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921.
内蒙古东乌珠穆沁旗地区是中国北方造山带内泥盆系最为发育地区之一。前人运用古生物化石确定了该区泥盆纪地层的相对年代,但缺少精确的同位素年龄。本文采用LA-ICP-MS测年技术,对发育在泥盆纪塔尔巴格特组上部的凝灰岩夹层进行了锆石U-Pb同位素测年,获得~(206)Pb/~(238)U加权平均年龄为380.8±1.6 Ma(MSWD=2.7),确定其时代为晚泥盆世早期,为本区泥盆系提供了精确的年代学数据。结合古生物化石组合资料,将塔尔巴格特组时代确定为中泥盆世吉维特期—晚泥盆世弗拉期。  相似文献   
922.
传统上将阿拉善地块东部变质基底"阿拉善岩群"之上的一套以石英岩、浅粒岩、碳酸盐岩及碎屑岩为主的浅变质地层称为诺尔公群,并根据区域地层对比及叠层石化石将其归为"长城纪"。为进一步限定地层时代,对诺尔公群底部3件石英岩进行LA-MC-ICP-MS锆石U-Pb测年,获得的年龄主要集中在2 530~2 500 Ma和1 950~1 850 Ma两个年龄段内,另外还获得少量年龄为~1.69 Ga、~2.0 Ga、~2.15 Ga、~2.35 Ga、~2.7 Ga和~3.4 Ga的锆石。其中,最年轻的碎屑锆石年龄限定了诺尔公群底部石英岩的沉积时代晚于1.69 Ga,结合上覆地层的年龄数据将诺尔公群的沉积时代大致限定为1.69~1.29 Ga,肯定了阿拉善地块存在中元古代地层。石英岩中~2.5 Ga和~1.95 Ga两个显著的碎屑锆石年龄峰符合典型的华北克拉通物源区特征,因此认为,阿拉善地块在太古代-中元古代具有与华北克拉通相似的构造环境,是华北克拉通的一部分。  相似文献   
923.
沉积岩中的碎屑组分及主量元素、微量元素和稀土元素可以反映物源信息,广泛应用于沉积源区的确定、构造背景的分析。通过对柴窝铺盆地及北缘地区侏罗纪至古近纪沉积地层的碎屑岩岩石学和地球化学分析,揭示了盆地沉积岩的原岩来自上地壳,岩性以长英质岩石为主,并混合进了部分安山质及基性岩石。源区构造背景为活动大陆边缘,因其原岩是在大陆岛弧环境下形成的,所以部分构造背景显示为大陆岛弧。本次研究不仅可以为柴窝铺盆地及北天山的构造演化过程及其机制提供有力证据,并且对柴窝铺油气勘探具有一定指导意义。  相似文献   
924.
通过对锡林浩特东部地区早白垩世花岗岩体进行SHRIMP锆石U Pb测年、地球化学测试,讨论其形成构造环境。花岗岩测年结果为:正长花岗岩(DS214)(1391±17) Ma,花岗岩(DS220)(1347±17) Ma,表明研究区花岗岩形成于早白垩世早期。花岗岩地球化学具有高硅、富碱、相对低铝的特征,A/CNK平均值106,为弱过铝质花岗岩。微量元素相对富集大离子亲石元素(Th、U、K),明显亏损Nb、Ba、Sr、P、Ti等高场强元素;稀土总量高,为12290×10-6~36877×10-6,LREE/HREE值为571~1436,呈右倾模式,负Eu异常显著(010~050),表现为A型花岗岩特征。K2O-Na2O构造环境判别图表明样品为A型花岗岩,Y/Nb Ce/Nb图解显示花岗岩为A2型。主量元素、微量元素特征指示花岗岩形成于造山后岩石圈伸展作用阶段,在壳源岩浆演化过程中存在幔源物质混染作用。花岗岩成因可能是晚古生代末—中生代初期间古亚洲洋闭合引起的一系列板块碰撞作用(包括蒙古—鄂霍次克洋闭合),使造山后期地壳逐渐增厚并发生重力垮塌,导致构造环境由挤压转变为伸展,同时受古太平洋板块西向俯冲的影响。  相似文献   
925.
新疆东天山哈尔里克造山带火山岩为一套酸性—基性岩(流纹岩、英安岩、安山岩、玄武岩)夹火山碎屑岩(凝灰岩)的岩石组合。流纹岩样品的LA ICP MS锆石U Pb定年结果显示,时代为中奥陶世大坪期((4688±91) Ma),代表了该套火山岩的形成年龄。岩石地球化学分析结果显示,该套火山岩SiO2含量介于4912%~7824%,TiO2介于012%~100%,Al2O3介于1131%~2086%;铝饱和指数A/CNK值为080~131(均值为099),里特曼指数σ值为019~386(均值为129),Mg#值为887~4929(均值为3120);富集大离子亲石元素(LILE)Ba、Rb以及轻稀土元素(∑LREE)La、Ce,亏损高场强元素(HFSE)Nb、Ta、Ti等。微量元素和稀土元素的相关图解与比值以及发育的捕获锆石反映了俯冲带岛弧钙碱性火山岩特征,且存在大陆地壳混染作用。综合区域地质资料分析,在早古生代期间(中奥陶世—早志留世),哈尔里克造山带存在大面积的与岛弧演化有关的加里东期岩浆活动,此期间哈尔里克造山带的构造背景为洋壳俯冲有关的岛弧环境,其形成可能与东准噶尔南部克拉麦里洋向南俯冲作用有关。  相似文献   
926.
The Gangdese batholith, more than 2500 km in length, is composed mainly of JurassicMiocene igneous rocks. This batholith is one of the most important constituents of the Tibetan orogenesis and provides an ideal place for study of Neo-Tethyan ocean geodynamic evolution and plateau uplift. Recent studies on the Gangdese Jurassic felsic magmatism highlight its juvenile source. However, important aspects concerning the genesis of the juvenile magmatism and related deep geodynamic evolution are still unclear. Here, we report detailed petrological, geochronological, geochemical, whole-rock Sr-Nd isotopic, and in situ Sr-Hf isotopic data for a recently identified hornblende gabbro in the Dongga area, southern Lhasa sub-block. This hornblende gabbro is dominated by hornblende and plagioclase, dated at Early Jurassic(ca. 180–190 Ma), and characterized by a narrow compositional range in SiO_2(49.38wt%–52.27wt%), MgO(4.08wt%–7.00wt%), FeO(10.43wt%–11.77wt%), Na_2O(2.58wt%–3.51wt%), and K_2O(0.48wt%–1.53wt%). It has depleted isotopic signatures, with whole-rock(~(87)Sr/~(86)Sr)i ratios of 0.7033–0.7043, ε_(Nd)(t) values of +4.90 to +6.99, in situ plagioclase(~(87)Sr/~(86)Sr)i ratios of 0.7034–0.7042, and zircon ε_(Hf)(t) of +12.2 to +16.8. Our results integrated with published data suggest a model of Gangdese juvenile crustal growth by a subduction-related water-enriched mantle wedge. The hydrous partial melting of the lithosphere mantle was triggered by the dehydration of a Neo-Tethyan oceanic slab. This mafic magmatism emplaced in the middle-lower crust of intraoceanic arcs or active continental margins, leading to Jurassic juvenile crustal growth in southern Tibet.  相似文献   
927.
The Berezitovoe deposit is a large-sized Au-Ag-Zn-Pb deposit in the east of the SelengaStanovoi superterrane, Russia. Au-Ag orebodies are hosted by tourmaline-garnet-quartz-muscovite metasomatic rocks; Zn-Pb orebodies are hosted by granodiorites, porphyritic granites and tourmalinegarnet-quartz-muscovite metasomatic rocks. These orebodies are surrounded by wall rocks dominated by the Tukuringra Complex granodiorites, porphyritic granites, and gneissic granodiorites. The alteration includes silicification and garnet, sericitization chloritization, carbonatization and kaollinization. LA-ICP-MS U-Pb zircon dating indicates that the gold mineralization can be divided into two stages in the Berezitovoe polymetallic gold deposit(at 363.5 ± 1.5 Ma, and133.4± 0.5).Hornblende-plagioclase gneisses of the Mogocha Group in the study area underwent Paleoproterozoic metamorphism(at 1870 ± 7.8 and 2400 ± 13 Ma), gneissic granodiorite of the Tukuringra Complex yields a late Paleozoic magmatic age(at 379.2 ± 1.1 Ma),and subalkaline porphyritic granitoid of the Amudzhikan Complex yield late Mesozoic magmatic ages(133-139 and 150-163 Ma). Granodiorites of the Tukuringra Complex in the study area have high concentrations of SiO_2(average of 60.9 wt%), are aluminum-oversaturated(average A/CNK of 1.49), are enriched in the large ion lithophile elements(e.g.,K, Rb, and Ba), U, Th, and Pb, are depleted in high field strength elements(e.g., Ta, Nb, and Ti), and have slightly negative Eu and no Ce anomalies in chondrite-normalized rare earth element diagrams.Fluid inclusions from quartz veins include three types: aqueous two-phase, CO_2-bearing three-phase,and pure CO_2. Aqueous two-phase inclusions homogenize at 167℃-249℃ and have salinities of 4.32%-9.47% NaCl equivalent, densities of 0.86-0.95 g/cm~3, and formed at depths of 0.52-0.94 km. In comparison, the C0_2-bearing three-phase inclusions have homogenization temperatures of 265℃-346℃,salinities of 7.14%-11.57% NaCl equivalent, and total densities of 0.62-0.67 g/cm~3. The geochemical and zircon U-Pb data and the regional tectonic evolution of the study area, show that the Berezitovoe polymetallic gold deposit formed in an island arc or active continental margin setting, most probably related to late Paleozoic subduction of Okhotsk Ocean crust beneath the Siberian Plate.  相似文献   
928.
The newly discovered Yangchongli gold deposit is a unique independent gold deposit in the Tongling ore-cluster region controlled by the tectonic alteration firstly discovered in the Lower Yangtze Metallogenic Belt(LYMB). The host magmatic rocks mainly consist of monzodiorite and K-feldspar granite. The LA-ICP-MS U-Pb zircons dating yielded weighted mean ~(206)Pb/~(238)U ages of 140.7 ± 1.8 Ma and 126.4 ± 1.2 Ma for the monzodiorite and K-feldspar granite, respectively. Monzodiorites are enriched in Sr, Ba, Rb, and depleted in Y, Yb with high Sr/Y and La/Yb ratios, similar to the geochemical features of adakite, considered as products of differentiation of mafic magmas originating from lithospheric mantle melt/fluids caused by metasomatism during paleo-Pacific Plate subduction in the Mesozic. In contrast, the compositions of K-feldspar granites are A-type granites, indicating an extensional tectonic background. Gold ores hosted in the fracture zone occurred as quartz vein within cataclastic rock. Sulfur and lead isotopes from pyrites show crust-mantle mixing characteristics. Metal components from strata also took part in the gold mineralization, and resulted from two episodes of magmatism that were probably related to tectonic transition from a compressive to an extensional setting between 140–126 Ma, which led to the Mesozoic large-scale polymetallic mineralization events in eastern China.  相似文献   
929.
内蒙古巴彦都兰铜矿床位于二连—东乌旗成矿带,该矿区出露下泥盆统泥鳅河组粉砂岩和海西中期黑云母花岗岩体,铜矿体呈脉状产出于泥鳅河组粉砂岩中,严格受断裂控制。主要金属矿物为黄铁矿、磁黄铁矿、黄铜矿等,脉石矿物主要为石英和碳酸盐岩等。矿区黑云母花岗岩La-ICP-MS锆石~(206)Pb/~(238) U加权平均年龄为303.5 Ma±1.1 Ma,铜矿床属于晚古生代构造-岩浆作用的产物。岩石地球化学特征反映黑云母花岗岩属准铝质-弱过铝质高钾钙碱性系列,A/CNK值介于0.99~1.04之间,高碱(w(K_2O+Na_2O)=7.36%~8.73%),富钾(w(K_2O)/w(Na_2O)=1.08~1.66),其形成具有岛弧或后碰撞环境I型花岗岩特征;微量元素特征显示岩体可能形成于后碰撞伸展阶段早期的构造环境中。黄铜矿硫同位素组成介于0.1×10~(-3)~2.1×10~(-3)之间,反映成矿所需的硫可能来自于岩浆,巴彦都兰铜矿区花岗岩很可能是成矿硫的提供者。  相似文献   
930.
东昆仑那陵格勒河南地区发育上三叠统鄂拉山组(T_3e)火山岩,岩石类型主要以英安质玻屑晶屑凝灰岩和英安质熔结凝灰岩为主,具有高碱、高钾、高铝的特征;岩石的二氧化硅含量w(SiO_2)=69.12%~74.52%,全碱含量w(Na_2O+K_2O)=6.42%~7.33%,里特曼指数σ=1.39~2.01,岩石的铝过饱和指数ASI介于1.02~1.17之间,属典型的过铝质高钾钙碱性系列。岩石的稀土元素w(LREE)/w(HREE)=11.02~15.99,δEu=0.54~0.67,铕具中等亏损,属轻稀土富集型;微量元素K、Rb、Ba和Th较强的富集,Sr、Ti、Sc、Cr明显亏损,具有后碰撞下地壳重熔产物的特征。在鄂拉山组玄武质晶屑凝灰熔岩中获U-Pb同位素年龄值为231 Ma±1 Ma,形成时代为晚三叠世。通过综合分析认为,鄂拉山组火山岩可能形成于以侧向挤压为主的陆—陆后碰撞过程中加厚地壳物质部分熔融的产物,属于印支期后碰撞火山盆地岩石建造。  相似文献   
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