4.5 Article

Electrokinetic treatment of polluted soil at pilot level coupled to an advanced oxidation process of its wastewater

期刊

PHYSICS AND CHEMISTRY OF THE EARTH
卷 91, 期 -, 页码 68-76

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.pce.2015.09.012

关键词

Electrokinetics; Gasoline; Pilot; Fenton; Wastewater

资金

  1. National Council of Science and Technology in Mexico (CONACyT) through the FOMIX - Veracruz [M0034 - 96313A]
  2. CONACyT
  3. CIDETEQ
  4. Dolphin summer - CIDETEQ

向作者/读者索取更多资源

Soil contaminated with hydrocarbons is a current problem of great importance. These contaminants may be toxic, can retain water and block gas exchange with the atmosphere, which produces a poor-quality soil unsuitable for ecological health. Electroremediation is among the treatments for the removal of such contaminants. In this research, a pilot-level electroremediation test was applied using a circular arrangement of electrodes with a Ti cathode at the middle of the cell surrounded by six IrO2-Ta2O5 I Ti anodes. The presence of an NaOH electrolyte helps to develop the electromigration and electro-osmosis of gasoline molecules (at 1126 mg kg(-1)) surrounded by Na+ ions. The hydrocarbons are directed towards the cathode and subsequently removed in an aqueous Na+ hydrocarbon solution, and the OH migrates to the anode. During electrokinetic treatment, the physicochemical characteristics of the soil close to either the cathode or anode and at the half-cell were evaluated during the three weeks of treatment. During that time, more than 80% of hydrocarbons were removed. Hydrocarbons removed by the electrokinetic treatment of gasoline-polluted soil were collected in a central wastewater compartment and subsequently treated with a Fenton-type advanced oxidation process. This achieved more than 70% mineralization of the hydrocarbons to CO2 and H2O within 1.5 h; its low toxicity status was verified using the Deltatox (R) kit test. With this approach, the residual water complied with the permissible limits of COD, pH, and electrical conductivity for being discharged into water bodies, according to Mexican norm NOM-001-SEMARNAT-1996. (C) 2015 Elsevier Ltd. All rights reserved.

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