Mineralogy and environmental stability of slags from the Tsumeb smelter, Namibia

Applied Geochemistry - Tập 24 Số 1 - Trang 1-15 - 2009
Vojtěch Ettler1, Thomas J.R. Hughes2, Bohdan Křı́bek3, Ondřej Šebek4, Martin Mihaljevič1
1Institute of Geochemistry, Mineralogy and Mineral Resources, Charles University, Albertov 6, 128 43, Prague 2, Czech Republic
2Bureau des Recherches Géologiques et Minières (BRGM), av. Claude Guillemin, 45060 Orléans, cedex 2, France
3Czech Geological Survey, Geologická 6, 152 00, Prague 5, Czech Republic
4Laboratories of the Geological Institutes, Charles University, Albertov 6, 128 43 Prague 2, Czech Republic

Tóm tắt

Từ khóa


Tài liệu tham khảo

Benna, 1996, The structure of ordered and disordered Pb feldspar (PbAl2Si2O8), Am. Mineral., 81, 1337, 10.2138/am-1996-11-1205

Biswas, 1976

Chetty, 2000, The role of evaporates in the genesis of base sulphide mineralization in the Northern Platform of the Pan-African Samara Belt, Namibia: geochemical and fluid inclusion evidence from carbonate wall rock alteration, Mineral. Depos., 35, 364, 10.1007/s001260050247

Cornelis, 2008, Leaching mechanisms of oxyanionic metalloid and metal species in alkaline solid wastes: a review, Appl. Geochem., 23, 955, 10.1016/j.apgeochem.2008.02.001

Costagliola, 2008, Impact of ancient metal smelting on arsenic pollution in the Pecora River Valley, Southern Tuscany, Italy, Appl. Geochem., 23, 1241, 10.1016/j.apgeochem.2008.01.005

ČSN 72 0100, 1984

EN 12457, 2002. Characterisation of Waste – Leaching – Compliance Test for Leaching of Granular Waste Materials and Sludges. Part 2. One Stage Batch Test as a Liquid to Solid Ratio of 10 for Materials with Particle Size Below 4mm (Without or With Size Reduction). Czech Standard Institute, Prague.

Ettler, V., 2002. Etude du potentiel polluant de rejets anciens et actuels de la métallurgie du plomb dans le district de Příbram (République Tchèque). Document du BRGM 301, ISBN 2-7159-0924-01 Orléans, France.

Ettler, 2003, Mineralogy of metallic phases in sulphide mattes from primary lead smelting, C. R. Geosci., 335, 1005, 10.1016/j.crte.2003.09.005

Ettler, 2000, Zinc partitioning between glass and silicate phases in historical and modern lead–zinc metallurgical slags from the Příbram district, Czech Republic, C. R. Acad. Sci. Paris, 331, 245

Ettler, 2001, Primary phases and natural weathering of old lead–zinc pyrometallurgical slag from Příbram, Czech Republic, Can. Mineral., 39, 873, 10.2113/gscanmin.39.3.873

Ettler, 2002, Leaching of polished sections: an integrated approach for studying the liberation of heavy metals from lead–zinc metallurgical slags, Bull. Soc. Geol. France, 173, 161, 10.2113/173.2.161

Ettler, 2003, Mineralogical control on inorganic contaminant mobility in leachate from lead–zinc metallurgical slag: experimental approach and long-term assessment, Mineral. Mag., 67, 1269, 10.1180/0026461036760164

Ettler, 2003, Natural alteration products of sulphide mattes from primary lead smelting, C. R. Geosci., 335, 1013, 10.1016/j.crte.2003.09.006

Ettler, 2004, Leaching of lead metallurgical slag in citric solutions – implications for disposal and weathering in soil environments, Chemosphere, 57, 567, 10.1016/j.chemosphere.2004.07.022

Ettler, 2005, The leaching behaviour of lead metallurgical slag in high-molecular-weight (HMW) organic solutions, Mineral. Mag., 69, 737, 10.1180/0026461056950284

Ettler, V., Červinka, R., Johan, Z., in press. Mineralogy of medieval slags from Pb and Ag smelting (Bohutín, Příbram district, Czech Republic): towards estimation of historical smelting conditions. Archaeometry.

Frimmel, 1996, Pan-African tectonism and the genesis of base metal sulfide deposits in the foreland of the Damara Orogen, Namibia, 204

Ghosh, 2004, TCLP underestimates leaching of arsenic from solid residuals under landfill conditions, Environ. Sci. Technol., 38, 4677, 10.1021/es030707w

Hauptmann, 2007

ICDD, 2003

Inegbenebor, 1989, The chemical stability of mimetite and distribution coefficient for pyromorphite–mimetite solid-solutions, Mineral. Mag., 53, 363, 10.1180/minmag.1989.053.371.12

Johnson, 1981

Kříbek, B., Kamona, F. (Eds.), 2005. Assessment of the mining and processing of ores on the environment in mining districts of Namibia. Final report of the project of the development assistance programme of the Czech Republic to the Republic of Namibia for the year 2004 – Tsumeb area. MS Czech Geol. Surv., Record Office – File Report No. 2/2005, Prague, Czech Republic.

Lottermoser, 2002, Mobilization of heavy metals from historical smelting slag dumps, north Queensland, Australia, Mineral. Mag., 66, 475, 10.1180/0026461026640043

Lottermoser, 2005, Evaporative mineral precipitates from a historical smelting slag dump, Río Tinto, Spain, Neues Jahrb. Mineral. Abh., 181, 183

Magalhães, 2003, Stability of lead(II) arsenates, Monatsh. Chem., 134, 735, 10.1007/s00706-002-0581-9

Magalhães, 1988, The chemistry of formation of some secondary arsenate minerals of Cu(II), Zn(II) and Pb(II), Mineral. Mag., 52, 679, 10.1180/minmag.1988.052.368.12

Manasse, 2002, Chemical and textural characterization of medieval slags from the Massa Marittima smelting sites (Tuscany, Italy), J. Cult. Herit., 3, 187, 10.1016/S1296-2074(02)01176-7

Manasse, 2002, Archaeometallurgic slags from Kutná Hora, Neues Jahrb. Mineral. Mh., 2002, 369, 10.1127/0028-3649/2002/2002-0369

Manasse, 2001, The copper slags of the Capattoli Valley, Campiglia Marittima, Italy, Eur. J. Mineral., 13, 946, 10.1127/0935-1221/2001/0013/0949

Miller, 1983, The Pan-African Damara orogen of South West Africa/Namibia, 431

Navarro, 2008, Metal mobilization from base-metal smelting slag dumps in Sierra Almagrera (Almería, Spain), Appl. Geochem., 23, 895, 10.1016/j.apgeochem.2007.07.012

Ongopolo Mining and Processing Limited, 2001. Site Assessment at the Tsumeb Smelter. Phase 1. MS Report No. JW49/01/7818. Jones and Wagener Consulting Civil Engineers, Johannesburg, South Africa.

Parkhurst, D.L., Appelo, C.A.J., 1999. User’s guide to PHREEQC (version 2) – a computer program for speciation, batch-reaction, one-dimensional transport and inverse geochemical calculations. US Geol. Surv. Report 99-4259.

Parsons, 2001, Geochemical and mineralogical controls on trace element release from the Penn Mine base-metal slag dump, California, Appl. Geochem., 16, 1567, 10.1016/S0883-2927(01)00032-4

Piatak, 2004, Mineralogical and geochemical controls on the release of trace elements from slag produced by base- and precious-metal smelting at abandoned mine sites, Appl. Geochem., 19, 1039, 10.1016/j.apgeochem.2004.01.005

Puziewicz, 2007, Primary phases in pyrometallurgical slags from a zinc-smelting waste dump, Świętochłowice, Upper Silesia, Poland, Can. Mineral., 45, 1189, 10.2113/gscanmin.45.5.1189

Sáez, 2003, The extractive metallurgy of copper from Cabezo Juré, Huelva, Spain: chemical and mineralogical study of slags dated to the third millenium B.C., Can. Mineral., 41, 627, 10.2113/gscanmin.41.3.627

Seignez, 2007, Effect of Pb-rich and Fe-rich entities during alteration of a partially vitrified metallurgical waste, J. Hazard. Mater., 149, 418, 10.1016/j.jhazmat.2007.04.007

Šulcek, 1989

Tsumeb Corporation Ltd, 1987

USEPA, 1994. Toxicity Characteristic Leaching Procedure (TCLP), Method 1311, Solid Waste Characterization Manual SW-848, Test Methods for Evaluating Solid Waste, Physical/Chemical Methods, Athens, Georgia, USA <http://www.epa.gov>.

USEPA, 2005

USEPA, 2006

Van Gerven, 2005, Management of incineration residues in Flanders (Belgium) and in neighbouring countries. A comparison, Waste Manage., 25, 75, 10.1016/j.wasman.2004.09.002

Walmsley Environmental Consultants, 2001. Environmental Remediation of Sites Belonging to Ongopolo Mining and Processing Ltd. Part 3, Tsumeb Smelter Complex. Walmsley Environmental Consultants, Rivonia, South Africa.

Wartha, 1992, Lead and zinc

Zandi, 2007, Interpretation of standard leaching test BS EN 12457-2: is your sample hazardous or inert?, J. Environ. Monit., 9, 1426, 10.1039/b712957b