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Zhang, Mingjie, Li, Chusi, Fu, Piaoer, Hu, Peiqing, Ripley, Edward M. (2011) The Permian Huangshanxi Cu–Ni deposit in western China: intrusive–extrusive association, ore genesis, and exploration implications. Mineralium Deposita, 46 (2) 153-170 doi:10.1007/s00126-010-0318-3

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Reference TypeJournal (article/letter/editorial)
TitleThe Permian Huangshanxi Cu–Ni deposit in western China: intrusive–extrusive association, ore genesis, and exploration implications
JournalMineralium Deposita
AuthorsZhang, MingjieAuthor
Li, ChusiAuthor
Fu, PiaoerAuthor
Hu, PeiqingAuthor
Ripley, Edward M.Author
Year2011 (February)Volume46
Page(s)153-170Issue2
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00126-010-0318-3Search in ResearchGate
Mindat Ref. ID157154Long-form Identifiermindat:1:5:157154:1
GUIDf332ef5b-4da8-45b7-9c6a-97bd4a4d4054
Full ReferenceZhang, Mingjie, Li, Chusi, Fu, Piaoer, Hu, Peiqing, Ripley, Edward M. (2011) The Permian Huangshanxi Cu–Ni deposit in western China: intrusive–extrusive association, ore genesis, and exploration implications. Mineralium Deposita, 46 (2) 153-170 doi:10.1007/s00126-010-0318-3
Plain TextZhang, Mingjie, Li, Chusi, Fu, Piaoer, Hu, Peiqing, Ripley, Edward M. (2011) The Permian Huangshanxi Cu–Ni deposit in western China: intrusive–extrusive association, ore genesis, and exploration implications. Mineralium Deposita, 46 (2) 153-170 doi:10.1007/s00126-010-0318-3
In(2011, February) Mineralium Deposita Vol. 46 (2) Springer Science and Business Media LLC

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Barnes S-J, Maier WD (1999) The fractionation of Ni, Cu, and the noble metals in silicate and sulphide liquids. Geol Assoc Can Short Course Notes 13:69–106
Barnes S-J, Lightfoot PC (2005) Formation of magmatic nickel sulfide ore deposits and processes affecting their copper and platinum group element contents. In: Hedenquist JW, Thompson JFH, Goldfarb RJ, Richards JP (eds) Economic geology 100th anniversary volume., pp 179–213
Chen HL, Yang SF, Dong CW (1997) The discovery of early Permian basic rock belt in the Tarim basin and its tectonic meaning. Geochemica 26:77–87 (in Chinese)
Han BF, Ji JQ, Song B, Chen LH, Li ZH (2004) SHRIMP zircon U–Pb ages of Karatongke No. 1 and Huangshandong Cu–Ni-bearing mafic–ultramafic complexes, North Xinjiang, and geological implications. Chin Sci Bull 49:2424–2429
Jiang CY, Cheng SL, Ye SF, Xia MZ, Jiang HB, Dai YC (2006) Lithogeochemistry and petrogenesis of Zhongposhanbei mafic rock body at Beishan region. Xinjiang Acta Petrologica Sin 22:115–126 (in Chinese)
Li CD, Mou J, Lan G, Sun Y, Yang ZX, Tang J, Chen J, Miao F, Xiao Y (1996) Origin and ore-forming principals of the Huangshan Cu–Ni metallogenic belt, Hami, Xinjiang. Chengdu University of Technology, Chengdu, p 204 (in Chinese)
Li DH, Bao X, Zhang B, Han Z, Lan G, Zheng Z et al (1989) Investigation of geology, geophysics and geochemistry of the Huangshan Cu –Ni metallogenic belt for mineral exploration. Unpublished report to the office of the National 305 Project of China, p 418 (in Chinese)
Li HQ, Chen FW, Mei YP, Wu H, Cheng SL, Yang JQ, Dai YC (2006) Dating of the No. 1 intrusion of Pobei basic–ultrabasic rocks belt, Xinjiang, and its geological significance. Miner Depos 25:463–469 (in Chinese)
Lightfoot PC, Keays RR (2005) Siderophile and chalcophile metal variations in flood blasts from the Siberian trap, Noril’sk region: implications for the origin of the Ni–Cu–PGE sulfide ores. Econ Geol 100:439–462
Naldrett AJ, Li C (2009) Ore deposits related to flood basalts, Siberia. In: Li C, Ripley EM (eds) New developments in magmatic Ni–Cu and PGE deposits. Geological Publishing House, Beijing, pp 141–179
Not Yet Imported: Earth Science Frontiers - journal-article : 10.1016/S1872-5791(07)60041-4

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 18894
Rudnick RL, Gao S (2003) Composition of the continental crust. In: Rudnick RL (ed) Treatise on geochemistry Volume 3: The Crust. Elsevier, pp 1–64
San JZ, Qin KZ, Tang DM, Su BX, Sun H, Xiao QH, Liu PP, Cao MJ (2010) Precise zircon U-Pb ages of Tulargen large Cu-Ni-ore bearing mafic-ultramafic complex and their geological implications. Acta Petrologica Sinica 26:3027–3035
Tang DM, Qin KZ, Sun H, Su BX, Xiao QH, Cheng SL, Li J (2009) Lithological, geochronological and geochemical characteristics of Tianyu Cu–Ni deposit: constraints on source and genesis of mafic-ultramafic intrusions in eastern Xinjiang. Acta Petrologica Sin 25:817–831 (in Chinese)
Tian W, Campbell IH, Allen CM, Guan P, Pan W, Chen M, Yu H, Zhu W (2010) The Tarim picrite–basalt–rhyolite suite, a Permian flood basalt from northwest China with contrasting rhyolites produced by fractional crystallization and anatexis. Contrib Mineral Petrol. doi: 10.1007/s00410-009-0485-3
Wang R-M, Liu D-Q, Ying D-T et al (1987) Cu–Ni sulfide deposits in the Tudun–Huangshan region, Hami, X Xinjiang: Genet controls exploration implications. Miner Rocks 7:1–152 (in Chinese)
Wu H, Li HQ, Mo XH, Chen FW, Lu YF, Mei YP, Deng G (2005) Age of the Baishiquan mafic–ultramafic complex, Hami, Xinjiang and its geological significance. Acta Geol Sin 79:498–502
Xiao QH, Qin KZ, Tang DM, Sun BX, Sun H, San JZ, Cao MJ, Hui WD (2010) Xiangshanxi composite Cu–Ni–Ti–Fe deposit belongs to comagmatic evolution product: evidence from ore microscopy, zircon U-Pb chronology and petrological geochemistry, Hami, Xinjiang, NW China. Acta Petrologica Sin 26:503–522


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