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101.
山东长岛地区蓬莱群辅子夼组碎屑锆石年龄谱研究   总被引:19,自引:13,他引:6  
初航  陆松年  王惠初  相振群  刘欢 《岩石学报》2011,27(4):1017-1028
山东烟台长岛地区出露的蓬莱群辅子夼组浅变质沉积岩主要为变质石英砂岩夹变质粉砂岩和变质粘土岩。前人对蓬莱群的沉积时代存在较大争议, 本文根据长岛地区蓬莱群辅子夼组碎屑锆石年龄谱资料, 将辅子夼组的地层时代置于新元古代。碎屑锆石中出现1600Ma和1200~1100Ma左右两个年龄峰值, 后者表明辅子夼组曾接受来自具有格林威尔期构造热事件物源区的碎屑物质。这一物源区所反映的地质演化特点既不同于华北陆块, 也不同于扬子陆块, 应引起高度重视和进行深入的探索。  相似文献   
102.
应用LA-ICP-MS对马厂箐岩体中(似)斑状花岗岩的锆石进行了U-Pb定年和微量元素分析。在CL图像上,(似)斑状花岗岩中锆石均发育有典型的振荡环带,锆石的稀土元素配分模式表现为亏损轻稀土,富集重稀土,具有强烈正Ce异常和中度负Eu异常,且呈现出较高的Th/U比值等特征,表明所测锆石均为典型的岩浆锆石。马厂箐岩体(似)斑状花岗岩锆石U-Pb加权平均年龄为(33.78±0.21)Ma(MSWD=0.71),累计概率统计得到正长斑岩锆石U-Th-Pb年龄为(35.6±0.3)Ma、花岗斑岩锆石U-Th-Pb年龄为(35.0±0.2)Ma,宝兴厂矿段铜钼矿辉钼矿Re-Os等时线年龄分别为(35.8±1.6)Ma和(33.9±1.1)Ma,乱硐山矿段接触交代型金矿白云母40Ar/39Ar年龄为(35.25±0.36)Ma,人头箐—金厂箐矿段热液脉型金成矿白云母40Ar/39Ar年龄为(35.35±0.32)Ma,反映斑岩型铜钼矿化、接触交代型金矿化和热液脉型金矿化为同一个构造-岩浆-热液成矿系统的产物,Ⅱ期(33~37Ma)正长斑岩+二长斑岩+花岗斑岩+(似)斑状花岗岩岩性组合是成矿的地质体,为成矿提供了物质、流体和热动力条件,这期斑岩-热液-成矿系统的持续时间约为4Ma,铜、钼、金的成矿主要发生在Ⅱ期岩浆活动的早-中期。  相似文献   
103.
利用锆石SHRIMP U-Pb法对乌拉特中旗乌兰地区花岗闪长岩进行年龄测试,得到的两个花岗闪长岩样品中锆石的加权平均年龄分别为(322.1±3.4)Ma和(323.4±3.4)Ma,为早石炭世。岩石地球化学及同位素地质年代学研究显示该花岗闪长岩为具有埃达克岩性质的I型花岗岩类,属准铝质-过铝质高钾钙碱性系列;富集Rb,Ba,Sr等大离子亲石元素和Th,U,Nd,Zr等高场强元素;为轻稀土富集型,轻、重稀土高度分异,轻稀土发生明显的分馏作用,铕异常不明显。岩体形成于活动大陆边缘同碰撞构造环境,是残留洋壳部分熔融所形成的基性岩浆与由古老片麻岩基底部分熔融所形成的中酸性岩浆发生混合作用的产物。  相似文献   
104.
对鲁西沂南铜井岩体的中生代闪长玢岩进行了主量元素、微量及稀土元素、Sr-Nd-Pb同位素以及锆石U-Pb年龄、Hf同位素研究,结果表明,铜井闪长玢岩SiO2含量为54.68%~63.01%,富Na,Na2O/K2O为0.93~4.46,Mg#较高,为55~66,为中钾-高钾钙碱性系列,TiO2含量较低,0.2%~0.71%。样品具有显著的LREE富集[(La/Yb)n=10~15]以及高场强元素Nb、Ta和Ti的负异常,Eu基本无异常,Sr、Ba含量高(分别为241×10-6~711×10-6和554×10-6~822×10-6)的特征。ISr和εNd(t)值分别为0.706473~0.708867和-15.13~-9.18,与鲁西方城玄武岩和前人所研究的沂南辉长岩结果有所差异,显示其源区具有多端员混合特征,除了富集岩石圈地幔外,亏损地幔和地壳物质的贡献也很重要,Pb同位素也显示其源区有扬子克拉通物质的贡献,佐证了华北克拉通中生代富集岩石圈地幔的形成与扬子克拉通的俯冲有关。闪长岩中锆石具有典型的岩浆锆石特征,U-Pb年龄为128~129Ma,锆石εHf(t)值主要在-13~-8(平均值为-10.3)范围内,暗示了岩浆来源于富集岩石圈地幔,但受到亏损地幔物质的混染。沂南铜井闪长玢岩岩浆源区的多元性以及亏损地幔物质参与程度的逐渐增强,说明该地区中生代岩石圈减薄已达到最大,岩浆源区的差异可能也是该地区与胶东地区成矿性差异的主要原因之一。  相似文献   
105.
利用基本的宝石学方法、紫外可见光分光光度计、红外光谱仪、激光拉曼探针和激光剥蚀等离子质谱技术(LA-ICP-MS)分析了黑龙江穆棱玄武岩风化冲积物中宝石级锆石的宝石学性质、谱学特征、包裹体特征、微量元素组成及U-Pb年龄。宝石学性质表明锆石为优质的、可直接加工利用的宝石原料;谱学特征显示锆石为未经历后期改造的高型岩浆锆石,且含有磷灰石、锆石和赤铁矿包裹体;LA-ICP-MS分析表明锆石具有明显的Ce正异常,富集重稀土元素[(Yb/Sm)N=21~63)]和HFSE元素,Th/U均大于1(1个数据例外);ΣREE较高,含量在1765×10-6~2374×10-6,与基性锆石相似;明显的Ce异常和赤铁矿包裹体说明锆石形成于氧化环境;根据Ti-in-Zircon地质温度计计算,锆石结晶的最低温度为646~737℃;U-Pb年龄为9.39±0.4Ma代表锆石的结晶年龄。基于本实验数据和前人研究成果,认为锆石巨晶形成于富集CO2的氧化环境并且与地幔的交代作用有关,是岩石圈减薄作用发展到一定阶段(衰退期)的产物。  相似文献   
106.
肖打松多花岗闪长岩位于西藏冈底斯花岗岩带中段以南,主要岩石类型有:细中粒黑云母(角闪石)花岗闪长岩、细中粒含斑黑云母(角闪石)花岗闪长岩、细中粒斑状黑云母(角闪石)花岗闪长岩,岩石具钙碱性特征,w(SiO2)=61.58%~72.16%,w(K2O)/w(Na2O) =0.64~1.15,相对富钠,A/CNK=1.25...  相似文献   
107.
The Dehe granitic pluton intruded the Xiahe Group which is in the core complex of the North Qinling Orogenic Belt(NQOB).It shows gneissic bedding and possesses typical S-type granite minerals such as muscovite and garnet.LA-ICP-MS U-Pb isotopic dating of the Dehe granite yielded a weighted average age of 925±23 Ma which represents the emplacement age of the pluton.Most of the εHf(t) values are negative,and the two-stage model ages are consistent with the age of the Qinling Group.The isotope data show that the Dehe granite was formed in the following geological setting:in the syn-collision setting of the NQOB in the Neoproterozoic,crustal thickening induced partial melting of materials derived from the Qinling complex,and then the maga upwelled and intruded into the Xiahe Group.The formation of the Dehe S-type granite implied the occurrence of a convergent event in the QOB during the Neoproterozoic.  相似文献   
108.
Field geological investigation and geochemical analysis are carried out on Baya’ertuhushuo Gabbro in South Great Xing’an Range. Field investigation reveals that the gabbro is a magmatic intrusion rather than a component of an ophiolite suite as previously thought. Zircon laser ablation inductively coupled plasma mass spectroscopy (LA-ICP-MS) U-Pb dating indicates the gabbro was formed in 274–275?Ma, just as the widespread volcanic rocks of Dashizhai Formation (P1d), monzogranites and miarolitic alkali-feldspar granites in the study area. The gabbro has SiO2 content between 47.23 wt% and 50.17 wt%, high MgO and FeOT contents of 6.95–11.29 wt% and 7.32–12.24wt%, respectively, and it belongs to low-K tholeiitic series in the SiO2-K2O diagram. The Chondrite-normalized rare earth element (REE) patterns and primitive mantle-normalized spider diagrams of the gabbro are similar to those of Normal Mid-Ocean Ridge Basalt (N-MORB) except for the enrichment of large ion lithophile elements (LILE), such as Rb, Ba and K. In trace element tectonic discriminative diagrams, the samples are mainly plotted in the N-MORB field, and Zircon in?situ Lu-Hf isotopic analysis also indicates the gabbro originated from depleted mantle. Through synthetic studies of the geochemical characteristics and petrogenesis of Baya’ertuhushuo gabbro, volcanic rocks of Dashizhai Formation and granitoids in the area, it is suggested that the early Permian magmatism in the Xilinhot-Xiwuqi area formed in the tectonic setting of asthenosphere upwelling, which was caused by breaking-off of the subducted Paleo-Asian Ocean slab.  相似文献   
109.
The Erlihe Pb–Zn deposit is an important mine of the Pb–Zn metallogenic zone in the South Qinling Orogen. It has been considered a sedimentary exhalative deposit in previous investigations because the ore body occurs concordantly at the transitional location of an upright fold. Re and Os isotopic analyses for paragenetic pyrites with sphalerite and galena from the ore body have been used to determine the timing of mineralization and to trace the source of metallogenic materials. The Re–Os isotopic data of four pyrite samples construct an isochron, yielding a weighted average age of 226±17 Ma (mean square weighted deviation=1.7), which is considered the main mineralization age. A dioritic porphyrite vein sample, showing weaker mineralization, was also dated using the SHRIMP zircon U–Pb isotopic method to constrain the youngest metallogenic age of the ore deposit, because it distributes along a group of tensional joints cutting not only the upright fold in the deposit field, but also the main ore bodies. The dioritic porphyrite sample yields a weighted mean 206Pb/238U age of 221±3 Ma, which is slightly younger than the Re–Os isotopic isochron age of the pyrites, considered as the upper age limit of the mineralization, namely the ending age of the mineralization. The Os isotopic compositions of sulfide minerals distribute within a range between Os isotopic compositions of the crust and the mantle, indicating that the ore deposit can be derived from magma-related fluid, and the metallogenic materials are most likely derived from the mixing source of the crust and the mantle. The Erlihe Pb–Zn deposit and associated dioritic porphyrite vein, important records of Qinling tectonic–magmatism–mineralization activities, were formed during the Triassic collisional orogeny processes.  相似文献   
110.
The Wurinitu molybdenum deposit, located in Honggor, Sonid Left Banner of Inner Mongolia, China, is recently discovered and is considered to be associated with a concealed fine-grained granite impregnated with molybdenite.?The wall rocks are composed of Variscan porphyritic-like biotite granite and the Lower Ordovician Wubin’aobao Formation.?LA-ICP-MS zircon U-Pb dating of the fine-grained granite reveals two stages of zircons,?one were formed at 181.7±7.?4 Ma and?the other at 133.6±3.3 Ma. The latter age is believed to be the formation age of the fine-grained granite, while the former may reflect the age of inherited zircons, based on the morphological study of the zircon and regional geological setting. The Re-Os model age of molybdenite is 142.2±2.5?Ma, which is older than the diagenetic age of the fine-grained granite.?Therefore the authors believe that the metallogenic age of the Wurinitu molybdenum deposit should be?nearly 133.6±3.3 Ma or slightly later, i.e., Early Cretaceous.?Combined with regional geological background research, it is speculated that the molybdenum deposits were formed at the late Yanshanian orogenic cycle in the Hingganling-Mongolian orogenic belt, belonging to the relaxation epoch posterior to the compression and was associated with the closure of the Mongolia-Okhotsk?Sea.  相似文献   
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