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81.
李睿华  张晗  孙丰月  武广  张宇婷  王硕 《岩石学报》2018,34(6):1725-1740
大兴安岭北端的上黑龙江盆地具有良好的斑岩型矿床的成矿潜力,本次对二十一站铜金矿区与成矿密切相关的闪长岩、花岗闪长斑岩进行了锆石LA-ICP-MS U-Pb年代学和岩石地球化学研究。二十一站岩体的U-Pb定年结果显示,闪长岩形成时代为129±2Ma(MSWD=0.41),花岗闪长斑岩形成时代为127±2Ma(MSWD=0.10),均为早白垩世岩浆活动的产物。岩石地球化学特征显示,闪长岩SiO_2的含量为57.04%~59.91%,Al_2O_3为15.5%~16.22%,MgO为2.93%~4.02%,Mg~#为51~61;花岗闪长斑岩SiO_2的含量为61.52%~62.77%,Al_2O_3为13.71%~14.54%,MgO为1.91%~2.51%,Mg~#为52~60,岩石为高钾钙碱性系列。岩石的Sr含量高,为595×10~(-6)~1207×10~(-6),Y含量低,介于11×10~(-6)~16.1×10~(-6)之间,Yb含量低,为1.1×10~(-6)~1.62×10~(-6),(La/Yb)_N值为14.5~19.9,δEu值介于0.70~0.85之间,岩石明显富集大离子亲石元素(Rb、Ba)、轻稀土元素和不相容元素U,相对亏损重稀土、高场强元素(Nb、Ta、Ti),符合埃达克岩的地球化学特征。结合区域地质研究认为上黑龙江盆地二十一站早白垩世岩体为源区存在的榴辉岩或高镁麻粒岩构成的下地壳拆沉、熔融形成,该时期处于蒙古-中朝大陆与西伯利亚大陆后碰撞局部隆升的构造环境。  相似文献   
82.
In the early Paleozoic the Sino-Korean Craton (SKC) and South China Craton (SCC) were situated along the margin of east Gondwana. The SKC was connected to core Gondwana by an epeiric sea which was the site for deposition of lower Paleozoic sequences of SKC. The SKC and SCC may have drifted away from core Gondwana sometime during the mid-Paleozoic and would have been outboard microcontinents in the late Paleozoic, until they collided to form the East Asian continent in the Triassic. The breakup of SCC from Gondwana was suggested to have taken place at ∼380 Ma, while no reliable suggestions have hitherto been made for breakup of SKC from Gondwana. This study presents a convincing evidence for breakup of SKC from Gondwana, based on the recognition of Late Ordovician volcanism in Korea. New SHRIMP U–Pb zircon ages, 445.0 ± 3.7 Ma and 452.5 ± 3.2 Ma, are obtained from trachytic rocks of the Ongnyeobong Formation of Taebaeksan Basin in Korea which occupied the marginal part of the SKC in the early Paleozoic. This Late Ordovician volcanism along with previous records of Ordovician volcanic activities along the western margin of the SKC is interpreted indicating the development of an incipient oceanic ridge. The oceanic ridge uplifted the SKC including the epeiric sea, which subsequently resulted in terminating the early Paleozoic sedimentation of the epeiric sea. The paucity of lower Paleozoic volcanic rocks across much of the SKC however suggests that the oceanic ridge did not extend into the epeiric sea. Instead, spreading of oceanic ridge entailed dextral movement of associated transform faults, which may have played a major role in breakup of SKC from mainland Gondwana by the end of Ordovician.  相似文献   
83.
Geological, petrological and structural observations were obtained along a 30-km-long traverse across a segment of the Valle Fértil shear zone, central-western Argentina. On a regional scale, the shear zone appears as numerous discontinues belts over 25 km in width and is approximately 140 km in length, extended on the western section of the Sierras Valle Fértil – La Huerta mountain range. The steeply dipping shear zone with a vertical mylonitic lineation is composed of amphibolite facies ribbon mylonites and amphibolite to greenschist facies ultramylonites derived from Early Ordovician plutonic and metasedimentary parent rocks. Locally, syn-kinematic retrogression of mylonites formed greenschist facies phyllonites. During the later stages of deformation, unstrained parent rocks, mylonites, ultramylonites and phyllonites were affected by pervasive cataclasis under low greenschist facies conditions associated with localized faulting. One new 40Ar/39Ar age on biotite and published 40Ar/39Ar ages on amphibole in the shear zone yield an average cooling rate of 6.2 °C/Ma for a time period that crosses the Silurian–Devonian boundary. Since in metasedimentary rocks the youngest zircon's rims dated at 465 Ma marks the beginning of cooling, nearly continuous uplift of rocks within the shear zone occurred over a minimum time span of 55 Ma. During the period of active deformation, dip-slip movement can explain uplift of several kilometers of the Early Ordovician arc crust. The Valle Fértil shear zone, which was formed near above the inferred suture zone between the Famatinian arc and Cuyania microcontinent, is a major structural boundary nucleated within the Early Ordovician crust. The simplest geodynamic model to explain the evolution of the Valle Fértil shear zone involves the collision of the composite Cuyania/Precodillera microcontinent against the Famatinian arc.  相似文献   
84.
安芳  朱永峰  魏少妮  赖绍聪 《岩石学报》2014,30(6):1545-1557
京希-伊尔曼德金矿位于西北天山吐拉苏盆地中,矿区出露晚古生代火山-沉积岩和狮子山次火山岩;狮子山次火山岩主要为安山玢岩、英安玢岩,侵位于火山-沉积岩底部的凝灰质砂岩、凝灰岩、流纹岩以及安山岩组合中。锆石SHRIMP U-Pb年代学研究表明,狮子山次火山岩的形成年龄为370.5±2.1Ma,略晚于围岩火山岩。狮子山次火山岩MgO、TiO2、K2O含量低,为低钾拉斑系列,稀土元素总量低(5.1×10-6~8.8×10-6),轻稀土弱富集((La/Yb)N=2.7~3.8),弱Eu正异常和Ce负异常,相对富集大离子亲石元素和Zr、Hf,亏损Nd,地球化学特征与围岩安山岩明显不同。具有亏损的Sr-Nd同位素特征,(87Sr/86Sr)i=0.703185~0.703810,εNdt)=4.03~4.54。狮子山次火山岩形成于火山弧环境,是火山弧中少量拉斑系列岩石的代表,其岩浆源区为俯冲带流体交代的亏损地幔,地幔石榴石二辉橄榄岩经~5%部分熔融形成原始玄武质岩浆,玄武质岩浆经~20%的矿物分离结晶形成狮子山次火山岩,其形成环境以及演化过程非常有利于岩浆演化形成热液型金矿床,可能与京希-伊尔曼德金矿具有密切的成因联系。  相似文献   
85.
野马泉大型铁多金属矿床位于东昆仑造山带祁漫塔格地区,矿区发育大量与铁多金属成矿关系密切的花岗质岩体。LA-ICP-MS锆石U-Pb定年表明北矿带隐伏二长花岗岩、花岗闪长岩年龄分别为393±2Ma、386±1Ma;南矿带斑状石英二长闪长岩、正长花岗岩年龄为219±1Ma、213±1Ma,分别为早-中泥盆世和晚三叠世岩浆活动的产物。早-中泥盆世花岗闪长岩与二长花岗岩均为高钾钙碱性,A/CNK值(0.92~1.01)<1.1,具中等强度的负Eu异常(δEu为0.60~0.81),明显亏损P、Nb、Ta、Ti、Sr、Ba等,富集LREE、Rb、Th、U、K等,显示了I型花岗岩的特征。晚三叠世斑状石英二长闪长岩含有少量角闪石,A/CNK值(0.88~0.95)<1,轻稀土富集,具中等负Eu异常(δEu为0.49~0.67),富集Rb、U、Th、K等大离子亲石元素,亏损P、Nb、Ta、Ti、Sr、Ba等,具有I型花岗岩的特征;正长花岗岩高硅(SiO2=77.20%~78.13%)、富碱(K2O+Na2O=7.91%~8.27%)、贫铝(Al2O3=11.71%~12.18%)、贫钙(CaO=0.90%~1.01%),富集LREE、Y、Zr、Hf、Th、U、Ga等,强烈亏损Ba、Sr、P、Ti、Eu,具强烈的负Eu异常(δEu为0.08~0.13),显示弱过铝质A型花岗岩的特征。锆石Hf同位素组成表明,早-中二叠世岩体的εHft)为-3.3~6.2,晚三叠世岩体的εHft)为-6.3~5.5,显示在成岩过程中有地幔组分的参与。综合研究认为,野马泉矿区早-中泥盆世、晚三叠世岩体分别形成于早古生代构造-岩浆旋回的碰撞-后碰撞阶段和晚古生代-早中生代构造-岩浆旋回的碰撞-后碰撞阶段,可能是由地幔底侵古老陆壳,幔源基性岩浆与壳源花岗质岩浆发生不同程度混合作用而生成,壳幔物质交换为区内大规模铁铜铅锌多金属矿化提供大量成矿物质。  相似文献   
86.
新疆西南天山低压高温变质带深熔时代及其地质意义   总被引:1,自引:0,他引:1  
施建荣  刘福来  刘平华  孟恩  刘超辉  杨红  王舫  蔡佳 《岩石学报》2014,30(10):2843-2856
西南天山木扎尔特地区低压高温变质带主要出露片麻岩类、斜长角闪岩类和麻粒岩类三种岩石类型,由于受到深熔事件的影响在其内部形成了规模不一的长英质脉体,然而对这些深熔长英质脉体的时代还缺乏准确的限定。本文通过详细的岩相学、锆石阴极发光图像研究,采用LA-ICP-MS技术对3件长英质脉体不同锆石微区进行了U-Pb定年,进而探讨西南天山低压高温变质带的形成时间。长英质脉体中的新生锆石具有弱的振荡环带,低的Th/U比值,锆石形态学和内部结构也表明锆石结晶于与深熔作用有关的熔体中,长英质脉体获得的深熔时代为276.5±2.0Ma、272.0±1.7Ma、265.5±1.5Ma,其年龄范围代表了木扎尔特地区低压高温变质带的形成时间可能为早中二叠世,该年龄与区域上西南天山造山带广泛出现的碰撞后岩浆事件的时代相一致,表明早二叠世西南天山造山带已进入造山后伸展减薄的后碰撞造山演化阶段。同时获得一组集中分布的深熔长英质脉体421.8±3.2Ma的继承锆石年龄,该年龄与寄主岩石夕线石榴黑云斜长片麻岩一组主要的年龄峰值一致,表明长英质脉体可能来源于夕线石榴黑云斜长片麻岩的部分熔融作用,对应于南天山志留纪晚期的岩浆事件。  相似文献   
87.
The Liudaowaizi Cu deposit is located in the east of Jilin Province and represents one of the few known Early Jurassic skarn Cu deposits in NE China. Here, we present new whole-rock major and trace element, zircon U–Pb and Hf isotopic data of quartz diorite exposed in the Liudaowaizi skarn Cu deposit. The quartz diorite belongs to the calc-alkaline series, is enriched in some of the large-ion lithophile elements (LILE; e.g., Rb, Ba, Th, and K) and is depleted in high-field-strength elements (HFSE; e.g., Ta, Nb, and Ti). LA-ICP-MS dating of zircons from the quartz diorite in the deposit yielded ages of 196 ± 1 Ma that are interpreted to be the emplacement age of this intrusion. Positive εHf values (6.6–11.6) and young TDM2 (490–813 Ma) of the quartz diorite indicate that the parent magma was derived from the partial melting of a juvenile lower crust, and magmatism and Cu mineralization were possibly related to the subduction of the Paleo-Pacific Plate.  相似文献   
88.
铀矿床定年研究进展评述   总被引:8,自引:3,他引:5  
往往由于铀矿物(沥青铀矿)颗粒细小、易蚀变成铀的次生矿物及多期铀矿化作用相互叠加等在组成和结构上的固有特点,通常难以用挑选铀矿物(沥青铀矿)样品溶样的传统定年方法精确确定其形成年龄。随着分析技术的不断更新和发展,对铀矿床成矿年代学的研究也不断深入。但受铀矿床中铀矿物U-Pb定年方法本身的制约,以及以往对铀矿物U-Pb定年体系中铀矿物样品要求认识的不足,常常导致获得的年龄无实际地质意义或无法获得理想的等时线年龄。本文针对铀矿化定年方法的发展历程进行了系统梳理和分析,评述了铀矿物定年的五种主要方法:(1)铀矿物U-Th-totalPb化学年龄;(2)铀矿物模式年龄;(3)铀矿物传统等时线年龄;(4)铀矿物矿伴生矿物年龄;(5)原位微区铀矿物U-Pb年龄。在此基础上,深入探讨了铀矿化作用定年研究中存在的问题和对应方案,期望促进未来铀矿床成矿年代学的发展。  相似文献   
89.
地处柴达木盆地西南缘的青海祁漫塔格地区不仅是一个特征显著的构造-岩浆岩带,而且也是重要的多金属成矿带。本文对该区中晚三叠世花岗岩开展了详细的年代学、岩石地球化学及Sr-Nd-Pb同位素组成研究,并探讨了成矿意义。结果表明,本区中晚三叠世花岗岩均系准铝质到弱过铝质高钾钙碱性花岗岩类,晚三叠世花岗岩具有更高的K2O/Na2O比值,富集大离子亲石元素(LILE)和轻稀土元素(LREE),明显亏损高场强元素(HFSE),中等初始锶比值和偏负的εNd(t)值表明它们主要源于古老地壳物质的深熔或重熔,并可能有幔源物质的加入;发育闪长质暗色微粒包体的中三叠世花岗岩锆石U-Pb年龄为230~237Ma,大多具斑状或似斑状结构的晚三叠世高分异富钾花岗岩形成于204~228Ma,表明大约240Ma祁漫塔格主造山已由挤压转入伸展并伴有幔源岩浆活动,晚三叠世后演化到后碰撞阶段;中晚三叠世花岗岩与本区密集产出的矽卡岩型和斑岩型多金属矿床的时空与成因关系密切,具有重要找矿指示意义。  相似文献   
90.
Abstract

The multiply deformed Upper Austro-Alpine nappe pile of the Graz area is built up of low-grade metamorphosed Paleozoic rocks which are discordantly overlain by sediments of Santonian (Late Cretaceous) age (“Gosau” formation). Slices of Permo-Mesozoic rocks are absent. Analyses of structures, microfabrics, strain and shear directions were used to decipher the kinematic history; geochronological investigations to date the age of thrusting. K/Ar and Rb/Sr ages of synkinematically grown mica suggest an eo-Alpine (Early Cretaceous) age for the major deformation D1. D1 is characterized by non-coaxial rock flow which caused SW- to W directed nappe imbrication. Incremental strain measurements indicate the progressive superposition of D2 over Dl. In the higher nappe (Rannach Nappe) nappe imbrication continued during D2 changing the direction of nappe transport from SW to NW. Enhanced flattening strain in the deeper nappe (Schöckel Nappe) led to recumbent folds in all scales during D2. This study emphasized two interpretations : (1) The Alpine deformation in the Upper Austro-Alpine nappe pile of the Paleozoic of Graz started in the Earliest Cretaceous (about 125 Ma.). (2) The emplacement of nappes followed a curved translation path in the studied area.  相似文献   
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