Asian Journal of Research in Chemistry
  • Year: 2011
  • Volume: 4
  • Issue: 12

Thermal and Spectroscopic Feature of the Cu3AsS4 Enargite Oxidation Up To 800°C. Implications in the Arsenic Evolution

  • Author:
  • V.L. Barone1, D. Gazzoli2, I.D Lick3, I.B. Schalamuk4, I.L. Botto1,
  • Total Page Count: 7
  • Page Number: 1844 to 1850

1Cequinor (Conicet-La Plata), Facultad de Ciencias Exactas, Universidad Nacional de La Plat (Argentina)

2Dipartimento di Chimica, Universitá La Sapienza, Roma (Italia)

3Cindeca (Conicet-La Plata), Facultad de Ciencias Exactas, Universidad Nacional de La Plata (Argentina)

4Inremi (Cicpba), Facultad de Ciencias Naturales y Museo, Universidad Nacional de La Plata (Argentina)

*Corresponding Author E-mail: botto@quimica.unlp.edu.ar

Online published on 6 March, 2013.

Abstract

The thermal oxidation of enargite (Cu3AsS4) from Chuquicamata (Chile), has been studied between RT and 800°C. Enargite samples were heated in air atmosphere and analyzed by means of several physicochemical techniques such as XRPD, SEM-EDS, FTIR, XPS and chemical analysis. A surface digenite formation was observed in a first step. The XPS technique was particularly useful to correlate the copper oxidation with the As-O-Cu interaction, responsible for the continuous and slow As evolution up to temperatures higher than 600°C. These results must be considered of interest to reduce the negative environmental impact of the technological copper production from valuable Cu-ores where enargite is present.

Keywords

Enargite, oxidation, As-O-Cu interaction, arsenic evolution