LA-ICP-MS Dating and Geological Significance of the Dagugongka Ore-bearing Porphyry in Qinghai Province
-
摘要: 打古贡卡斑岩型铜钼矿位于青海省南部三江北段,属青海省重要的斑岩型铜钼矿成矿带中。本文对打古贡卡含矿花岗斑岩体进行了LA-ICP-MS U-Pb测年,获得(240.1±0.89)Ma的年龄值,属中三叠世。含矿斑岩的SiO2含量为65.18%~70.43%,K2O为3.05%~6.76%,Na2O为1.99%~3.47%,富SiO2、K2O、Na2O为特点,相对贫Fe、Mg、Ca,里特曼指数为1.09~4.29,铝饱和指数ASI=1.01~1.23,总体表现为弱过铝质到强过铝质高钾钙碱性系列岩石的特征;微量元素配分曲线总体呈右倾型,大离子亲石元素(LILE)富集,高场强元素(HFSE)亏损,具有较弱的Eu负异常。通过岩体地质特征、岩石学及岩石地球化学特征结合区域构造演化特点初步确定打古贡卡中三叠世花岗斑岩形成于俯冲阶段。该岩体的发现具有较为重要的科学意义,为重新认识"三江"北段斑岩型矿床的成矿时代和形成背景提供了新的线索和依据。Abstract: The Dagugongka porphyry copper-molybdenum deposit is located in the northern section of Sanjiang, south of Qinghai Province, and it is the important porphyry copper-molybdenum metallogenic belt in Qinghai Province. The formation age of Dagugongka ore-bearing granite porphyry is 240.1±0.89Ma. The SiO2 content of ore-bearing porphyry ranges from 65.18-70.43%, K2O from 3.05%-6.76%, Na2O 1.99%-3.47%, characterized by rich SiO2, K2O and Na2O, relatively poor in Fe, Mg, Ca. Ritmann index is 1.09-4.29, and aluminum saturation index (ASI) is 1.01-1.23. Overall, it is a series of rocks from weak peraluminous to strong peraluminous high potassium calc-alkaline. The partition curves of the microelement are generally right-dipping, with the enrichment of large ion lithophile elements (LILE), the deficiency of high field strength elements (HFSE) and weak negative Eu anomaly. The geological, petrological and geochemical characteristics of the rock mass combined with the characteristics of regional tectonic evolution preliminarily determined that the Middle Triassic granite porphyry in Dagugongka was formed in the subduction stage. It indicates that the Indo-Chinese porphyry deposit is related to the subduction environment in the Sanjiang belt.
-
-
陈建平,潘彤,郝金华,等.青海"三江"北段铜多金属矿床成矿规律与成矿预测[M].北京:地质出版社,2010:52-81.
CHEN J P,PAN T,HAO J H. Metallogenic regularity and prediction of copper polymetallic deposits in the northern section of "Sanjiang" in Qinghai Province[M]. Beijing:Geological Press, 2010:52-81.
梁华英,莫济海,孙卫东,喻亨祥,等.藏东玉龙超大型斑岩铜矿床成岩成矿系统时间跨度分析[J].岩石学报, 2008,24(10):2352-2358.
LIANG H Y, MO J H,SUN WD. Time span analysis of diagenetic and metallogenic system of Yulong superlarge porphyry copper deposit, eastern Tibet[J], Acta Petrologica Sinica, 2008,24(10):2352-2358.
莫宣学,潘桂棠.从特提斯到青藏高原形成:构造岩浆事件的约束[J].地学前缘, 2006,13(6):43-51.
MO X X, PAN G T. From the Tethys to the formation of the Qinghai-Tibet Plateau:constrained by tectono-magmaticevents[J]. Earth Science Frontiers, 2006, 13(6):043-051
王召林,杨志明,杨竹森,等.纳日贡玛斑岩钼铜矿床:玉龙铜矿带的北延来自辉钼矿Re-Os同位素年龄的证据[J].岩石学报, 2008,24(3):503-510.
WANG Z L,YANG Z M,YANG Z S, Nair gongma Porh Pemolyb deinetcoP Perde Poist,northern extension Of YulongeoP Perbelt:evidene efrom hteage Of Re-0S is to Pe Ae Sinica[J].Acta Petrologica Sinica, 2008,24(3):503-510
徐志刚,等.中国成矿区带划分方案[M].北京:地质出版社,2008.
XU Z G.The division plan of metallogenic belt in China[M]. Beijing:Geological Press,2008
杨延兴.青海省地质调查院.青海阿多-拉沟赛地区地质矿产调查报告[R].青海:青海省地质调查院,2012.
YANG Y X. Geological Survey Institute of Qinghai Province. Geological and Mineral Investigation Report of Adou lagoussai area, Qinghai Province[R]. Qinghai:Qinghai Geological Survey Institute, 2012
杨志明,候增谦,夏代详,等.西藏驱龙铜矿西部斑岩与成矿关系的厘定:对矿床未来勘探方向的重要启示[J].矿床地质,2008,27(1):28-36.
YANG Z M, HOU Z Q, XIA D X,et al.Relationship between Western Porphyry and mineralization in Qulong copper deposit of Tibet and its enlightenment to further exploration[J].Mineral Deposits, 2008,27(1):28-36.
WANG JH,Yin A,Harrison.AtectonicmodelforCenozoicig-neousactivitiesintheeasternIndo-Asiancollisonzone[J]. EarthPlanet, 2001,199:123-133.
MILLER, SCHUSTER R, KLOTZLI U, et al. Post-collisonal notassic and ultranotassic magmatism in SW Tibet:geochemical and Sr-Nd-Pb-O isotonic constraints for mantle source characteristics and netroge-nesis[J]. Petrol., 1999, (40):1339-1424.
-
计量
- 文章访问数: 895
- PDF下载数: 585
- 施引文献: 0