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Genesis of the late Ordovician Kukaazi Pb-Zn deposit in the western Kunlun orogen, NW China: New insights from in-situ trace elemental compositions of base metal sulfides
Cheng-Biao Leng;  Wei Wang;  Lin Ye;  Xing-Chun Zhang
2019
Source PublicationJournal of Asian Earth Sciences (IF:2.335[JCR-2016],2.905[5-Year])
Volume184Pages:1-13
Abstract

The Kukaazi Pb-Zn deposit was recently discovered in the western Kunlun orogen (WKO), NW China. This deposit consists of three ore blocks (KI to KIII) hosted in Mesoproterozoic metamorphosed rocks. Ores are mainly composed of sphalerite, galena, chalcopyrite and scheelite. Here we present in-situ LA-ICP-MS trace elemental compositions of sphalerite and galena of sulfide ores from ore blocks KI and KII, to shed light on the ore formation and its regional tectono-metallogenic implications. Sphalerite from ore block KI contains higher contents of Fe, Mn, Co, Cu, Bi, Sn, and Sb than sphalerite from ore block KII. Nonetheless, sphalerite from the two ore blocks has compositions similar to the sphalerite from typical skarn deposits. Galena from ore block KI is compositionally different from galena from ore block KII, and has relatively high Ag, Cd and Tl contents and low Sb content. Such differences are probably due to different ore-forming temperatures in these two ore blocks. Based on the Cd partition coefficient between the co-existing sphalerite-galena pairs, sulfide ores in ore block KI may have formed under higher temperatures (265–387 °C) than those in ore block KII (229–251 °C).

Combined with previous studies, we propose that the Pb-Zn mineralization at Kukaazi was distal skarn related and formed in a continental arc setting. Discovery of this deposit implies that WKO is a promising area for future porphyry/skarn-related Pb-Zn (-Cu-W) mineral exploration in northwestern China.

KeywordMinor And Trace Elements la-icp-ms base Metal Sulfides substitution Mechanism ore Genesis western Kunlun Orogen
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/10829
Collection矿床地球化学国家重点实验室
Affiliation1.State Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013, China
2.State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
3.University of Chinese Academy of Sciences, Beijing 100049, China
Recommended Citation
GB/T 7714
Cheng-Biao Leng;Wei Wang;Lin Ye;Xing-Chun Zhang. Genesis of the late Ordovician Kukaazi Pb-Zn deposit in the western Kunlun orogen, NW China: New insights from in-situ trace elemental compositions of base metal sulfides[J]. Journal of Asian Earth Sciences,2019,184:1-13.
APA Cheng-Biao Leng;Wei Wang;Lin Ye;Xing-Chun Zhang.(2019).Genesis of the late Ordovician Kukaazi Pb-Zn deposit in the western Kunlun orogen, NW China: New insights from in-situ trace elemental compositions of base metal sulfides.Journal of Asian Earth Sciences,184,1-13.
MLA Cheng-Biao Leng;Wei Wang;Lin Ye;Xing-Chun Zhang."Genesis of the late Ordovician Kukaazi Pb-Zn deposit in the western Kunlun orogen, NW China: New insights from in-situ trace elemental compositions of base metal sulfides".Journal of Asian Earth Sciences 184(2019):1-13.
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