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Stan rozpoznania oceanicznych zasobów mineralnych

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Treść / Zawartość
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Warianty tytułu
EN
The state of knowledge concerning on oceanic mineral resources
Języki publikacji
PL
Abstrakty
EN
For the past 50 years, Poland has been actively involved in the research on marine mineral resources. Since 1987, research cruises and documentation of the polymetallic concretions (Fe-Mn) in the Clarion-Clipperton Zone on the Pacific seabed have been performed as part of the Interoceanmetal project. In 2016, the IOM presented a report to the ISA on the past research and new technologies for processing concretions, together with an economic analysis regarding the process of development of concretion deposits. In 2018, ISA granted Poland the right to search for polymetallic sulphides in the Atlantic Ocean. At the same time, a government project called PRoGEo was launched to encourage the reconnaissance search for marine minerals. This opens a new chapter in the history of Polish participation in the search for marine mineral deposits. Poland is an active participant in international organization, created based on the Convention on the Law of the Sea. Initially, Polish involvement was limited to legal matters, and then extended to geology of the sea and marine mineral deposits. A more active role of Poland in marine exploration during the last years requests to familiar Polish geologists with the current stage of knowledge about marine resources. The current state of knowledge of marine mineral deposits, though still requiring further research, is sufficient to plan their development in the near future. This paper argues that the deposits of polymetallic sulphides, Co-rich crust, gas hydrates and polymetallic concretions will likely be developed first.
Rocznik
Strony
189--194
Opis fizyczny
Bibliogr. 54 poz., rys., tab., wykr.
Twórcy
autor
  • Wydział Geologii, Uniwersytet Warszawski, ul. Żwirki i Wigury 93, 02-089 Warszawa
Bibliografia
  • 1. ABRAMOWSKI T., STEFANOVA V.P., CAUSSE P., ROMANCHUK A. 2017 - Technologies for the processing of polymetallic nodules from Clarion-Clipperton Zone in the Pacific Ocean. J. Chem. Techn. Metall., 52 (2): 258-269.
  • 2. ATSB 2017 - http://www.atsb.gov.au/media/5773565/operational-search-for-mh370_final_3oct2017.pdf.
  • 3. BERRY W., McGIVERN A., THIELE T., WILHELM C., GJERDE K. 2017 - Deep seabed mining: A rising environmental challenge. IUCN Global Marine and Polar Programme. https://www.iucn.org/sites/dev/files/content/documents/dsm_report_14.08.2017.pdf.
  • 4. CHANEY R.C., ALMAGORG. 2017 - Seafloor Processes and Geotechnology. CRC Press: 558.
  • 5. CHERKASHOV G. 2017 - Seafloor Massive Sulphide Deposits: Distribution and Prospecting. [W:] Sharma R. (red.), Deep-Sea Mining. Resource Potential, Technical and Environmental Considerations. Springe: 143-164.
  • 6. CHERKASHOV G., POROSHINA I., STEPANOVA T., IVANOV V., BEL’TENEV V., LAZAREVA L., ROZHDESTVENSKAYA I., SAMOVAROV M., SHILOV V., GLASBY G.P., FOUQUET Y., KUZNETSOV V. 2010 - Seafloor massive sulfides from the Northern Equatorial Mid-Atlantic Ridge: new discoveries and perspectives. Marin. Georesourc. Geotechnol., 28: 222-239.
  • 7. CHONG Z.R., YANG S.H.B., BABU P., LINGA P., LIX.2016- Review of natural gas hydrates as an energy resource: Prospects and challenges. Applied Energy, 162: 1633-1652.
  • 8. CIAZELA J., KOEPKE J., DICK H.J.B., MUSZYNSKI A. 2015-Mantle rock exposures at oceanic core complexes along mid-ocean ridges. Geologos, 4: 207-231. DOI: https://www.degruyter.com/download.pdf/j/logos.2015.21.issue-4/logos-2015-0017/logos-2015-0017.pdf.
  • 9. CIĄŻELA J., DICK H.J.B., MACLEOD J.C., BLUM P. 2016-Ekspedycja IODP 360: pierwszy etap odwiertu do płaszcza Ziemi. Prz. Geol., 64 (11): 889-895.
  • 10. CRONAN D.S. 2000 - Marine Minerals Deposits. CRC Press LLC. DASS R.P., ANAND S. 2017 - Metallurgical Processing of Polymetallic Ocean Nodules. [W:] Sharma R. (red.), Deep-Sea Mining. Resource Potential, Technical and Environmental Considerations. Springer: 365-394.
  • 11. DIMITROVA D., MILAKOVSKA Z., PEYTCHEVA I., STEFANOVA E., STOYANOVA V., ABRAMOWSKI T., WÄLLE M. 2014 - Trace element and REY composition of polymetallic nodules from the eastern Clarion Clipperton Zone (Northern Pacific Ocean) determined by in situ LA-ICP-MS analyses. Comptes rendus de l’Académie bulgare des sciences, 67 (2).
  • 12. EU 2014 - Study to investigate the state of knowledge of deep-sea mining. Final Report under FWC MARE/2012/06 - SC E1/2013/04. https://webgate.ec.europa.eu/maritimeforum/sites/maritimeforum/files/FGP96656_DSM_Final_report.pdf
  • 13. FOQUET Y., LACROIX D. 2014 - Study summary. [W:] Foquet Y., Lacroix D. (red.), Deep Marine Mineral Resources. Springer: 3-40.
  • 14. FOQUET Y., LACROIX D. (red.) 2014 - Deep Marine Mineral Resources. Springer: 149.
  • 15. FRANZEN J., BALAZ P. 2012 - Rare Earth Elements in the Polymetallic Nodules-a New Challenge. [W:] The Proceedings of the 23rd International Offshore and Polar Engineering Conference. Rhodes, Greece: 112-116.
  • 16. GLASBY G.P. (red.) 1977- Marine Manganese Deposits. Elsevier Oceanography Ser., 15: 523.
  • 17. GURVICH E.G. 2006 - Metalliferous Sediments of the World Ocean. Fundamental Theory of Deep-Sea Hydrothermal Sedimentation. Springer Verlag.
  • 18. HANNINGTON M., PETERSEN S. 2016-A Discussion Paper on Marine Minerals. National Ocean Exploration Forum, October 20-21, 2016. http://oceanexplorer.noaa.gov/national-forum/noef2016-hannington-petersen.pdf.
  • 19. HALBACH P., JAHN A. 2016 - Concentrations and metal potentials of REEs in marine polymetallic nodule and Co-rich crust deposits. [W:] Abramowski T. (red.), Deep see mining value chain: organization, technology and development. IOM, Szczecin: 119-132.
  • 20. HALBACH P.E., JAHN A., CHERKASHOV G.2017- Marine Co-Rich Ferromanganese Crust Deposits: Description and Formation, Occurrences and Distribution, Estimated World-wide Resources. [W:] Sharma R. (red.), Deep-Sea Mining. Resource Potential, Technical and Environmental Considerations. Springer: 65-141.
  • 21. HEIN J.R. 2012 - Prospects for Rare Earth Elements from Marine Minerals. Briefing paper, 2. ISA.
  • 22. HEIN J.R., KOSCHINSKY A. 2013 - Deep-ocean ferromanganese crusts and nodules. [W:] Scott S. (red.), The Treatise on Geochemistry. Elsevier, 12: 273-290.
  • 23. HEIN J.R., MIZELL K., KOSCHINSKY A., CONRAD T.A. 2013 - Deep-ocean mineral deposits as a source of critical metals for high- and green-technology applications: Comparison with land-based resources. Ore Geology Rev., 51: 1-14.
  • 24. HEKINIAN R. 2014 - Sea floor exploration. Scientific Adventures Diving into the Abyss. Springer Oceanography: 370. https://walrus.wr.usgs.gov/research/projects/pac_eez_pubs.html. https://www.isa.org.jm/news/poland-applies-approval-plan-work-exploration-polymetallic-sulphides.
  • 25. IOM 2016 - Technical report on the Interoceanmetal Joint Organization polymetallic nodules project in the Pacific Ocean Clarion-Clipperton Fracture Zone.
  • 26. ISA 2010 - A Geological Model of Polymetallic Nodule Deposits in the Clarion-Clipperton Fracture Zone. ISA Technical Study, 6: 105.
  • 27. ISA 2014 - Polymetallic Nodules Resource Classification. ISA Technical Study, 19. International Seabed Authority and Ministry of Earth Sciences, Government of India Workshop held in Goa, India, 13-17 October, 2014. https://www.isa.org.jm/sites/default/files/files/documents/ts19final-web.pdf.
  • 28. JĘDRYSEK O.M. 2008 - Deep-Ocean Exploration of Metals Ore Deposits Controlled by the International Seabed Authority: Selected Aspects of the Present State and Possible Mining. [W:] Kicki & Sobczyk (red.), 21st WMC & Expo 2008. Taylor & Francis Group, London, UK. http://jedrysek.eu/articles/Deep-ocean_exploration_of_metals.PDF.
  • 29. KATO Y., FUJINAGAK., NAKAMURAK., TAKAYAY., KITAMURAK., OHTAJ., TODAR., NAKASHIMAT., IWAMORI H.2011- Deep-sea mud in the Pacific Ocean as a potential resource for rare earth elements. Nat. Geosci., 4: 535-539.
  • 30. KOSCHINSKY A., HEIN J.R. 2003 - Uptake of elements from seawater by ferromanganese crusts: solid-phase associations and seawater speciation. Mar. Geol., 198: 331-351.
  • 31. KOTLIŃSKI R. 1999 - Metallogenesis of the world’s ocean against the background of oceanic crust evolution. Polish Geol. Inst. Spec. Pap., 4:1-70.
  • 32. KOTLIŃSKI R. 2001 - Mineral Resources of the world’s ocean - their importance for global economy in the 21st century.[ W:] Procc. of the ISOPE Ocean mining symposium, Szczecin, Poland: 1-7.
  • 33. KOTLIŃSKI R., PARIZEK A., REZEK K. 1997 - Polymetallic Nodules -A Possible Source of Rare Earth Elements. [W:] The Proceedings of the 2nd ISOPE - Ocean Mining Symposium, Seoul, Korea: 50-56.
  • 34. KOTLIŃSKI R., SZAMAŁEK K. (red.) 1998 -Surowce mineralne mórz i oceanów. Wyd. Nauk. Scholar, Warszawa: 384.
  • 35. KOTLIŃSKI R., MACIĄG L., ZAWADZKI D. 2015 - Potential and recent problems of the possible polymetallic sources in the oceanic deposits. Geologija i poleznye iskopaemye Mirovogo okeana, 2 (40): 65-80.
  • 36. KUHN T., WEGORZEWSKI A., RŮHLEMANN C., VINK A. 2017 - Composition, Formation and Occurrence of Polymetallic Nodules. [W:] Sharma R. (red.), Deep-Sea Mining. Resource Potential, Technical and Environmental Considerations. Springer: 23-63.
  • 37. LIPTON I. 2012 - Mineral Resource Estimate: Solwara Project, Bismarck Sea, PNG. Technical Report compiled under N143-101. Golder Associates for Nautilus Minerals Nuigini Inc.
  • 38. LI X.S., XU C.G., ZHANG Y., RUAN X.K., LI G., WANG Y. 2016 - Investigation into gas production from natural gas hydrate: A review. Elsevier, Applied Energy, 172: 286-322. https://doi.org/10.1016Zj.ape- nergy.2016.03.101.
  • 39. MAKOGONY.F. 1997 - Hydrates of Hydrocarbons. Tulsa: 482.
  • 40. MAKOGON Y.F. 2010 - Natural gas hydrates - A promising source of energy. J. Natural Gas Scien. Eng., 2: 49-59.
  • 41. MARINE MINERALS: Exploring our new ocean frontiers. 1987. US Congress, Office of Technology Assessment.
  • 42. PETERSEN S., KRATSCHELL A., AUGUSTIN N., JAMIESON J., HEIN J.R., HANNINGTON M.D. 2016 - News from the seabed-geological characteristics and resource potential of deep-sea mineral resources. Mar. Policy, 70: 175-187. https://doi:10.1016/j.marpol.2016.03.012i.
  • 43. PIETEK G., LESZCZYŃSKA-SEJDA K., GOTFRYD L., BENKE G., SZOŁOMICKI Z., CHMIELARZ A. 2016 - Hydrometallurgical metals recovery from nodules. [W:] Deep see mining value chain: organization, technology and development. Abramowski T. (red.), IOM Szczecin: 173-181.
  • 44. SAGER W.W., ZHANG J., KORENAGA J., SANO T., KOPPERS A.A.T., WIDDOWSON D., MAHONEY J.J. 2013 - An immense shield volcano within the Shatsky Rise oceanic plateau, northwest Pacific Ocean. Nat. Geosci., 6: 976-981. doi:10.1038/ngeo1934.
  • 45. SHARMAR. (red.) 2017 - Deep-Sea Mining. Resource Potential, Technical and Environmental Considerations. Springer: 535.
  • 46. SUZUKI K., ISHIBASHI J.I., KATO Y., NOZAKI T. 2016 - Preface: Front edge of submarine mineral resources research in Japan (Part 2). Geochem. J., 50: 449-452.
  • 47. SZAMAŁEK K. 2004 - International Research Project on Gas Hydrates: Hydrates in Oceans - Programme of Exploration (HOPE), Prz. Geol., 52 (8/2): 813-816.
  • 48. SZAMAŁEK K. 2010 - Szanse i uwarunkowania zagospodarowania kopalin z dna mórz i oceanów. [W:] Materiały XIX Szkoły Eksploatacji Podziemnej. IGSMiE PAN Kraków: 50-72.
  • 49. SZAMAŁEK K.2011- Surowce mineralne z dna mórz i oceanów - stan rozpoznania i perspektywy. Górn. Geoinż., 35 (4/1): 353-370.
  • 50. SZAMAŁEK K., MARCINOWSKA A., NEJBERT K., SPECZIK S. 2011 - Sea-floor massive sulphides from the Galapagos Rift Zone - mineralogy, geochemistry and economic importance. Geol. Quart., 55 (3): 187-202.
  • 51. UCHWAŁA RM z dnia 25 lipca 2017 r. w sprawie stanowienia wieloletniego programu „Program Rozpoznania Geologicznego Oceanów” - PRoGeO. http://monitorpolski.gov.pl/mp/2017/774.
  • 52. YASUKAWA K., NAKAMURA K., FUJINAGA K., MACHIDA S., OHTA J., TAKAYA Y., KATO Y.2015- Rare-earth, major, and trace element geochemistry of deep-sea sediments in the Indian Ocean: Implications for the potential distribution of REY-rich mud in the Indian Ocean. Geochem. J., 49: 621-635.
  • 53. ZARZĄDZENIE Ministra Środowiska z dnia z dn. 22 grudnia 2017 r. w sprawie powołania Zespołu do spraw realizacji programu wieloletniego „Programu Rozpoznania Geologicznego Oceanów PRoGEo”. Dz.U. z 2017 r. poz.104.
  • 54. ZAWADZKI D., MACIĄG Ł., KOTLIŃSKI R.2015 - Osady eupelagiczne jako potencjalne źródło pozyskiwania pierwiastków ziem rzadkich. Biul. Państw. Inst. Geol., 465: 131-142.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-533cb900-0f58-4344-8c34-f4f608065217
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