Skip to main content
Log in

Electrochemical accumulation of visible gold on pyrite and arsenopyrite surfaces

  • Published:
Mineralium Deposita Aims and scope Submit manuscript

Abstract

In galvanic cell arrangements gold is electrochemically deposited on semiconducting sulfide minerals (pyrite, arsenopyrite, chalcopyrite) from aerated as well as H2S-saturated, gold-bearing 1 M KCl solutions. Observed cell potential differences of about 0.4–0.6 V in setups with one sulfide in aerated (cathode) and the other in H2S-saturated (anode) solutions are comparable with known “self-potentials” of natural sulfide ore bodies. Gold preferentially accumulates on the cathode, i.e. under oxidizing conditions. Linked sulfides of variable composition in the same environment, either oxidizing or reducing, yield potential differences up to 20 mV. Such assemblages simulate conditions typically occurring at surfaces of chemically inhomogeneous single crystals (e.g. zonation). Depending on chemical composition, sulfide minerals show either n- or p-type conductivity. Visible gold is preferentially accumulated on individual domains of sulfide surfaces that act as cathodes, i.e. p-type conductors in n-p junctions. The experimental results are discussed in view of electrochemical accumulation of visible gold on sulfides in nature. Arsenic is the most important element in establishing p-type conductivity of pyrite and arsenopyrite. This feature may explain why As is such a powerful pathfinder in gold exploration.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Bayley, R.W., Janes, W.W. (1961) Geochemical surveying for gold veins in the Atlantic district, Wyoming. US Geol. Surv. Prof. Pap. 424-D:332–333

    Google Scholar 

  • Bockris, J.O'M., Reddy, A.K.N. (1973) Modern electrochemistry vol. 2. Plenum Press, New York, pp. 1265–1350

    Google Scholar 

  • Cabri, L.J., Chryssoulis, S.L., De Villiers, J.P.R., Laflamme, J.H.G., Buseck, P.R. (1989) The nature of “invisible” gold in arsenopyrite. Can. Mineral. 27:353–362

    Google Scholar 

  • Boyle, R.W. (1979) The geochemistry of gold and its deposits. Geol. Surv. Canada Bull. 280:584

    Google Scholar 

  • Cardile, C.M., Cashion, J.D., McGrath, A.C., Renders, P., Seward, T.M. (1993)197Au Mössbauer study of Au2S and gold adsorbed onto As2S3 and Sb3S3 substrates. Geochim. Cosmochim Acta 57:2481–2486

    Google Scholar 

  • Castroviejo, R. (1990) Gold ores related to shear zones, West Santa Comba-Fervenza area (Galicia, NW Spain): a mineralogical study. Mineral. Deposita 25:42–52

    Google Scholar 

  • Cavender, W.S. (1963) Arsenic in geochemical gold exploration. Min. Eng. 15:60

    Google Scholar 

  • Cherry, M.E. (1983) The association of gold and felsic intrusion — examples from Abitibi Belt. — The geology of gold in Ontario. Ontario Geol. Surv. Miscell. Pap. 110:48–55

    Google Scholar 

  • Ennaoui, A., Fiechter, S., Jaegermann, W., Tributsch, H. (1986) Photoelectrochemistry of highly quantum efficient single crystalline n-FeS2 (pyrite). J.Electrochem. Soc. 133:97–106

    Google Scholar 

  • Fyon, J.A., Crocket, J.H., Schwarcz, H.P. (1983) The Carshaw and Malga iron-formation-hosted gold deposits of Timmins area. The geology of gold in Ontario. Ontario Geol. Surv. Miscell. Pap. 110:98–110

    Google Scholar 

  • Geithoff, D., Schneider, V. (1961) Die Isolierung der Radionuklide P-32, S-35 und J-131 aus bestrahlten Materialien und die Herstellung von kolloidalem Radiogold. Atompraxis 7:425–426

    Google Scholar 

  • Goodwin, A.M. (1984) Archaean Greenstone belts and mineralization, Superior Province, Canada. In: Foster, R.P. (ed.) Gold '82: geology, geochemistry and genesis of gold deposits. Geol. Soc. Zimbabwe Spec. Pub. 1:71–97

  • Grundmann, G., Lehrberger, G., Lahusen, L. (1985) Freigold in Sillimanit-Cordierit-Gneisen des Moldanubikums bei Unterlangau, Oberpfalz. Fortschr. Mineral. Beih. 63:81

    Google Scholar 

  • Hawkes, D.D. (1965) A note on the geochemical dispersion of arsenic in relation to gold mineralization at Marudi Mountain. Br. Guiana Geol. Surv., Rec., 3:31–33

    Google Scholar 

  • Hutchinson, R.W., Burlinton, J.L. (1984) Some broad characteristics of greenstone belt gold lodes. In: Foster R.P., (ed.) Gold '82: geology, geochemistry and genesis of gold deposits. Geol. Soc. Zimbabwe Spec. Pub. 1:339–371

  • Hyland, M.M., Bancroft, G.M. (1989) An XPS study of gold deposition at low temperatures on sulphide minerals: reducing agents. Geochim. Cosmochim. Acta 53:367–372

    Google Scholar 

  • Iglesias, J.G., Loredo, J. (1990) Geological, mineralogical and geochemical characteristics of the Carles gold mineralization, Asturias, Spain. Mineral. Deposita 25:53–58

    Google Scholar 

  • Janatka, J. (1990) Voltyrov gold depost: case history from the Bohemian Massif, Czechoslovakia. Mineral. Deposita 25:99–103

    Google Scholar 

  • Jean, G.E., Bancroft, G.M. (1985) An XPS and SEM study of gold deposition at low temperatures on sulfide mineral surfaces: concentration of gold by adsorption/reduction. Geochim. Cosmochim. Acta 49:979–987

    Google Scholar 

  • Knipe, S.W., Foster, R.P., Stanley, C.J. (1991) Hydrothermal precipitation of precious metals on sulfide substrates. In: Ladeira, E.A. (ed.) Brazil Gold '91. Balkema, Rotterdam, pp. 431–435

    Google Scholar 

  • Knipe, S.W., Foster, R.P., Stanley, C.J. (1992) The role of sulphide surfaces in the sorption of precious metals from hydrothermal fluids. Trans. Inst. Min. Metall. 101:B83-B88

    Google Scholar 

  • Kretschmar, U., Scott, S.D. (1976) Phase relations involving arsenopyrite in the system Fe-As-S and their application. Can. Min. 14:364–386

    Google Scholar 

  • Ladeira, E.A. (1991) Genesis of gold in Quadrilatere Ferrifero: a remarkable case of premanency, recycling and inheritance — attribute to Djalma Guimaraes, Pierre Routhier and Hans Ramberg. In: Laderia, E.A. (ed.) Brazil Gold '91. Balkema, Rotterdam, pp. 11–30

    Google Scholar 

  • Machesky, M.L., Andrade, W.O., Rose, A.W. (1991) Adsorption of gold (III)-chloride and gold (I)-thiosulfate anions by goethite. Geochim. Cosmochim. Acta 55:769–776

    Google Scholar 

  • Malcom A.G. (1976) Goldfields of Nova Scotia. Geol. Surv. Can. Memoir 385:251 pp

  • Mann, A.W. (1984) Mobility of gold and silver in lateritic weathering profiles: some observations from western Australia. Econ. Geol. 79:38–49

    Google Scholar 

  • Marcoux, E., Bonnemaison, M., Braux, C., Johan, Z. (1989) Distribution of Au, Sb, As and Fe in gold-bearing arsenopyrite from Le Chatelet and Villerange deposits, Creuse, French Massif Central. C.R. Acad. Sci. Paris 308:293–300

    Google Scholar 

  • Marion, P., Holliger, P., Boiron, M.C., Cathelieneau, M., Wagner, F.E. (1991) New improvements in the characterization of refractroy gold in pyrites: an electron microprobe, Mössbauer spectrometry and ion microprobe study. In: Ladeira E.A., (ed.) Brazil Gold '91. Balkema, Rotterdam, pp. 889–395

    Google Scholar 

  • McHugh, J.B. (1988) Concentration of gold in natural waters. J. Geochem. Explor. 30:85–94

    Google Scholar 

  • Melling, D.R., Watkinson, D.H., Fox, P.E., Cameron, R.S. (1990) Carbonatization and propaylic alteration of fragmental basaltic rocks, Quesnel River gold deposit, central British Columbia. Mineral. Deposita 25:115–124

    Google Scholar 

  • Mironov, A.G., Zhmodik, S.M., Maksimova, E.A. (1981) An experimental investigation of sorption of gold by pyrites with different thermoelectric properties. Geochim. Int. 18:153–160

    Google Scholar 

  • Oberthür, T., Saager, R., Tomschi, H.-P. (1990) Geological, mineralogical and geochemical aspects of Archean banded iron-formation-hosted deposit: Some examples from southern Africa. Mineral. Deposita 25:125–135

    Google Scholar 

  • Phillips, P. (1987) Scotian gold: Beaver Dam deposit. N. Min. Mag. 73:82–83

    Google Scholar 

  • Piekarz, G.F., Schrank, A., Choudhouri, A., Figueiredo, B., Xavier, R. (1991) A porphyry-type gold deposit in the Passa Tres granite, South Brazil. Brazil Gold '91, Balkema, Rotterdam, pp. 541–546

    Google Scholar 

  • Renders, P.J., Seward, T.M. (1989) The adsorption of thio gold (I) complexes by amorphous As2S3 and Sb2S3 at 25 and 90°C. Geochim. Cosmochim. Acta 53:255–267

    Google Scholar 

  • Sakharova, M.S., Batrakova, Yu.A., Ryakhovskaya S.K. (1975) Investigation of electrochemical interactions between sulfides and Au-bearing solution. Geochim. Inter. 12:84–89

    Google Scholar 

  • Sakharova, M.S., Batrakova, Yu.A., Ryakhovskaya S.K. (1976) The effect of anion composition of solution on coprecipitation of gold and silver on sulfides. Geochim. Intern. 13:160–166

    Google Scholar 

  • Sato, M., Mooney, H.M. (1960) The electrochemical mechanism of sulfide self-potential. Geophys. 25:226–249

    Google Scholar 

  • Schoonen, M.A.A., Fisher, N.S., Wente, M. (1992) Gold sorption onto pyrite and goethite:a radiotracer study. Geochim. Cosmochim. Acta 56:1801–1814

    Google Scholar 

  • Schreiber, D.W., Amstutz, G.C., Fontbote, L. (1990) The formation of auriferous quartz-sulfide veins in the Pataz region, northern Peru: a synthesis of geological, mineralogical and geochemical data. Mineral. Deposita 25:136–140

    Google Scholar 

  • Seeger, K. (1982) Semiconductor physics. An introduction. Springer, Berlin Heidelberg New York, 462 p

    Google Scholar 

  • Shuey, R.T. (1975) Semiconducting ore minerals. Elsevier, Amsterdam Oxford New York, 415 p

    Google Scholar 

  • Starling, A., Gilligan J.M., Carter, A.H.C., Foster, R.P., Saunder, R.A. (1989) High-temperature hydrothermal precipitation of precious metals on the surface of pyrite. Nature 340:298–300

    Google Scholar 

  • Verryn, S.M.C., Merkle, K.W., Gruenewaldt, G., von (1991) Gold — and associated ore minerals — of the Waaikraal deposit, northwest of Brits, Bushveld Complex. Eur. J. Mineral. 3:451–466

    Google Scholar 

  • Vlassopoulos, D., Wood, S.A. (1990) Gold speciation in natural waters: I. Solubility and hydrolysis reactions of gold in aqueous solutions. Geochim. Cosmochim. Acta 54:3–12

    Google Scholar 

  • Wilson, A.F. (1983) The economic significance of non-hydrothermal transport of gold, and of the accretion of large gold nuggets in laterite and other weathering profiles in Australia. Spec. Pub. Geol. Surv. S. Africa. 7:229–234

    Google Scholar 

  • Wu, X., Delbove, F., Touray, J.C. (1990) Conditions of formation of gold-bearing arsenopyrite: a comparison of synthetic crystals with samples from Le Chatelet gold deposit, Creuse, France. Mineral. Deposita 25:8–12.

    Google Scholar 

  • Xavier, R.P., Foster, R.P. (1991) The role of carbonaceous shear bands in fluid-flow and gold-precipitation in the Fazenda Maria Preta mine, Bahia, north-east Brazil. Brazil Gold '91, Balkema, Rotterdam, pp. 269–277

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Möller, P., Kersten, G. Electrochemical accumulation of visible gold on pyrite and arsenopyrite surfaces. Mineral. Deposita 29, 404–413 (1994). https://doi.org/10.1007/BF01886958

Download citation

  • Received:

  • Accepted:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF01886958

Keywords

Navigation