Abstract

In this paper, the influence of structural and textural characteristics of sulfide minerals on their leaching from a polymetallic concentrate by sulfuric acid and sodium nitrate solution is presented. The starting material was Pb?Zn?Cu sulphide polymetallic concentrate enriched during the flotation of a polymetallic ore in the "Rudnik" flotation plant (Rudnik ? Serbia). Leaching experiments were carried out in a closed glass reactor, which provides stable hermetic conditions and allows heating at constant temperature. Chemical, XRD, qualitative and quantitative microscopic and SEM/EDX analyses were used to characterizes samples of the polymetallic concentrate and leach residue. It was determined that chalcopyrite, sphalerite, galena, pyrrhotite and quartz were present in the polymetallic concentrate. The content of sulphide minerals was 69.5%, of which 60.9% occurred as liberated grains: 88.3% of chalcopyrite, 59.3% of sphalerite, 25.1% of galena and 51.6% of pirrhotite. The rest of chalcopyrite, sphalerite, galena and pirrhotite grains were in the forms of inclusions, impregnations, and simple and complex intergrowths. During the leaching process by sodium nitrate and sulphuric acid solution, it was shown previously that the leaching rate of sulphide minerals decreased with time while a part of the sulphide minerals remained in the leach residue. After leaching at 80?C for 120 min, the yields were 69.8, 82.7 and 67.1% for Cu, Zn and Fe, respectively. Lead, in the form of insoluble anglesite, remained in the leach residue. In addition to the anglesite, unleached sulfide minerals and quartz, elemental sulfur was found in the solid residue. The content of sulphide minerals was 35% of which 33.7% minerals occur independently. In specific, 54.7% of chalcopyrite, 31.9% of sphalerite, 8.2% of galena and 37.6% of pyrrhotite appear as separate grains with highly corroded surfaces. Therefore, the structural assembly of sulphide grains in the polymetallic concentrate is favourable and it is not the reason for the observed decrease in the leaching rate in the final process stages. The obtained findings may be explained by the presence of elemental sulphur that is formed during the reaction and precipitated at the grain surfaces, thus creating a diffusion barrier for the leach solution.

Highlights

  • Proučavanje tehnoloških postupaka za korišćenje novih nestandardnih sirovina sa niskim sadržajem metala i ispitivanje mogućnosti njihove prerade, uz poštovanje rigoroznih ekoloških propisa, spada u aktuelne probleme ekstraktivne metalurgije

  • Njihova primena omogućava preradu siromašnih ruda i koncentrata koji su po sastavu veoma složeni, kompleksniji su i selektivniji od drugih konvencionalnih postupaka, omogućavaju potpunije korišćenje mineralnih sirovina i isključuju stvaranje i emisiju sumpor-dioksida, što je značajno sa aspekta zaštite životne sredine

  • Dodatak nitritnog jona u maloj količini ima katalitičko dejstvo, čime proces oksidacije sulfida postaje znatno brži i protiče na nižim temperaturama uz formiranje elementarnog sumpora [25,26,27]

Read more

Summary

NAUČNI RAD

Proučavanje tehnoloških postupaka za korišćenje novih nestandardnih sirovina sa niskim sadržajem metala i ispitivanje mogućnosti njihove prerade, uz poštovanje rigoroznih ekoloških propisa, spada u aktuelne probleme ekstraktivne metalurgije. Zbog toga se poslednjih godina sve više radi na istraživanju i razvoju novih hidrometalurških postupaka koji bi omogućili uspešnu preradu ovakvih sirovina. Njihova primena omogućava preradu siromašnih ruda i koncentrata koji su po sastavu veoma složeni, kompleksniji su i selektivniji od drugih konvencionalnih postupaka, omogućavaju potpunije korišćenje mineralnih sirovina i isključuju stvaranje i emisiju sumpor-dioksida, što je značajno sa aspekta zaštite životne sredine. Luženje sulfidnih minerala nitratima u rastvoru sumporne kiseline odvija se uz formiranje elementarnog sumpora, prema reakcijama [19,20,21,22,23]: 3MeS + 2NO3– + 8H+ = 3Me2+ + 3S0 + 2NO + 4H2O (1). Dodatak nitritnog jona u maloj količini ima katalitičko dejstvo, čime proces oksidacije sulfida postaje znatno brži i protiče na nižim temperaturama uz formiranje elementarnog sumpora [25,26,27]. Cilј istraživanja prikazanih u ovom radu bio je ispitivanje uticaja strukturno-teksturnih karakteristika sulfidnih mineralnih zrna na njihovo luženje rastvorom natrijum-nitrata i sumporne kiseline, s obzirom da tokom luženja dolazi do smanjenja brzine u završnoj fazi i deo sulfidnih mineralnih zrna ostaje u čvrstim ostacima nakon luženja [22,28]

EKSPERIMENTALNI DEO
Procedura luženja
Metode karakterizacije
Karakterizacija polimetaličnog koncentrata
Karakterizacija ostatka luženja
Mineral Halkopirit Sfalerit Galenit Pirotin Anglezit Sumpor Jalovina Ukupno
Površina Zn Cu Fe
Findings
SUMMARY
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call