4.7 Article

Treatment of Ni-EDTA containing wastewater by electrochemical degradation using Ti3+ self-doped TiO2 nanotube arrays anode

期刊

CHEMOSPHERE
卷 278, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2021.130465

关键词

Ni-EDTA; Electrochemical degradation; Ti3+ self-doping TiO2 nanotube arrays anode; Ni

资金

  1. National Science Fund for Distinguished Young Scholars [51625801]
  2. Guangdong Innovation Team Project for Colleges and Universities [2016KCXTD023]
  3. Guangdong Province Universities and Colleges Pearl River Scholar Funded Scheme

向作者/读者索取更多资源

The study successfully achieved electrochemical degradation of Ni-EDTA using ECR-TiO2 NTA electrode, with high removal efficiency and the main degradation pathway involving cleavage of the amine group within Ni-EDTA. Results demonstrate that ECR-TiO2 NTA has excellent efficiency in removing Ni-EDTA.
Ethylene diamine tetraacetic acid (EDTA) could form stable complexes with nickel due to its strong chelation. Ni-EDTA has significant impacts on human health because of its acute toxicity and low biodegradability, thus some appropriate approaches are required for its removal. In this research, a Ti3+ self-doped TiO2 nanotube arrays electrode (ECR-TiO2 NTA) was prepared and employed in electrochemical degradation of Ni-EDTA. The oxygen evolution potential of ECR-TiO2 NTA was 2.6 V vs. SCE. More than 96% Ni-EDTA and 88% TOC was removed after reaction for 120 min at current density 2 mA cm(-2) at pH 4.34. The degradation of Ni-EDTA was mainly through the cleavage of amine group within Ni-EDTA and furthermore decomposed it into small molecular acids and inorganic ions including NH4+ and NO3-. The electro-deposition of nickel ions at cathode was confirmed by XPS and was greatly affected by the pH of solution. The effects of current density, initial Ni-EDTA concentration, initial pH of solution and HCO3- concentration on Ni-EDTA degradation were investigated. The results exhibited that the ECR-TiO2 NTA had excellent efficiencies in electrochemical degradation of Ni-EDTA. The LSV analysis suggested that Ni-EDTA oxidation on ECR-TiO2 NTA anode and the production of hydroxyl radical (center dot OH) on the anode played an important role in the removal of Ni-EDTA. (C) 2021 Elsevier Ltd. All rights reserved.

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