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物探与化探  2016, Vol. 40 Issue (5): 885-892    DOI: 10.11720/wtyht.2016.5.07
  区域地质调查 本期目录 | 过刊浏览 | 高级检索 |
内蒙古阿鲁科尔沁地区早白垩世侵入岩地球化学特征及其成矿潜力
鲁艳明, 所承逊, 专少鹏, 殷敏
河北省区域地质矿产调查研究所, 河北 廊坊 065000
Geochemistry and metallogenic potentiality of Early Cretaceous intrusive rocks in Ar Horqin area, Inner Mongolia
LU Yan-Ming, SUO Cheng-Xun, ZHUAN Shao-Peng, YIN Min
Hebei Institute of Regional Geology and Mineral Resources Survey, Langfang 065000, China
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摘要 

阿鲁科尔沁地区早白垩世侵入岩主要由中细粒花岗闪长岩、中细粒二长花岗岩、花岗斑岩组成,岩体总体具有富硅、富钠而相对贫钾的特征,属准铝质—弱过铝质的钙碱性系列。岩体中稀土元素总量较低,轻重稀土发生分馏,具有明显的Eu负异常,亏损高场强元素Nb、Ta、P、Ti,相对富Th、U、Zr、La和轻稀土元素,相对贫Sr,属I型花岗岩。岩体主体来源于壳源组分的部分熔融,形成于早白垩世的后碰撞伸展环境,为有利成矿构造演化阶段。岩体中,w(K)/w(Rb)比值、w(Rb)/w(Sr)比值、w(Fe2O3)/w(FeO)比值、分异指数DI较大,固结指数SI较小,属演化程度低、分异程度较高的氧化型磁铁矿系列花岗岩,其地球化学含矿性参数显示Mo、Cu、Pb-Zn金属成矿潜力依次降低,Au成矿潜力差。

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Abstract

Located in the eastern Central Asian orogenic belt, Ar Horqin area has widely distributed Mesozoic magmatic rocks. In this paper, petrologic and element geochemical studies were carried out for the early Cretaceous intrusive rocks in Ar Horqin area. The study of petrology indicates that the granitoids are mainly composed of granodiorite, adamellite and granite-porphyry. Major element geochemistry shows that the rocks are quasi-aluminous cal-alkaline granites, which are characterized by relatively rich silicon and sodium and poor potassium. Trace elements have a similar variation trend characterized by low REE, fractionation of REE, significant negative anomaly of Eu, depletion of Nb, Ta, P, Ti, and enrichment of LREE, Rb, Th, U, Zr, La. Main body of the granites belongs to calc-alkaline I genetic type. The magmas were formed by partial melting of the crust in an extensional setting after the collision, which was a favorable metallogenic tectonic evolution stage. DI values, K/Rb and Rb/Sr ratios are larger, SI values are smaller, and Fe2O3/FeO ratios are also larger, suggesting that the granites belong to low evolution, highly fractionated oxidation type or magnetite series. Their geochemical ore parameters indicate that Mo, Cu, Pb-Zn mineralization potentiality decreases systematically, and Au mineralization potentiality is poorer.

收稿日期: 2016-02-01      出版日期: 2016-10-10
:  P632  
基金资助:

内蒙古自治区地质矿产勘查基金中心“内蒙古自治区阿鲁科尔沁旗等四幅1∶5万区域矿产地质调查”项目(NMKD2009-47)

作者简介: 鲁艳明(1970-),男,河北吴桥县人,高级工程师,主要从事区域地质矿产调查、区域地球化学、区域地球物理勘查及管理工作.E-mail:luym2000@163.com
引用本文:   
鲁艳明, 所承逊, 专少鹏, 殷敏. 内蒙古阿鲁科尔沁地区早白垩世侵入岩地球化学特征及其成矿潜力[J]. 物探与化探, 2016, 40(5): 885-892.
LU Yan-Ming, SUO Cheng-Xun, ZHUAN Shao-Peng, YIN Min. Geochemistry and metallogenic potentiality of Early Cretaceous intrusive rocks in Ar Horqin area, Inner Mongolia. Geophysical and Geochemical Exploration, 2016, 40(5): 885-892.
链接本文:  
https://www.wutanyuhuatan.com/CN/10.11720/wtyht.2016.5.07      或      https://www.wutanyuhuatan.com/CN/Y2016/V40/I5/885

[1] Chen B,Jahn B M,Simon W, et al.Two Contrasting Paleozoic Magmatic Belts in Northern Inner Mongolia China:petrogenesis and Tectonic Implications[J].Tectonophysics,2000,328:82-157.
[2] 范宏瑞,胡芳芳,杨奎锋,等.内蒙古白云鄂博地区晚古生代闪长质-花岗质岩石年代学框架及其地质意义[J]. 岩石学报,2009,25(11):2933-2938.
[3] 罗飞,罗照华,李达靖,等.内蒙古中部白垩纪碱性花岗岩的发现及意义[J]. 现代地质,1995,9(2):203-211.
[4] 刘红涛,翟明国,刘建明,等.华北克拉通北缘中生代花岗岩:从碰撞后到非造山[J].岩石学报,2002,18(4):433-448.
[5] Maniar P D, Piccoli P M.Tectonic discrimination of granitoids[J]. Geological society of America bulletin,1989,101(5):635-643.
[6] Rickwood P C.Boundary lines within petrologic diagrams which use oxides of major and minor elements[J].Lithos,1989,22(4):247-263.
[7] Vinogradov A P.Average content of chemical elements in the chief types of igneous rocks of the crush of the Earth[J].Geokhimiya,1962,21(2):555-571.
[8] 李昌年.火成岩微量元素岩石学[M].武汉:中国地质大学出版社,1992.
[9] Rudnick R L.Making continental-crust[J].Nature,1995,378(6557):571-578.
[10] 罗红玲,吴泰然,赵磊.乌拉特中旗二叠纪Ⅰ型花岗岩类地球化学特征及构造意义[J].北京大学学报:自然科学版,2010,46(5):805-820.
[11] Sun S S,McDonough W F.Chemical and isotopic systematics of oceanic basalts:Implications for mantle composition and processes[J].Geological Society,1989,42(1):313-345.
[12] Whalen J B,Currie K L,Chappell B W.A-type granites - geochemical characteristics, discrimination and petrogenesis[J].Contributions to Mineralogy and Petrology,1987,95(4):407-419.
[13] Chappell B W,White A J R.Two contrasting granite types[J].Pacific Geology,1974,8(2):173-174.
[14] Collins W J,Beams S D,White A J R,et al.Nature and origin of A-type granites with particular reference to southeastern Australia[J].Contributions to Mineralogy and Petrology,1982,80(2):189-200.
[15] Pearce J A,Harris N B W,Tindle A G.Trace element discrimination diagrams for the tectonic interpretation of granitic rocks[J].Journal of petrology,1984,25(4):956-983.
[16] 胡宝群,白丽红,李满根,等.内蒙古赤峰地区金矿床中砷、锑、锰和锌的特征[J].物探与化探,2009,21(4):389-394.
[17] 欧阳海松,刘珊,胡祥昭.姚五沟岩株地球化学特征及构造环境[J].物探与化探,2009,15(6):642-645.
[18] 弓秋丽,朱立新,马生明,等.斑岩型铜矿床地球化学勘查中岩石化学指标[J].物探与化探,2009,12(1):31-34.
[19] Blevin P L.Redox and compositional parameters for interpreting the granitoid metallogeny of eastern Australia:implications for gold-rich ore systems[J].Resource Geology,2004,54(3):241-252.
[20] Isuk E E,Carman J H.The System Na2Si2O5-K2Si2O5-MoS2-H2O with Implications for Molybdenum Transport in Silicate Melts[J].Economic Geology,1981,76(8):2222-2235.
[21] Sillitoe R H.Porphyry Copper Systems[J].Economic Geology,2010,105(1):3-41.
[22] Lehmann B.Metallogeny of tin. Lecture notes in earth sciences[M].Berlin:Springer Verlag,1990.

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