651
Views
0
CrossRef citations to date
0
Altmetric
Science

Abandoned underground mines in Nízký Jeseník Upland (Czechia)

, , &
Article: 2175733 | Received 02 Oct 2022, Accepted 26 Jan 2023, Published online: 15 Feb 2023

References

  • Bakala, J. (1972). Počátky těžby kovů v Nízkém Jeseníku a vznik Horního Benešova. ČSM B, 21, 161–179.
  • Barth, V. (1977). Čedičové vulkány střední části Nízkého Jeseníku. Časopis pro mineralogiia geologii, 22(3), 279–289.
  • Botor, D., Toboła, T., & Jelonek, I. (2017). Thermal history of the lower Carboniferous Culm Basin in the Nízký Jeseník Mts. (NE Bohemian Massif, Czech republic and Poland). Annales Societatis Geologorum Poloniae, 87(1), 13–40. https://doi.org/10.14241/ASGP.2017.002
  • Broughton, P. L. (2020). Zn2+-Pb2+-doped calcite shrub fabrics: Abiotic morphogenesis of travertine-like dripstone encrustation at the Jersey Zinc Mine, Southeastern British Columbia. American Journal of Science, 320(10), 851–891. https://doi.org/10.2475/12.2020.02
  • Carbone, C., Dinelli, E., & Waele, D. J. (2016). Characterization of minothems at Libiola (NW Italy): Morphological, mineralogical, and geochemical study. International Journal of Speleology, 45(2), 171–183. https://doi.org/10.5038/1827-806X.45.2.1944
  • Demek, J., Mackovčin, P., Balatka, B., Buček, A., Cibulková, P., Culek, M., Čermík, P., Dobiáš, D., Havlíček, M., Hrádek, M., Kirchner, K., Lacina, J., Pánek, T., Slavík, P., & Vašátko, J. (2006). Hory a nížiny. Zeměpisný lexikon ČR, 1–582.
  • Dolníček, Z. (2020). Recentní vznik limonitové bahení železné rudy v Hulíně (niva řeky Moravy). Bulletin Mineralogie Petrologie, 28(2), 2570–7345.
  • Falteisek, L., Drahota, P., Culka, A., Laufek, F., & Trubač, J. (2020). Bioprecipitation of As4S4 polymorphs in an abandoned mine adit. Applied Geochemistry, 113, 104511. https://doi.org/10.1016/J.APGEOCHEM.2019.104511
  • Heeb, B. (2008). Paperless Caving - An Electronic Cave Surveying System. 4th European 782 Speleological Congress, 1–4.
  • Hill, C. A., & Forti, P. (1997). Cave Minerals of the World: 2nd Edition, in: National Speleological Society, Huntsville. National Speleological Society, Huntsville, Alabama, 285–287.
  • Hrušecký, J. (1946). Dolování pokrývačských břidlic na severozápadní Moravě a ve Slezsku. Horník, 2(3), 42–44.
  • Jahn, J. (1917). Pamětní spis o nerostných pokladech Moravy. Moravskoslezský zemský národní výbor, 1, 1–77.
  • Jirásek, J., Matýsek, D., Přibil, M., Šmehil, K., & Minaříková, A. A. (2019). Slate industry at zálužné -mokřinky area (Silesia, czech republic) and its associated supergene minerals. Bulletin Mineralogie Petrologie, 27(1), 89–108.
  • Khalil, A., Hanich, L., Hakkou, R., & Lepage, M. (2014). GIS-based environmental database for assessing the mine pollution: A case study of an abandoned mine site in Morocco. Journal of Geochemical Exploration, 144(part C), 468–477. https://doi.org/10.1016/j.gexplo.2014.03.023
  • Kim, S. M., Suh, J., Oh, S., Son, J., Hyun, C. U., Park, H. D., Shin, S. H., & Choi, Y. (2016). Assessing and prioritizing environmental hazards associated with abandoned mines in Gangwon-do, South Korea: The Total Mine Hazards Index. Environmental Earth Science, 75, 369. https://doi.org/10.1007/s12665-016-5283-4
  • Kučera, K. (1948). Moravskoslezské horniny a jejich užití na silnicích. Ministerstvo techniky v Praze. Brno, 1–107.
  • Lenart, J., & Miklín, J. (2016). Pseudokarst caves of the Outer Western Carpathians, Czechia. Journal of Maps, 13(2), 37–46. http://doi.org/10.1080/17445647.2016.1252804
  • Longoni, L., Papini, M., Brambilla, D., Arosio, D., & Zanzi, L. (2016). The risk of collapse in abandoned mine sites: the issue of data uncertainty. Open Geosciences, 8(1), 246258. https://doi.org/10.1515/geo-2016-0022
  • Mackasey, W. O. (2000). Abandoned mines in Canada. Prepared for Mining Watch Canada. WOM Geological Associates Inc., 1–11
  • Mackin, J. H., & Coombs, H. A. (1945). An Occurrence of “Cave Pearls” in a Mine in Idaho. Journal of Geology, 53(1), 58–65. https://doi.org/10.1086/625245
  • Manaka, M. (2021). Morphology, mineralogy, and chemistry of ocherous precipitate aggregates downstream of an abandoned mine site. Minerals, 11(1), 1–13. https://doi.org/10.3390/min11010032
  • Melim, L. A., & Spilde, M. N. (2021). The rise and fall of cave pearl pools: Highly variable growth recrystallization and demise of a mine pearl site. Sedimentology, 68, 2165–2194. https://doi.org/10.1111/sed.12848
  • Mhlongo, E. S. (2015). A review of problems and solutions of abandoned mines in South Africa. International Journal of Mining, Reclamation and Environment, 30(4), 1–16. https://doi.org/10.1080/17480930.2015.1044046
  • Sawłowicz, Z., Przybyło, J., & Boroń, K. (2014). Colourful speleothems in the Wieliczka Salt Mine. Geological Quarterly, 58(3), 449–458. https://doi.org/10.7306/gq.1155
  • Schuchová, K., & Lenart, J. (2020). Geomorphology of old and abandoned underground mines: Review and future challenges. Progress in Physical Geography: Earth and Environment, 44(6), 791–813. https://doi.org/10.1177/0309133320917314
  • Stachowiak, A. (2013). Geostrada Sudecka : Przewodnik geologiczno-turystyczny. Państwowy Instytut Geologiczny.
  • Stanković, R., Vulović, N., Lilić, N., Obdadović, I., Tošović, R., & Pešić-Georgiadis, M. (2016). A WebGIS decision supporst system for management of Abandoned Mines. Energies, 9(7), 567. https://doi.org/10.3390/en9070567
  • Vavro, M., Souček, K., Daněk, T., Matýsek, D., Georgiovská, L., & Zajícová, V. (2018). Utilization X-ray computed micro-tomography to evaluate iron sulphide distribution in roofing slates. Quarterly Journal of Engineering Geology and Hydrogeology, 51, 169–178. https://doi.org/10.1144/qjegh2016-108
  • Werner, T. T., Bach, M. P., Yellishetty, M., Amirpoorsaeed, F., Walsh, S., Miller, A., Roach, M., Schnapp, A., Solly, P., Tan, Y., Lewis, C., Hudson, E., Heberling, K., Richards, T., Chia, C. H., Truong, M., Gupta, T., & Wu, X. (2020). A geospatial database for effective mine rehabilitation in Australia. Minerals, 10(9), 1–745. https://doi.org/10.3390/min10090745
  • Wichert, J. (2020). The Origin of Slate. Slate as dimension stone : Origin, standards, properties, mining and deposits. Springer. 1–492. https://doi.org/10.1007/978-3-030-35667-5_2
  • Zimák, J., Novotný, P., & Dobeš, P. (2005). Hydrothermal mineralization at Domašov nad Bystřicí in the Nízký Jeseník Uplands. Bulletin of Geosciences, 80(3), 213–221.