青海克停哈尔铜锌矿床隐爆角砾岩地球化学及地质意义
Received:November 10, 2017  Revised:August 03, 2018  点此下载全文
引用本文:LIU GuoYan,LI ZeFeng,ZHANG Yong,HE ShuYue,LIN Gui,ZHANG LaiPing,WANG Lin,ZHANG Peng.2019.Geochemical characteristics of cryptoexplosive breccia in Ketinghaer copperzinc deposit of Qinghai Province and their geological significance[J].Mineral Deposits,38(1):197~210
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Author NameAffiliationE-mail
LIU GuoYan No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China  
LI ZeFeng No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China  
ZHANG Yong No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China qhskyzy@163.com 
HE ShuYue No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China  
LIN Gui No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China  
ZHANG LaiPing No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China  
WANG Lin No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China  
ZHANG Peng No.3 Geological and Mineral Exploration Institute of Qinghai Province, Xining 810029, Qinghai, China  
基金项目:青海省科技厅项目“柴达木盆地南北缘成矿系统与勘查开发示范(编号:2016-SF-A3)”;青海省基金项目“青海省柴周缘泥盆纪—三叠纪陆相火山岩成矿作用研究及靶区优选”联合资助
中文摘要:克停哈尔铜锌矿床是近年来在东昆仑造山带西段新发现的一处矿床,并且在隐爆角砾岩中发现了锌矿体,为查明隐爆角砾岩成因及与成矿的关系,对隐爆角砾岩进行了主量、微量及稀土元素的分析和研究。研究结果显示,w(SiO2)为64.13%~66.54%,w(Al2O3)为14.55%~15.59%,w(Na2O+K2O)为6.29%~7.24%,K2O/Na2O比值为0.87~1.17,A/CNK比值为0.971~1.121,属于过铝质高钾钙碱性岩石系列;稀土元素总量中等,轻稀土元素富集,中等负铕异常;富集大离子亲石元素(Rb、K)、活泼不相容元素(Th)和轻稀土元素,相对亏损高场强元素(Ta、Nb、Ti、P、HREE),总体反映具壳源为主的花岗岩特征,形成于碰撞造山晚期并开始向陆内造山伸展环境转变,至少存在2期爆破3期成矿,第二期爆破是铅锌矿的主要成矿期。
中文关键词:地球化学  隐爆角砾岩  花岗闪长斑岩  铜锌矿床  克停哈尔  青海
 
Geochemical characteristics of cryptoexplosive breccia in Ketinghaer copperzinc deposit of Qinghai Province and their geological significance
Abstract:The Ketinghaer copper-zinc deposit is a polymetallic deposit recently discovered in the western part of the East Kunlun Mountains, and the zinc orebody was found in the cryptoexplosive breccia. In order to find out the genesis of the cryptoexplosive breccia and its relation to metallogenesis, the authors studied major elements, trace elements and rare earth elements of the cryptoexplosive breccia. The results show that the values of major elements of the cryptoexplosive breccia are w(SiO2) from 64.13% to 66.54%, w(Al2O3) from 14.55% to 15.59%, w(Na2O+K2O) from 6.29% to 7.24%, Na2O/K2O ratios from 0.87 to 1.17, and A/CNK ratios from 0.971 to 1.121, suggesting peraluminous high potash calc-alkaline series. ΣREE values of the cryptoexplosive breccia are medium, exhibiting enriched LREE and moderate negative Eu anomaly; the breccia is strongly enriched in LILE (K, Rb), and mobile incompatible elements (Th) as well as LREE and depleted in HFSE (Ta, Nb, Ti, P, and HREE), implying that magma was dominated by crustal rocks and was formed in the late collision orogeny which began to be converted into a post collisional extension environment. There existed at least two phases of blasting and three phases of minera lization in the cryptoexplosive breccia, with the second phase being the main mineralization phase of Pb-Zn ore.
keywords:geochemistry  cryptoexplosive breccia  granodiorite porphyry  copper-zinc deposit  Ketinghaer  Qinghai
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