production during anaerobic sludge digestion. pH control and methanogenesis inhibition are widely used strategies for VFA production via anaerobic digestion of sludge. However, these strategies require perpetual dosing of chemicals, increasing cost and operation complexity. Here, we applied electrochemical pretreatment (EPT) (12 V/30 min) for VFA production during anaerobic sludge digestion. The underlying mechanisms of the VFA production induced by EPT were explored systematically through analyses of the changes in the EPT operation parameters, the sludge characteristics, and the microbial community structure and functional enzymes involving in the subsequent sludge digestion. EPT with carbon-based electrodes selectively inhibited methanogenesis by downregulating heterodisulfide reductase without affecting enzymatic acidogenesis and hydrolysis, resulting in accumulation of VFAs (up to 389 +/- 12 mg acetic acid equivalent/L). Propionate and acetate were, respectively enriched to 89 and 75% of the total VFAs after carbon- and graphite- EPT. Titanium-EPT produced lower levels of VFA; instead, biogas yield increased by -20%. We anticipate that EPT will advance VFA recovery from diverse organic wastes to meet the global challenge of resource supply and waste management.

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