From mantle to critical zone: A review of large and giant sized deposits of the rare earth elements

被引:131
作者
Smith, M. P. [1 ]
Moore, K. [2 ]
Kavecsanszki, D. [2 ]
Finch, A. A. [3 ]
Kynicky, J. [4 ]
Wall, F. [2 ]
机构
[1] Univ Brighton, Sch Environm & Technol, Lewes Rd, Brighton BN2 4GJ, E Sussex, England
[2] Univ Exeter, Camborne Sch Mines, Exeter EX4 4QJ, Devon, England
[3] Univ St Andrews, Dept Earth & Environm Sci, St Andrews KY16 9AJ, Fife, Scotland
[4] Mendel Univ Brno, Dept Geol & Pedol, Brno, Czech Republic
关键词
Carbonatite; Giant deposit; Grade; Rare earth elements; Syenite;
D O I
10.1016/j.gsf.2015.12.006
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The rare earth elements are unusual when defining giant-sized ore deposits, as resources are often quoted as total rare earth oxide, but the importance of a deposit may be related to the grade for individual, or a limited group of the elements. Taking the total REE resource, only one currently known deposit (Bayan Obo) would class as giant (>1.7 x 10(7) tonnes contained metal), but a range of others classify as large (>1.7 x 10(6) tonnes). With the exception of unclassified resource estimates from the Olympic Dam IOCG deposit, all of these deposits are related to alkaline igneous activity - either carbonatites or agpaitic nepheline syenites. The total resource in these deposits must relate to the scale of the primary igneous source, but the grade is a complex function of igneous source, magmatic crystallisation, hydrothermal modification and supergene enrichment during weathering. Isotopic data suggest that the sources conducive to the formation of large REE deposits are developed in subcontinental lithospheric mantle, enriched in trace elements either by plume activity, or by previous subduction. The reactivation of such enriched mantle domains in relatively restricted geographical areas may have played a role in the formation of some of the largest deposits (e. g. Bayan Obo). Hydrothermal activity involving fluids from magmatic to meteoric sources may result in the redistribution of the REE and increases in grade, depending on primary mineralogy and the availability of ligands. Weathering and supergene enrichment of carbonatite has played a role in the formation of the highest grade deposits at Mount Weld (Australia) and Tomtor (Russia). For the individual REE with the current highest economic value (Nd and the HREE), the boundaries for the large and giant size classes are two orders of magnitude lower, and deposits enriched in these metals (agpaitic systems, ion absorption deposits) may have significant economic impact in the near future. (C) 2016, China University of Geosciences (Beijing) and Peking University. Production and hosting by Elsevier B.V.
引用
收藏
页码:315 / 334
页数:20
相关论文
共 172 条
  • [1] Anderson A.K., Cosca M.A., Larson P.B., Timing of carbonatite magmatism in the Bear lodge alkaline complex, Geological Society of America Abstracts with Programs, 45, (2013)
  • [2] Arzamastsev A., Yakovenchuk V., Pakhomovsky Y., Ivanyuk G., The Khibina and Lovozero Alkaline Massifs: Geology and Unique Mineralization. IGC 33, Excursion Guide No 47, IUGS, 58pp, (2008)
  • [3] Rare Metals Incorporated A., Project Fact Sheet, (2013)
  • [4] Baatar M., Ochir G., Kynicky J., Iizumi S., Comin-Chiaramonti P., Some notes on the Lugin Gol, Mushgai Khudag and Bayan Khoshuu alkaline complexes, Southern Mongolia, International Journal of Geosciences, 4, pp. 1200-1214, (2013)
  • [5] Bailey D.K., Carbonate magmas, Journal of the Geological Society of London, 150, pp. 637-651, (1993)
  • [6] Bao Z., Zhao Z., Geochemistry of mineralization with exchangeable REY in the weathering crusts of granitic rocks in South China, Ore Geology Reviews, 33, pp. 519-535, (2008)
  • [7] Barton M.D., Johnson D.A., Evaporitic-source model for igneous-related Fe oxide-(REE-Cu-Au-U) mineralization, Geology, 24, pp. 259-262, (1996)
  • [8] Barton M.D., Johnson D.A., Alternative brine sources for Fe-oxide(-Cu-Au) systems: Implications for hydrothermal alteration and metals, Hydrothermal Iron Oxide Copper-gold and Related Deposits: A Global Perspective, pp. 43-60, (2000)
  • [9] Bell K., Blenkinsop J., Nd and Sr isotopic compositions of East African carbonatites: Implications for mantle heterogeneity, Geology, 15, pp. 99-102, (1987)
  • [10] Bell K., Blenkinsop J., Archean depleted mantle: Evidence from Nd and Sr initial ratios of carbonatites, Geochimica et Cosmochimica Acta, 51, pp. 291-298, (1987)