陶琰,高振敏,罗泰义,等.云南金宝山超镁铁岩原始岩浆成分反演[J].岩石学报, 2002,18(1):70-82.
Google Scholar
|
TAO Yan, GAO Zhenmin, LUO Taiyi,et al. Inversion of primary magma composition for Jinbaoshan ultramafic intrusion, Yunnan[J].Acta Petrologica Sinica, 2002,18(1):70-82.
Google Scholar
|
陶琰,朱丹,高振敏,等.金宝山铂族元素矿床铂族元素的热液活动研究[J].矿物岩石地球化学通报, 2003,22(1):32-37.
Google Scholar
|
TAO Yan, ZHU Dan, GAO Zhenmin,et al. Study on PGE Remobilization in Jinbaoshan PGE Deposit[J]. Bulletin of Mineralogy,Petrology and Geochemistry,2003, 22(1):32-37.
Google Scholar
|
王生伟,孙晓明,石贵勇,等.云南金宝山和白马寨铜镍硫化物矿床铂族元素(PGE)地球化学的差异及其成因意义[J].地质学报, 2007,81(1):93-108.
Google Scholar
|
WANG Shengwei, SUN Xiaoming, SHI Guiyong, et al. Distinction of Platinum Group Elements (PGE) Geochemistry between the Jinbaoshan and Baimazhai Magmatic Sulfide Deposits in Yunnan Province, China, and Its Implication for Ore Genesis[J].Acta Geologica Sinica, 2007,81(1):93-108.
Google Scholar
|
苏尚国,沈存利,邓晋福,等.铂族元素的地球化学行为及全球主要铂族金属矿床类型[J]. 现代地质, 2007, 21(2):361-370.
Google Scholar
|
SU Shangguo, SHEN Cunli, DENG Jinfu, et al. Geochemistry Behavior of Platinum Group Element~ (PGE) and Main Types ofPGE Deposits in the World[J]. Geoscience,2007, 21(2):361-370.
Google Scholar
|
朱丹,陶炎,罗泰义,等.云南金宝山镁铁-超镁铁岩的地球化学特征及成因[J].矿物学报, 2003,23(1):63-69.
Google Scholar
|
ZHU Dan, TAO Yan, LUO Taiyi, et al. Geochemical and Petrological characterisitics of mafic and ultra-mafic intrusions in Jinbaoshan, Yunnan[J]. Acta Mineralogica Sinica, 2003, 23(1):63-69.
Google Scholar
|
WANG C Y, ZHOU M F, ZHAO D G. Mineral chemistry of chromite from the Permian Jinbaoshan Pt-Pd sulphide-bearing ultra-mafic intrusion in SW China with petrogenetic implications[J]. Lithos, 2005,83:47-66.
Google Scholar
|
WANG C Y, PRICHARD H M, ZHOU M F, et al. Platinum-Group minerals form the Jinbaoshan Pd-Pt deposit, SW China: Ev-idence for magmatic origin and hydrothermal alteration[J]. Mineral Depsosita, 2008, 43:791-803.
Google Scholar
|
CAMPBELL I H, NALDRETT A J, BARNES S J. A model for the origin of platinum-rich sulphide horizons in the Bushveld and Stillwater Complexes[J]. J Petro.1983,24:133-165.
Google Scholar
|
MCDONALD I, HOLWELL D A, ARMITAGE P E B. Geochemistry and mineralogy of the Platreef and "Critical Zone" cumulates of the Northern limb of the Bushveld Complex, South Africa:implications for Bushveld stratigraphy and the development of PGE mineralisation[J]. Miner Depos., 2005, 40:526-549.
Google Scholar
|
NALDRETT A J, BARNES S J. The behavior of platinum group elements during fractional crystallization and partial melting with special reference to the composition of magmatic sulfide ores[J]. Fortschr Mineral, 1986, 64 (2):113-133.
Google Scholar
|
BARNES, S J, MAIER, W D. Platinum-group elements and microstructures of normal Merensky Reef from Impala Platinum Mines, Bushveld Complex[J]. Journal of Petrology, 2002,43, 103-128.
Google Scholar
|
CAWTHORN R G, MERKLE R K W, VILJOEN M J. Platinum-groupelement deposits in the Bushveld Complex , South Africa[M]//Cabri LJ . The Geology, Geochemistry, Mineralogy and Mineral Beneficiation of Platinum-group Elements. Montreal : CIM , 2002, 54 : 389-429.
Google Scholar
|
HOLWELL D A, Jordaan A. Three-dimensional mapping of the Platreef at the Zwartfontein South mine : Implications for the timing of magmatic events in the northern limb of the Bushveld Complex South Africa[J]. Transactions of the Instituteof Mining and Metallurgy, 2006, 115: 41-48.
Google Scholar
|
MCDONALD I, HOLWELL D A, ARMITAGE PEB. Geochemist ry and mineralogy of t he Plat reef and "Critical Zone"of the nort hern lobe of the Bushveld Complex , South Africa : Implications for Bushveld Stratigraphy and t he development of PGE mineralization[J]. Mineralium Deposita , 2005,40 :526-549.
Google Scholar
|
KINNAIRD J A, KRUGER F J , NEX PAM , et al . Understanding chromitite formation —a key to understanding processes of platinum enrichment[J]. Trans Inst Min Metall Sec B Appl Eart h Sci , 2002 , 111B :B23-B35.
Google Scholar
|
NALDRETT, A.J., WILSON, A., KINNAIRD, J., Chunnett, G., PGE tenor and metal ratios within and below the Merensky Reef, Bushveld Complex: implications for its genesis[J]. Journal of Petrology 2009,50, 625-659.
Google Scholar
|
IRVINE T N , KEITH D W, TODD SG. The J-M platinum palladium reef of the Stillwater Complex, Montana. II. Origin by double convective magma mixing and implications for the Bushveld Complex[J]. Econ Geol , 1983 , 78 : 1287-1334.
Google Scholar
|
LAMBERT D D, WALKER R J, MORGAN J W, et al . Re-Os and Sm-Nd isotope geochemistry of the Stillwater Complex, Montana : implications for the petrogenesis of the J-M Reef[J]. J Petrol, 1994, 35: 1717-1753.
Google Scholar
|
IRVINE T N, SHARPE M R. Magma mixing and the origin of stratiform oxide ore zones in the Bushveld and Stillwater Complexes, in Gallagher, M.G., Ixer, R.A., Neary, C.R., and Prichard, H.M., eds., Metallogeny of basic and ultrabasic rocks[M]. London: Institution of Mining and Metallurgy, 1986, 183-198. NALDRETT A J, KINNAIRD J, WILSON A, et al. Concentration of PGE in the Earth's crust with special reference to the Bushveld complex[J]. Earth Science Frontiers, 2008, 15(5): 264-297.
Google Scholar
|
MONDAL S K, MATHEZ E A. Origin of the UG2 chromitite layer, Bushveld Complex[J]. Journal of Petrology, 2007, 48(3): 495-510.
Google Scholar
|
HULBERT L J, DUKE J M, ECKSTRAND OR,et al. Geological environments of the platinum group elements[J]. Geological Survey of Canada. Open File ,1988,1440: 3-99.
Google Scholar
|
LEE C A, BUTCHER A R. Cyclicity in the Sr isotope stratigraphy through the Merensky and Bastard Reef units, Atok section, eastern Bushveld Complex[J]. Econ. Geol., 1990, 85: 877-883.
Google Scholar
|
ARNDT N, JENNER G, OHNENSTETTER M,et al. Trace elements in the Merensky Reef and adjacent norites Bushveld Complex South Africa[J]. Mineralium Deposita, 2005, 40: 550-575.
Google Scholar
|
MCDONALD I, HOLWELL D A. Did lower zone magma conduits store PGE-rich sulphides that were later supplied to the Platreef[J]? South African Journal of Geology, 2007, 110(4): 611-616.
Google Scholar
|