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HYDROGEOCHEMISTRY OF GROUNDWATER FROM ABANDONED RADZIMOWICE MINE (SUDETES, SW POLAND)

MARSZALEK1, Henryk, RYSIUKIEWICZ1, Michal, WASIK1, Miroslaw, COSTA2, Maria Rosario

First published: 2012-06-18https://doi.org/10.5593/sgem2012/s02.v2018View metrics

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  • Citations
  • CrossRef - Citation Indexes: 4
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  • Mendeley - Readers: 1

Publication details

Title
HYDROGEOCHEMISTRY OF GROUNDWATER FROM ABANDONED RADZIMOWICE MINE (SUDETES, SW POLAND)
Authors
MARSZALEK1, Henryk, RYSIUKIEWICZ1, Michal, WASIK1, Miroslaw, COSTA2, Maria Rosario
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; SGEM2012 12th International Multidisciplinary Scientific GeoConference
Publisher
Stef92 Technology
Year
2012
Pages
135 - 142 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
Keywords
References22
  1. Ball JW and Nordstrom DK. User’s manual for WATEQ4F, with revised thermodynamic data base and test cases for calculating speciation of major, trace, and redox elements in natural waters. U.S. Geological Survey Open-File Report, 1990.

  2. Freeze RA, Cherry JA. Groundwater. Prentice-Hall, New Jersey, 1979.

  3. Gandy CJ, Younger PL. Predicting groundwater rebound in the South Yorkshire Coalfield, UK. Mine Water Environ. 26: 70-78, 2007.

  4. Marszalek H, Wasik M. Arse nic in groundwater of selected mining areas in the Sudetes (SW Poland). in: Chambel A. ed. Pr oceedings of the 2nd Workshop of the IAH Iberian Regional Working Group on Hard Rock Hydrogeology. Evora. 97-106, 2006.

  5. Mikulski S. The late Vari scan gold mineralization in th e Kaczawa Mountains, Western Sudetes.Polish Geological Institute Special Papers, 22. Warszawa. p.132, 2007.

  6. Navarro MC, Pérez-Sirvent C, Martínez-Sánchez MJ, Vidal J, Tovar PJ, Bech J. Abandoned mine sites as a source of contamination by heavy meta ls: a case study in a semi-arid zone. Geochem Exploration.96: 183-193, 2008.

  7. Plumlee GS, Smith KS, Montour MR, Ficklin WH, and Mosier EL. Geologic Controls on the Composition of Natural Waters and Mine Waters Draining Diverse Mineral-Deposit Types. In: L.H. Filipek and G.S. Plumlee (Eds.), The Environmental Geochemistry of Mineral Deposits, Part B: Case Studies and Research Topics, Reviews in Economic Geology Vol. 6B, Society of Economic Geologists, Inc., 373-432, 1999.

  8. Parkhurst DL, Appelo CAJ. User’s Guide to PHREEQC (Version 2) – A Computer Program for Speciation, Reaction-Path, Advective Transport and Inverse Geochemical Calculations. USGS WRI Report 99-4259, 312 pp, 1999.

  9. Pereira MR, Montes R, Gomes E, Ferreira A, and Ávila P. Geochemistry of Soils and Waters from the Abandoned Freixeda Gold Mine, Northeast Portugal. In Rev. da Soc. Española de Mineralogía y Universidad de Sevilla, MACLA nº 10, pp. 136-137. ISSN 1885-7244, 2008.

  10. Pereira MR, Novais HJ, Ávila P and Ferreira A. Geochemistry of Arsenic from groundwater in the Ervedosa Mine (Tin), Portugal. In Memórias Nº 12, Geochemistry of Arsenic International Workshop. Universidade do Porto – Faculdade de Ciências, Dep. Geologia, pp. 47-51, 2008.

  11. Wolkersdorfer C, Bowell R. (eds). Contemporary reviews of mine water sudies in Europe. Mine Water Environ. 24: Supplement, 2005. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org

  12. Ball JW and Nordstrom DK. User’s manual for WATEQ4F, with revised thermodynamic data base and test cases for calculating speciation of major, trace, and redox elements in natural waters. U.S. Geological Survey Open-File Report, 1990.

  13. Freeze RA, Cherry JA. Groundwater. Prentice-Hall, New Jersey, 1979.

  14. Gandy CJ, Younger PL. Predicting groundwater rebound in the South Yorkshire Coalfield, UK. Mine Water Environ. 26: 70-78, 2007.

  15. Marszalek H, Wasik M. Arse nic in groundwater of selected mining areas in the Sudetes (SW Poland). in: Chambel A. ed. Pr oceedings of the 2nd Workshop of the IAH Iberian Regional Working Group on Hard Rock Hydrogeology. Evora. 97-106, 2006.

  16. Mikulski S. The late Vari scan gold mineralization in th e Kaczawa Mountains, Western Sudetes.Polish Geological Institute Special Papers, 22. Warszawa. p.132, 2007.

  17. Navarro MC, Pérez-Sirvent C, Martínez-Sánchez MJ, Vidal J, Tovar PJ, Bech J. Abandoned mine sites as a source of contamination by heavy meta ls: a case study in a semi-arid zone. Geochem Exploration.96: 183-193, 2008.

  18. Plumlee GS, Smith KS, Montour MR, Ficklin WH, and Mosier EL. Geologic Controls on the Composition of Natural Waters and Mine Waters Draining Diverse Mineral-Deposit Types. In: L.H. Filipek and G.S. Plumlee (Eds.), The Environmental Geochemistry of Mineral Deposits, Part B: Case Studies and Research Topics, Reviews in Economic Geology Vol. 6B, Society of Economic Geologists, Inc., 373-432, 1999.

  19. Parkhurst DL, Appelo CAJ. User’s Guide to PHREEQC (Version 2) – A Computer Program for Speciation, Reaction-Path, Advective Transport and Inverse Geochemical Calculations. USGS WRI Report 99-4259, 312 pp, 1999.

  20. Pereira MR, Montes R, Gomes E, Ferreira A, and Ávila P. Geochemistry of Soils and Waters from the Abandoned Freixeda Gold Mine, Northeast Portugal. In Rev. da Soc. Española de Mineralogía y Universidad de Sevilla, MACLA nº 10, pp. 136-137. ISSN 1885-7244, 2008.

  21. Pereira MR, Novais HJ, Ávila P and Ferreira A. Geochemistry of Arsenic from groundwater in the Ervedosa Mine (Tin), Portugal. In Memórias Nº 12, Geochemistry of Arsenic International Workshop. Universidade do Porto – Faculdade de Ciências, Dep. Geologia, pp. 47-51, 2008.

  22. Wolkersdorfer C, Bowell R. (eds). Contemporary reviews of mine water sudies in Europe. Mine Water Environ. 24: Supplement, 2005. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org

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Number of times cited according to Crossref: 4

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