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Enhancing hydrogen production from anaerobic sludge fermentation via sodium dichloroisocyanurate pretreatment: Performance and mechanisms

  • Jiamin Zhang
  • , Haiyang Zhang
  • , Zhiren Cao
  • , Wei Zhang
  • , Qiqi Dong
  • , Dongyi Li
  • , Min Pan
  • , Yingqun Ma
  • , Qiuxiang Xu
  • , Jonathan W.C. Wong
  • Dongguan University of Technology
  • Ltd.
  • Hong Kong Metropolitan University

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

Sodium dichloroisocyanurate (DCCNa), a widely applied disinfectant and oxidant, has recently aroused significant attention in waste activated sludge (WAS) treatment, but its influence in enhancing anaerobic dark fermentation for hydrogen (H2) production remains unexplored. Accordingly, this work aims to cover above research gap and reveal the corresponding mechanism of DCCNa pretreatment for hydrogen recovery from WAS. Batch tests showed that DCCNa dosages of 50–250 mg/g volatile suspended solids (VSS) significantly increased H2 yield, with the optimal dosage at 200 mg/g VSS achieving a maximum yield of 10.3 ± 0.3 mL/g VSS, a 9.4-fold enhancement over the blank (without DCCNa addition). Mechanistic analysis revealed that DCCNa benefited the disintegration of WAS, simultaneously enhanced the biodegradability of the solubilized organics. While DCCNa slightly inhibited the microbial activity related to hydrogen production, it caused stronger inhibition on hydrogen consumers and promoted the activity of hydrolytic microorganisms, which is conductive to hydrogen accumulation. Microbial analysis further confirmed the enrichment of hydrolytic bacteria (e.g., Bacteroides and Macellibacteroides ), while the overall abundance of hydrogen producer (e.g., WS6_(Dojkabacteria) , SJA-28 and Christensenellaceae_R-7_group ) and consumers (e.g., Dechloromonas , Rhodobacter and Methanospirillum ) significantly decreased. This work elucidated the novel role and mechanism of DCCNa in promoting hydrogen recovery from sludge, providing a theoretical basis for expanding its application in sludge treatment and bioenergy recovery.

源语言英语
期刊论文编号121674
期刊Journal of Environmental Chemical Engineering
14
2
DOI
出版状态已出版 - 4月 2026

联合国可持续发展目标

此成果有助于实现下列可持续发展目标:

  1. 可持续发展目标 7 - 经济适用的清洁能源
    可持续发展目标 7 经济适用的清洁能源

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