CHARACTERISTICS OF MINERAL INCLUSIONS IN GRANITES CLOSELY RELATED WITH GOLD FORMING IN EASTERN SHANDONG PROVINCE
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摘要: 与胶东金矿有密切关系的玲珑片麻状花岗岩、栾家河二长花岗岩、郭家岭花岗闪长岩、上庄二长花岗岩4种类型花岗岩中矿物包裹体的发育程度、类型、大小及其特点, 以及包裹体的显微测温结果, 反映出玲珑岩体是经历了高级区域变质作用形成的重熔型花岗岩, 郭家岭岩体是由高温、高粘度岩浆结晶成岩的。栾家河岩体是由一种富CO2的高温、高粘度的岩浆中结晶演化而来, 岩体的侵入深度也较浅。上庄岩体形成温度压力较低。Abstract: In eastern Shandong Province (Jaodong area), there are distributed Linglong gneissic granite, Luanjiahe granite, Guojialing diorite and Shangzhuang monzonitic granite, which have close relation with Jiaodong gold mine.According to developing degree, type, size and characteristics of mineral inclusions, and based on temperature-measuring result by microscope, it is indicated that the Linglong rock mass was formed by remelting of granite caused by high regional metamorphism, the Guojialing rock mass was derived from crystallization of a high-temperature and high-viscosity magma, the Luanjiahe rock mass was crystallized from high-temperature, high-viscosity and CO2-rich magma at a relatively small depth, and the Shangzhuang rock mass was formed at a low-temperature and lowpressure condition.
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表 1 岩石化学成分表(%)
Table 1. Chemical compositions of rocks (%)
表 2 稀土元素含量表(×10-6)
Table 2. Contents of rare earth elements (×10-6)
表 3 微量元素含量表(×10-6)
Table 3. Contents of microelements (×10-6)
表 4 胶东花岗岩矿物包裹体的显微测温结果及物理化学参数
Table 4. Micro-temperature results and physo-chemical parameters of granite mineral inclusions in eastern Shandong
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[1] 王世称, 刘玉强, 伊丕厚, 等.山东省金矿床及金矿床密集区综合信息成矿预测[M].北京:地质出版社, 2003.23~26. [2] 宋明春.山东省区域地质[M].济南:山东地图出版社, 2003.448~450, 489~493. [3] Wang L G, Qiu Y M, McNaughon N J, et al.Constraints on crustal evolution and gold metallogeny in the Northwestern Jiaodong Peninsula, China, from SHRIMP U-Pb zircon studies of granitoids[J].Ore Geology Reviews, 1998, 13:275~291. doi: 10.1016/S0169-1368(97)00022-X [4] 徐贵忠, 应汉龙, 周瑞, 等.论胶西北河西金矿床成因及动力学条件[J].矿床地质, 2002, 21 (3):246~254. doi: 10.3969/j.issn.0258-7106.2002.03.005 [5] 王海芹, 曲晓明, 王鹤年.郭家岭岩体矿物包裹体研究[J].山东地质, 1998, (2):52~56. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=QK199800489648 [6] 李建威. 胶东金矿集区晚中生代大规模成矿作用: 年代学与地球动力学背景[C]. 2004年全国岩石学与地球化学研讨会论文摘要, 2004. 97~100. [7] 刘斌, 沈昆.流体包裹体热力学[M].北京:地质出版社, 1992.47~90. [8] 张成基.山东区域矿床成矿谱系概论[J].山东国土资源, 2005, 21 (2). http://d.old.wanfangdata.com.cn/Periodical/sddz200502011 [9] 王炳成.山东胶西北地区两类花岗岩的矿物包裹体特征[J].山东地质, 1989, 5 (1):48~51. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=QK000002586834