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      Ball-milled zero-valent iron with formic acid for effectively removing Cu(II)-EDTA accomplished by EDTA ligands oxidative degradation and Cu(II) removal.

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          Abstract

          Heavy metal complexes in industrial wastewater are challenging to be removed by conventional methods arising from their stable chelating structure. In this study, zero-valent iron (ZVI) was ball-milled with tiny formic acid (FA), and the as-prepared sample (FA-ZVIbm) was attempted to eliminate a model heavy metal complex of Cu(II)-ethylenediaminetetraacetic acid (Cu(II)-EDTA). The addition of FA to ball-milling could dramatically enhance the performance of ball-milled ZVI (ZVIbm) towards Cu(II)-EDTA removal and increase the removal rate constant by 80 times. This conspicuous improvement of Cu(II)-EDTA elimination was attributed to the ferrous formate (Fe(HCOO)2) shell formed on the surface of FA-ZVIbm. Results revealed that the Fe(HCOO)2 shell facilitated the activation of O2 to reactive oxygen species (ROS) and the leaching of Fe3+. Cu(II)-EDTA was decomplexed through both oxidative destruction and Fe3+ replacement, and the released Cu2+ was reduced by FA-ZVIbm and immobilized synchronously. Meanwhile, the ligands underwent oxidative degradation by ROS, thus avoiding the re-chelation ecological risk. Impressively, FA-ZVIbm could achieve cyclic treatment of actual copper complex wastewater and possessed promising advantage in treatment cost. This study would offer a promising approach for eliminating Cu(II)-EDTA through EDTA ligands degradation and synchronous Cu(II) removal, moreover to shed light on the decomplexation mechanism.

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          Author and article information

          Journal
          J Hazard Mater
          Journal of hazardous materials
          Elsevier BV
          1873-3336
          0304-3894
          Mar 05 2024
          : 465
          Affiliations
          [1 ] College of Chemistry, Central China Normal University, Wuhan 430079, PR China.
          [2 ] College of Chemistry, Central China Normal University, Wuhan 430079, PR China. Electronic address: fljia@ccnu.edu.cn.
          Article
          S0304-3894(23)02293-8
          10.1016/j.jhazmat.2023.133009
          38029587
          f1440eff-6f3f-43cf-b3d9-766c1168234d
          History

          Zero-valent iron,Ferrous formate shell,Decomplexation,Oxidative degradation,Cu(II)-EDTA

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