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June 1, 2026Environmental Science & Technology1 citations

Self-Driven UV/Periodate Process for Cu-EDTA Decomplexation and In Situ Copper Recovery

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LWLeliang WuNanjing Normal UniversityDSDunyu SunMinistry of Ecology and EnvironmentCYChenyu YanNanjing Normal University

Key Points

  • The aim is to develop an efficient process for Cu-EDTA decomplexation and copper recovery.
  • Utilized a self-driven UV/periodate (UV/PI) method for decomplexation and recovery.
  • Achieved 94.50% decomplexation and 68.94% copper recovery within 90 minutes.
  • Investigated mechanistic aspects including redox cycling and formation of reactive species.
  • Achieved 94.50% Cu-EDTA decomplexation and 68.94% copper recovery via precipitation.
  • Process operates effectively without pH adjustment and maintains a gradual increase to ∼7.5 during operation.
  • UV/PI shows lower energy consumption compared to other UV/oxidant methods and high resilience to water matrix interference.

Abstract

Stable copper-ethylenediaminetetraacetic acid (Cu-EDTA) poses significant challenges for simultaneous ligand degradation and metal recovery. A self-driven ultraviolet/periodate (UV/PI) process that enables efficient decomplexation of Cu-EDTA coupled with in situ copper recovery was developed. This process achieved 94.50% decomplexation and 68.94% copper recovery via precipitation within 90 min without pH adjustment. Mechanistic investigations revealed that the UV/PI process generates reactive iodine species (IO3•) and singlet oxygen (1O2), and Cu(I)/Cu(II)/Cu(III) redox cycling, driving stepwise decarboxylation of EDTA and Cu2+ release. Consequently, proton consumption during PI activation and IO3– formation induces a gradual pH increase to ∼7.5, triggering the precipitation of released Cu2+. This intrinsic coupling of oxidative decomplexation and pH-driven precipitation enables a self-sustained pathway for simultaneous ligand removal and Cu recovery. While the electrical energy per order (EEO) is comparable to that of UV/H2O2, the UV/PI process exhibits markedly lower energy consumption per mass of copper recovered than other UV/oxidant processes. Moreover, the UV/PI process further exhibits strong resistance to water matrix interference, effective performance in real electroplating wastewater, and broad applicability toward various heavy metal complexes. This study provides a mechanistically informed and environmentally benign strategy for the treatment of metal-EDTA-containing wastewater.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/6a1d216202fbce913063770ahttps://doi.org/10.1021/acs.est.5c17560
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