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Dewaterability enhancement and sulfide mitigation of CEPT sludge by electrochemical pretreatment

  • Qian Zeng
  • , Tianwei Hao*
  • , Zhiguo Yuan
  • , Guanghao Chen
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Dewatering and sulfide control are the key challenges in treating chemically enhanced primary treatment (CEPT) sludge. In this study, an electrochemical pretreatment (EPT) approach with the input of 10 V/800 mA was explored for simultaneously improving the dewaterability of CEPT sludge and eliminating its sulfide production. The effects of different electrode materials (carbon and titanium) and EPT durations (from 5 to 15 min) were documented to reveal the underlying EPT mechanism. EPT with titanium electrodes (titanium-EPT) led to limited improvement in dewaterability and sulfide control. EPT with carbon electrodes (carbon-EPT) for 15 min, however, led to decreases in capillary suction time and specific resistance in filtration of over 80% and the suppression of about 99% of hydrogen sulfide (H2S(g)) production over 5 days of anaerobic storage. Analysis of the characteristics of treated CEPT sludge revealed that carbon-EPT disintegrated sludge flocs with ∼70% reduction in sludge particle sizes and release of aromatic and tyrosine protein-like substances, thus enhancing sludge dewaterability. The sulfur balance in the liquid and gaseous phases showed that most of the sulfur-containing compounds remained in the solid phase as aliphatic sulfur and sulfonic acid after carbon-EPT, thereby mitigating sulfide emission. While the pattern of sulfur distribution in sludge with titanium-EPT was dominated by sulfide, it was similar to the control sample. Reduction in bacteria associated with sulfide production (i.e., Lachnospiraceae) in CEPT sludge after carbon-EPT also contributed to sulfide elimination. This study demonstrates that EPT can be a superior option for simultaneously enhancing the dewaterability of CEPT sludge and mitigating its sulfide production. © 2020 Published by Elsevier Ltd.
Original languageEnglish
Article number115727
JournalWater Research
Volume176
Online published17 Mar 2020
DOIs
Publication statusPublished - 1 Jun 2020
Externally publishedYes

Funding

This research was supported by the Key Program of National Natural Science of China (grant no. 51638005), the Science and Technology Development Fund of Macau, Macau SAR, China (grant no. 0040/2018/A1), the Hong Kong Drainage Service Department (contract no. DEMP/2019/16), the National Natural Science Foundation of China (grant no. 51778165), and the Research Grants Council, Hong Kong SAR, China (project no. T21-604/19-R).

Research Keywords

  • Dewaterability enhancement
  • Electrochemical pretreatment
  • Sludge treatment
  • Sulfate reduction

RGC Funding Information

  • RGC-funded

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    CHEN, G. (Main Project Coordinator [External]), CHEN, G. (Principal Investigator / Project Coordinator), AN, K. J. A. (Co-Investigator), CHEUNG, P.C.-K. (Co-Investigator), EKAMA, G. A. (Co-Investigator), SHANG, C. (Co-Investigator), VAN LOOSDRECHT, M. (Co-Investigator), WANG, W. (Co-Investigator), Wu, D. (Co-Investigator) & Zhang, T. (Co-Investigator)

    1/01/20 → …

    Project: Research

  • TBRS-ExtU-Lead: A Paradigm-shifting, Fully-integrated, Compact Wastewater-to-resource Facility (WWRF)

    CHEN, G. (Main Project Coordinator [External]), WANG, W. (Principal Investigator / Project Coordinator), AN, K. J. A. (Co-Investigator), CHEN, G. (Co-Investigator), CHEUNG, P.C.-K. (Co-Investigator), DAI, J. (Co-Investigator), EKAMA, G. A. (Co-Investigator), SHANG, C. (Co-Investigator), VAN LOOSDRECHT, M. (Co-Investigator), Wu, D. (Co-Investigator) & Zhang, T. (Co-Investigator)

    1/01/20 → …

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  • TBRS-ExtU-Lead: A Paradigm-shifting, Fully-integrated, Compact Wastewater-to-resource Facility (WWRF)

    CHEN, G. (Main Project Coordinator [External]), AN, K. J. A. (Principal Investigator / Project Coordinator), CHEN, G. (Co-Investigator), CHEUNG, P.C.-K. (Co-Investigator), DAI, J. (Co-Investigator), EKAMA, G. A. (Co-Investigator), SHANG, C. (Co-Investigator), VAN LOOSDRECHT, M. (Co-Investigator), WANG, W. (Co-Investigator), Wu, D. (Co-Investigator) & Zhang, T. (Co-Investigator)

    1/01/201/08/24

    Project: Research

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