Electrochemical degradation of the antihypertensive losartan in aqueous medium by electro-oxidation with boron-doped diamond electrode

J Hazard Mater. 2016 Dec 5:319:84-92. doi: 10.1016/j.jhazmat.2016.04.009. Epub 2016 Apr 29.

Abstract

In this work the electrochemical oxidation of losartan, an emerging pharmaceutical pollutant, was studied. Electrochemical oxidation was carried out in batch mode, in an open and undivided cell of 100cm(3) using a boron-doped diamond (BDD)/stainless steel system. With Cl(-) medium 56% of mineralization was registered, while with the trials containing SO4(2-) as supporting electrolyte a higher mineralization yield of 67% was reached, even obtaining a total removal of losartan potassium at 80mAcm(-2) and 180min of reaction time at pH 7.0. Higher losartan potassium concentrations enhanced the mineralization degree and the efficiency of the electrochemical oxidation process. During the mineralization up to 4 aromatic intermediates were identified by ultra high performance liquid chromatography tandem mass spectrometry (UHPLC-MS/MS). Moreover, short-linear carboxylic acids, like oxalic, succinic and oxamic were detected and quantified by ion-exclusion HPLC. Finally, the ability of the electrochemical oxidation process to mineralize dissolved commercial tablets containing losartan was achieved, obtaining TOC removal up to 71% under optimized conditions (10mAcm(-2), 0.05M Na2SO4, pH 7.0 and 25°C and 360min of electrolysis).

Keywords: Boron-doped diamond electrode; Electrochemical oxidation; Losartan potassium; Water treatment.

MeSH terms

  • Antihypertensive Agents / chemistry*
  • Boron / chemistry*
  • Diamond / chemistry*
  • Electrodes
  • Electrolysis
  • Losartan / chemistry*
  • Oxidation-Reduction
  • Tablets
  • Waste Disposal, Fluid / methods
  • Water Pollutants, Chemical / chemistry*
  • Water Purification / methods

Substances

  • Antihypertensive Agents
  • Tablets
  • Water Pollutants, Chemical
  • Diamond
  • Losartan
  • Boron