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Potential conflicts connected with the recovery of secondary materials from post mining waste dump Cover

Potential conflicts connected with the recovery of secondary materials from post mining waste dump

By: Łukasz Gawor  
Open Access
|Dec 2017

References

  1. Gabzdyl W. 1994. Geologia złóż węgla. Złoża świata. Polska Agencja Ekologiczna, Warszawa.
  2. Gawor Ł. 2011. Der Einfluss von Rechtsvorschriften auf Rekultivierung und Folgenutzung von Bergehalden am Beispiel des Oberschlesischen Steinkohlebeckens und des Ruhrgebietes. Wyd. Politech. Śląskiej, Gliwice.
  3. Gawor Ł. 2014a. Coal mining waste dumps as secondary deposits exemplified on Upper Silesian Coal Basin and Lublin Coal Basin. Geol., Geoph. Environ., 40(3):285–289.
  4. Gawor Ł. 2014b. Polish legal regulations considering recovery of secondary materials from coal mining dumping grounds. Environ. Socio-econ. Stud., 2, 4: 43–46.
  5. Gawor Ł., Jankowski A.T., Ruman M. 2011. Post-mining dumping grounds as geotourist attractions in the Upper Silesian Coal Basin and the Ruhr District. Moravian Geogr. Reports, 19, 4: 61–68.
  6. Gray N.F. 1997. Environmental impact and remediation of acide mine drainage: a management problem. Environ. Geology, 30: 62–71.
  7. Hansel G., Schulz D. 1996. Gestaltung, Bodenentwicklung und Begrünung von Bergehalden des Steinkohlenbergbaus. Geol. Jahrbuch, Reihe A, 199, 144: 165–180.
  8. Kuna-Gwoździewicz P. 2013. Emission of polycyclic aromatic hydrocarbons from the exhalation zones of thermally active mine waste dumps. J. Sust. Min., 12, 1: 7–12.
  9. Martinec P. et al., 2006. Termination of underground coal mining and its impact on the environment. Inst. Geonics Acad. Sci., Czech Republic, Ostrava.
  10. Nyssen J., Vermeersch D. 2010. Slope aspect affects geomorphic dynamics of coal mining spoil heaps in Belgium. Geomorphology, 123(1-2): 109–121.
  11. Schulz D. 2004. Recultivation of mining waste dumps in the Ruhr area, Germany. Water Air Soil Pollut., 91(1-2): 89–98.
  12. Stefaniak S., Twardowska I. 2005. Changes in the hydrogeochemical profile of the anthropogenic vadose zone resulted from the re-mining and re-disposal of coal extractive waste. Zesz. Nauk. Politech. Śl., Górnictwo, 267: 269–276.
  13. Szczepańska J., Twardowska I. 1999. Distribution and environmental impact of coal mining wastes in Upper Silesia. Poland. Environ. Geology, 38, 3: 249–258.10.1007/s002540050422
  14. Szczepańska J., Twardowska I. 2004. Mining waste. [in:] Twardowska et al. (eds.) Solid waste: assessment, monitoring and remediation. Elsevier, Amsterdam: 319–386.
  15. www.haldex.com.pl
Language: English
Page range: 82 - 86
Submitted on: Oct 30, 2017
Accepted on: Dec 13, 2017
Published on: Dec 29, 2017
Published by: University of Silesia in Katowice, Institute of Mathematics
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 Łukasz Gawor, published by University of Silesia in Katowice, Institute of Mathematics
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.