2019 Vol. 38, No. 11
Article Contents

LIN Ziyu, NIE Fengjun, ZHANG Shihong, XU Chixiang, YU Qian. The life of Ranger 1 uranium mine in Australia: Geology, resources, production and rehabilitation[J]. Geological Bulletin of China, 2019, 38(11): 1867-1876.
Citation: LIN Ziyu, NIE Fengjun, ZHANG Shihong, XU Chixiang, YU Qian. The life of Ranger 1 uranium mine in Australia: Geology, resources, production and rehabilitation[J]. Geological Bulletin of China, 2019, 38(11): 1867-1876.

The life of Ranger 1 uranium mine in Australia: Geology, resources, production and rehabilitation

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  • The tectonic setting of Ranger uranium deposit, also ARUF, is Pine Creek orogen, which was developed from the Paleoproterozoic rift in the Archean craton of North Australia. The orebodies lie under the interface between the Neoarchaean-Paleoproterozoic crystallization-metamorphic basement and Late Paleo-Mesoproterozoic Kombolgie red bed formations. There are three epochs of uranium mineralization, which are U1:1720~1680Ma, U2:1420~1040Ma and U3:474±6Ma. U1 is the main mineralization epoch.The deposit was discovered by aerial radioactivity survey in late 1969. No. 1 and No. 3 orebodies were delineated by exploration in the 1970's, with a total resource of 124681t@0.23% U3O8. From October 1980 to December 2018, a total of 128739t U3O8 was produced by open-pit mining. Since fiscal year 1985, ERA has sold 119882t U3O8 from Ranger uranium mine to the nuclear energy market in the world. In 2009, No. 3 deep orebody was discovered, with reserves of 43857t@0.22% U3O8, which will be exploited by underground mining. It is expected that the geomorphological landscape and ecological environment of the mining area will be restored by 2026.This paper further discusses the prospecting direction of Proterozoic unconformity uranium deposits in northern Australia, the significance of sustained and stable uranium mining and production, and the political and legal issues that need attention in investing in Australian uranium mining. These contents can provide references for China's mining enterprises and geological exploration units to rationally deploy Australian uranium exploration and development.

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  • [1] NEA, IAEA. Uranium 2016:Resources, Production and Demand[J]. OECD Publishing, 2017.

    Google Scholar

    [2] Lally J H, Bajwah Z U. Uranium deposits of the Northern Territory[J]. Northern Territory Geological Survey, 2006.

    Google Scholar

    [3] Pirajnoa F, Bagas L. A review of Australia's Proterozoic mineral systems and genetic models[J]. Precambrian Research, 2008, 166(1):54-80.

    Google Scholar

    [4] Skirrow R G, Mercadier J, Armstrong R, et al. The Ranger uranium deposit, northern Australia:Timing constraints, regional and ore-related alteration, and genetic implications for unconformityrelated mineralisation[J]. Ore Geology Reviews, 2016, 76:463-503. doi: 10.1016/j.oregeorev.2015.09.001

    CrossRef Google Scholar

    [5] Worden K, Carson C, Scrimgeour I, et al. A revised Palaeoproterozoic chronostratigraphy for the Pine Creek Orogen, northern Australia:evidence from SHRIMP U-Pb zircon geochronology[J]. Precambrian Research, 2008, 166(1):122-144.

    Google Scholar

    [6] Hollis J A, Carson C J, Glass L M. SHRIMP U-Pb zircon geochronological evidence for Neoarchean basement in western Arnhem Land, northern Australia[J]. Precambrian Research, 2009, 174(3):364-380.

    Google Scholar

    [7] Hollis J A, Glass L M, Carson C J, et al. The geological evolution of the Pine Creek Orogen: new pieces in the puzzle on orogen and craton scale[C]//Annual Geoscience Exploration Seminar (AGES). 2011.

    Google Scholar

    [8] Hollis J A, Wygralak A S. A review of the geology and uranium, gold and iron ore deposits of the Pine Creek Oroge[J]. Episodes News Mag. 2012, 35(1):264-272. doi: 10.18814/epiiugs/2012/v35i1/026

    CrossRef Google Scholar

    [9] Annesley I R, Madore C, Kwok Y Y, et al. U-Pb geochronology and petrochemistry of late Barramundi pegmatites from the Ranger U deposit, Northern Territory, Australia[C]//Uranium deposits. International workshop, Prague, 2002: 37-40.

    Google Scholar

    [10] Stuart-Smith P G, Needham R S, Page R W, et al. Geology and mineral deposits of the Cullen mineral filed, Northern Territory[J]. Bureau of Mineral Resources, Geology and Geophysics, Bulletin, 1993, 229:67-77.

    Google Scholar

    [11] Page R W, Needham R S, Compston W. Geochronology and Evolution of the Late-Archaean Basement and Proterozoic Rocks in the Alligator Rivers Uranium Field, Northern Territory, Australia[C]//Ferguson J, Gobely A B. Uranium in the Pine Creek Geosyncline. IAEA, Vienna, 1980: 39-68.

    Google Scholar

    [12] Mercadier J, Skirrow R G, Cross A J. Uranium and gold deposits in the Pine Creek Orogen (North Australian Craton):a link at 1.8Ga?[J]. Precambrian Research, 2013, 238:111-119. doi: 10.1016/j.precamres.2013.10.001

    CrossRef Google Scholar

    [13] Needham R S, StuartSmith P G. Geology of the Alligator Rivers Uranium Field, Northern Territory[J]. Bureau of Mineral Resources, Geology and Geophysics, Bulletin, 1988:1-224.

    Google Scholar

    [14] Bull S W, Rogers J R. Recognition and significance of an early compressional deformation event in the Tawallah Group, McArthur Basin.[C]//NT.MIC'96. New developments in Metallogenic Research, 1996: 28-32.

    Google Scholar

    [15] Scott D L, Rawlings D J, Page R W, et al. Basement framework and geodynamic evolution of the Palaeoproterozoic superbasins of north-central Australia:an integrated review of geochemical, geochronological and geophysical data[J]. Journal of the Geological Society of Australia, 2000, 47(3):341-380.

    Google Scholar

    [16] Polito P A, Kyser T K, Marlatt J, et al. Significance of alteration assemblages for the origin and evolution of the Proterozoic Nabarlek unconformity-related uranium deposit, Northern Territory, Australia[J]. Economic Geology, 2004, 99(1):113-139.

    Google Scholar

    [17] Polito P A, Kyser T K, Thomas D, et al. Re-evaluation of the petrogenesis of the Proterozoic Jabiluka unconformity-related uranium deposit, Northern Territory, Australia[J]. Mineralium Deposita, 2005, 40(3):257-288. doi: 10.1007/s00126-005-0007-9

    CrossRef Google Scholar

    [18] Hiatt E E, Kyser T K, Fayek M, et al. Early quartz cements and evolution of paleohydraulic properties of basal sandstones in three Paleoproterozoic continental basins:evidence from in situ δ18O analysis of quartz cements[J]. Chemical Geology, 2007, 238(1):19-37.

    Google Scholar

    [19] Sweet I P, Brakel A T, Carson L. The Kombolgie Subgroup a newlook at an old formation[J]. Journal of Earth Sciences, 1999, 45(219):232.

    Google Scholar

    [20] McCoy A, Pope A, Schaubs P. Structural Setting of the Ranger Uranium Orebodies, Implications for Exploration[C]//AusIMM International Uranium Conference, 2009.

    Google Scholar

    [21] Hein K A A. Geology of the Ranger Uranium Mine, Northern Territory, Australia:structural constraints on the timing of uranium emplacement[J]. Ore Geology Reviews, 2002, 20(34):83-108.

    Google Scholar

    [22] Kendall C J. Ranger uranium deposits[C]//Hughes F E. Geology of the mineral deposits of Australia and Papua New Guinea. The Australasian Institute of Mining and Metallurgy, 1990, 1: 799-805.

    Google Scholar

    [23] Savory P J. Geology and grade control at ERA-Ranger Mine, Northern Territory, Australia[C]//Hallenstein C P. Australian Mining Looks North-The Challenges and Choices. AusIMM Annual Conference. The Australian Institute of Mining and Metallurgy, Melbourne, 1994: 97-101.

    Google Scholar

    [24] Hegge M R, Rowntree J C. Geologic setting and concepts on the origin of uranium deposits in the East Alligator River Region, N.T., Australia[J]. Economic Geology, 1978, 73(8):1420-1429. doi: 10.2113/gsecongeo.73.8.1420

    CrossRef Google Scholar

    [25] 汪诗明, 王艳芬.论《兰杰协定》的签署[J].华东师范大学(哲学社会科学版), 2016, 48(5):102-111.

    Google Scholar

    ERA. Annual Report 1981—2018[EB/OL](2019-04-01)[2019-04-01]http://www.energyres.com.au/media/reports/.

    Google Scholar

    IAEA. Questionnaire to Member States, 2017/2018[EB/OL](2018-08-20)[2019-03-20]https://infcis.iaea.org/NFCIS/FacilityDetails/266?Country=Australia&Status=All&Type=All&Scale=All&SText=2018.

    Google Scholar

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