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Navarro-Laboulais, JavierAuthor

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July 31, 2025
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Electrocoagulation or it coupling with ozonation for sustainable wastewater treatment: A comprehensive review of mechanisms, performance, and emerging applications

Publicated to: Journal of Environmental Chemical Engineering. 13 (5): 117685- - 2025-10-01 13(5), DOI: 10.1016/j.jece.2025.117685

Authors:

Jia, YH; Rizvi, OS; Wang, ZB; Li, C; Liu, YT; Qi, F; Navarro-Laboulais, J; Ikhlaq, A; Kumirska, J; Siedlecka, EM; Ismailova, O
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Affiliations

Beijing Forestry Univ, Coll Environm Sci & Engn, Beijing Key Lab Source Control Technol Water Pollu, Beijing 100083, Peoples R China - Author
Lahore Univ Management Sci LUMS, Syed Babar Ali Sch Sci & Engn SBASSE, Dept Chem & Chem Engn, Sector U, Lahore 54792, Pakistan - Author
Tashkent State Tech Univ, Uzbekistan Japan Innovat Ctr Youth, Tashkent 100095, Uzbekistan - Author
Turin Polytech Univ Tashkent, Tashkent 100095, Uzbekistan - Author
Univ Engn & Technol, Inst Environm Engn & Res, GT Rd, Lahore 54890, Punjab, Pakistan - Author
Univ Gdansk, Fac Chem, Dept Environm Anal, Wita Stwosza 63, PL-80308 Gdansk, Poland - Author
Univ Politecn Valencia, Dept Chem & Nucl Engn, Camino Vera S-N, Valencia 46022, Spain - Author
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Abstract

To address the increasing global water pollution crisis, efficient water and wastewater treatment technologies are critical for safeguarding sustainable development and ensuring long-term water security. Although ozonationassisted electrocoagulation (ECO) research has attracted growing attention, there is currently a lack of systematic summary to bridge the gap between lab-scale studies and pilot-scale applications. Therefore, we summarize existing findings on ECO, clarify current challenges and propose future research directions. This review outlines the progress and practical applications of ECO, covering synergistic contaminant removal mechanisms, electrode and reactor design, life cycle assessment and contaminant elimination. The innovative contribution of this review is that it is the first to systematically summarize the research on ECO, providing theoretical guidance for transitioning ECO from the laboratory scale to practical applications. In summary, the maximum synergistic coefficient between electrocoagulation (EC) and ozonation reaches 19.09, depending on the interaction between ECgenerated flocs and ozone. Such a high synergistic coefficient demonstrates that the ECO is worthy of in-depth research. ECO can achieve approximately 100 % removal efficiency for SS, over 80 % removal efficiency for COD and ROCs, as well as partial removal of heavy metals. Notably, the energy consumption of the ECO ranges from 3.77 to 47.65 kWh/m3 , which is significantly lower than that of other EC-related processes, proving ECO feasibility for pilot-scale treatment. In the future, ECO research should be focused on the synergistic reaction mechanism, sludge resource utilization, design and optimization of scaling-up reactors, renewable energy integration and multi-technology coupling to advance practical applications.
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Keywords

Advanced oxidationAqueous-solutionCatalytic ozonationDistillery spent washDrinking-waterEffluent optimizationElectrochemical methodsElectrocoagulationEnhanced treatmentHexavalent chromiumOzonation assisted electrocoagulationOzone assisted electrocoagulationReaction mechanisRemova

Quality index

Bibliometric impact. Analysis of the contribution and dissemination channel

The work has been published in the journal Journal of Environmental Chemical Engineering due to its progression and the good impact it has achieved in recent years, according to the agency WoS (JCR), it has become a reference in its field. In the year of publication of the work, 2025, it was in position 25/176, thus managing to position itself as a Q1 (Primer Cuartil), in the category Engineering, Chemical.

Independientemente del impacto esperado determinado por el canal de difusión, es importante destacar el impacto real observado de la propia aportación.

Según las diferentes agencias de indexación, el número de citas acumuladas por esta publicación hasta la fecha 2026-04-04:

  • Scopus: 1
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Impact and social visibility

From the perspective of influence or social adoption, and based on metrics associated with mentions and interactions provided by agencies specializing in calculating the so-called "Alternative or Social Metrics," we can highlight as of 2026-04-04:

  • The use of this contribution in bookmarks, code forks, additions to favorite lists for recurrent reading, as well as general views, indicates that someone is using the publication as a basis for their current work. This may be a notable indicator of future more formal and academic citations. This claim is supported by the result of the "Capture" indicator, which yields a total of: 37 (PlumX).
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Leadership analysis of institutional authors

This work has been carried out with international collaboration, specifically with researchers from: China; Pakistan; Poland; Uzbekistan.

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Awards linked to the item

We thank the National Key Research and Development Program of China (2021YFE0100800) , the National Natural Science Foundation of China (Nos. 52370064, 52200035, 52100002 and 52300001) , China-CEEC Higher Education Institutions Joint Educational Program (No. 2023279) , the Belt and Road Innovative Talent Exchange Foreign Expert Project (No. DL2023109001L) and Open Project of State Key Laboratory of Urban Water Resources and Environment (No. HC202328) for fund-ing supporting.
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