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991.
东天山卡瓦布拉克地区发育大量片麻状花岗岩,据野外特征分为含斑片麻状花岗岩和不含斑片麻状花岗岩,片麻理属后期韧性剪切叠加改造结果.本文获得含斑片麻状花岗岩LA-ICP-MS锆石U-Pb年龄为(942.1±7.2)Ma和(941.9±4.9)Ma;不含斑晶的片麻状花岗岩年龄为(424.2±3.4)Ma,这些年龄数据表明片麻状花岗岩分别形成于新元古代和中志留世.野外调查表明,片麻状花岗岩侵入于长城系星星峡群和卡瓦布拉克群中,被块状石炭纪花岗岩侵入.研究区西侧上覆泥盆纪地层未发生明显韧性变形.据此限定区内韧性剪切变形发生于晚志留世(约424 Ma)之后至泥盆纪之前.  相似文献   
992.
隋振民  陈跃军 《现代地质》2012,26(4):627-634
锆石LA-ICP-MS U-Pb测年结果显示,吉林南部地区三棵榆树组粗面岩形成于118 Ma的早白垩世晚期。岩石地球化学研究表明,三棵榆树组粗面岩的SiO2含量为65.11%~65.61%,富碱(K2O=6.29%~7.28%,Na2O=3.71%~4.21%),属于钾玄岩系列,弱过铝质(A/CNK=1.05~1.12),含镁指数Mg#=9~16;稀土元素总量较高(∑REE=317.72×10-6~371.30×10-6),轻重稀土分馏明显(LaN/YbN=19.50~22.80),Eu负异常较弱(δEu=0.75~0.81);微量元素富集Rb、Th、Zr、K,明显亏损Nb、Ta和Sr等,显示典型的大陆地壳特征。锆石的176Hf/177Hf比值介于0.282 206~0.282 309之间,εHf(t)值介于-13.32~-16.97之间,Hf模式年龄(TDM2)介于2.0~2.6 Ga之间,平均为2.2 Ga。上述特征表明,吉林南部地区早白垩世粗面岩主要来源于古元古代地壳物质的部分熔融,形成于伸展构造环境。  相似文献   
993.
The Mesozoic porphyry assemblage in the Jinduicheng area is a special molybdenum area in China, the Mo deposits, including the Jinduicheng, Balipo, Shijiawan, Huanglongpu, are distributed. The emplacement age and geochemical features of the granites in the Jinduicheng area can provide essential information for the exploration and development of the porphyry molybdenum deposit. In this study, we report LA–ICP–MS zircon U–Pb age and zircon Hf isotopic compositions of granite porphyries from the Jinduicheng area, and provide insights on the petrogensis and source characteristics of the granites. The results show that the zircon U–Pb ages of the Jinduicheng granite porphyry (143±1 Ma) and the Balipo granite (154±1 Ma), agree well with the Re–Os ages of molybdenite in the Jinduicheng molybdenum polymetallic deposit (139±3 Ma) and the Balipo molybdenum polymetallic deposit (156±2 Ma), indicating that the emplacement of granite porphyries occurred between Late Jurassic and Early Cretaceous. Zircons granite from the Jinduicheng area give the εHf(t) values mainly ranging from ?10 to ?16, and ?20 to ?24, respectively, corresponding to two–stage model ages (tDM2: mainly focused on 1.86–2.0 Ga, and 2.2–2.6 Ga, respectively) of zircons of the granite from the Jinduicheng values. The ore–forming materials are mainly derived from crust, with minor mantle substances. Zircons of the granite from the Balipo area give εHf(t) values ranging from ?18 to ?20, ?28 to ?38, and ?42 to ?44, respectively, corresponding to two–stage model ages (tDM2: mainly focused on 1.88–3.0 Ga, and 3.2–3.90 Ga, respectively). the εHf(t) values of the Jinduicheng porphyry more than that of the Balipo porphyry, and two–stage model ages (tDM2) less than that of the Balipo porphyry, shows that he source of the porphyries originated from ancient lower crustal materials in the Jinduicheng area, and mixed younger components, more younger components contributed for the source of the Jinduicheng porphyry.  相似文献   
994.
The Beizhan large iron deposit located in the east part of the Awulale metallogenic belt in the western Tianshan Mountains is hosted in the Unit 2 of the Dahalajunshan Formation as lens, veinlets and stratoid, and both of the hanging wall and footwall are quartz-monzonite; the dip is to the north with thick and high-grade ore bodies downwards. Ore minerals are mainly magnetite with minor sulfides, such as pyrite, pyrrhotite, chalcopyrite and sphalerite. Skarnization is widespread around the ore bodies, and garnet, diopside, wollastonite, actinolite, epidote, uralite, tourmaline sericite and calcite are ubiquitous as gangues. Radiating outwards from the center of the ore body the deposit can be classified into skarn, calcite, serpentinite and marble zones. LA-ICP-MS zircon U-Pb dating of the rhyolite and dacite from the Dahalajunshan Formation indicates that they were formed at 301.3±0.8 Ma and 303.7±0.9 Ma, respectively, which might have been related to the continental arc magmatism during the late stage of subduction in the western Tianshan Mountains. Iron formation is genetically related with volcanic eruption during this interval. The Dahalajunshan Formation and the quartz-monzonite intrusion jointly control the distribution of ore bodies. Both ore textures and wall rock alteration indicate that the Beizhan iron deposit is probably skarn type.  相似文献   
995.
巴嘎德尔基岩体位于中祁连山西段的野马南山地区,主要由钾长花岗岩和二长花岗岩组成.LA-ICP-MS锆石U-Pb测年表明,巴嘎德尔基岩体侵位年龄为462.9±1.4Ma.该岩体地球化学方面表现出强过铝、高K、K/Na,低Mg、Fe、Ca的主量元素特征,并富集K、Rb、Ba、Th,亏损Zr、Hf、Y、Yb等微量元素,轻稀土富集,弱的Eu负异常.在微量元素判别图解上,所有岩石投影点均落入同碰撞区域.结合区域地质背景,认为巴嘎德尔基岩体是加里东造山作用晚期陆陆碰撞的产物.  相似文献   
996.
The Aligoodarz granitoid complex (AGC) is located in the Sanandaj-Sirjan Zone (SSZ), western Iran and consists of quartz-diorites, granodiorites and subordinate granites. Whole rock major and trace element data mostly define linear trends on Harker diagrams suggesting a cogenetic origin of the different rock types. (87Sr/86Sr)i and εNdt ratios are in the ranges 0.7074-0.7110 and −3.56 to −5.50, respectively. The trace elements and Sr-Nd isotopic composition suggest that the granitoids from the AGC are similar to crustal derived I-type granitoids of continental arcs. The whole rock suite was produced by assimilation and fractional crystallization starting from a melt with intermediate composition likely possessing a mantle component. In situ zircon U-Pb data on the granites with LA-ICP-MS yield a crystallization age of ∼165 Ma. Inherited grains spanning in age from ∼180 Ma up to 2027 Ma were also found and confirm that assimilation of country rock has occurred.Chemical and chronological data on the AGC were compared with those available for other granitoid complexes of the central SSZ (e.g., Dehno, Boroujerd and Alvand). The comparison reveals that in spite of the different origins that have been proposed, all these granitoid complexes are likely genetically related. They share many chemical features and are derived from crustal melts with minor differences. Alvand granites have the most peculiar compositions most likely related to the presence of abundant pelitic component. All these intrusions are coeval and reveal the presence of an extensive magmatic activity in the central sector of the SSZ during middle Jurassic.  相似文献   
997.
对分布于江南造山带东段江绍断裂带附近的浙江诸暨地区石角-璜山侵入岩进行了LA-ICP-MS锆石U-Pb定年工作,石角角闪辉石岩和璜山石英闪长岩的结晶年龄分别为844Ma±3Ma和818Ma±6Ma。该年龄结果表明,石角村附近的超镁铁质岩(包括球状辉闪岩)与其外围的闪长岩可能并非同时形成。江绍断裂带附近分布的多个闪长岩体的形成时代介于930~820Ma之间。对这些超镁铁质岩和闪长岩的精细岩石成因研究将有助于揭示扬子和华夏在新元古代时期的拼接过程。  相似文献   
998.
高黎贡构造带属于冈底斯地块东缘,滇西高黎贡花岗岩是冈底斯构造活动重要的岩浆记录。对高黎贡构造带的勐连花岗岩体南段的蒲川花岗岩地球化学特征进行的研究表明,蒲川花岗岩主要属于钙碱性-高钾钙碱性花岗岩,并表现出较强的过铝质特点;稀土元素配分模式曲线均表现为向右陡倾的LREE富集模式,具较弱的Eu负异常;花岗岩具后碰撞的特征,形成于主碰撞之后地壳向后碰撞-陆内转换的构造环境。LA-ICP-MS锆石U-Pb定年表明,蒲川花岗岩形成于早白垩世(128.9Ma±2.4Ma),年龄、地球化学特征与高黎贡构造带北部和中部一致,其形成可能是滇西怒江带碰撞作用的岩浆响应。  相似文献   
999.
在康西瓦断裂西段发育着一套含石榴子石二云斜长片麻岩。根据锆石的阴极发光图像和Th、U、REE等特征,锆石可分为岩浆成因和变质热液成因2类。利用LA-ICP-MS法进行锆石U-Pb定年,测得含石榴子石斜长片麻岩的源岩形成年龄为254.5Ma±4.2Ma(MSWD=0.16),变质年龄为242.7Ma±2.3Ma(MSWD=0.11)。结合区域地质资料,含石榴子石二云斜长片麻岩的变质作用与古特提斯碰撞造山有关,表明西昆仑造山带在中三叠世早期(243Ma)仍处于古特提斯碰撞造山期。  相似文献   
1000.
青藏高原南部中国境内是否存在寒武纪地层一直是地质界关注的焦点。研究表明,冈底斯北缘西藏尼玛县控错南帮勒村一带,原划的前震旦纪念青唐古拉岩群为一套浅变质的拉斑系列双峰式火山岩。通过高精度LA-ICP-MS(激光剥蚀等离子体质谱)锆石微区原位U-Pb同位素测年,获得其中变流纹岩206Pb/238U年龄加权平均值为(536.4±3.6)Ma,确定该套火山岩形成于早寒武世。地球化学分析表明,变玄武岩富集LREE、LILE、部分HFSE,Nb、Ta、Zr、Hf等亏损,Zr/Nb比值(2.53~3.61)低;变流纹岩明显富集LREE、LILE、Th、HFSE,具有Eu负异常和Sr、Nb、Ta、Ti负异常。同时,变玄武岩的εNd(t)为负值(-2.80~-4.56),源区为富集地幔端元EMⅡ,反映其源区为岩石圈和软流圈相互作用的产物,并遭受了地壳物质的混染。综合分析认为该套火山岩形成于陆缘裂谷环境,为冈底斯北缘存在寒武纪裂解作用提供了佐证。  相似文献   
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