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1.
为了全面研究阿拉尔岩体与可可托海地区伟晶岩脉群在成因上的关系,笔者系统分析阿拉尔岩体西部阿热散一带含绿柱石伟晶岩脉中锆石U–Pb同位素年龄、地球化学、Hf同位素特征。结果显示:伟晶岩脉锆石206Pb/238U加权平均年龄为(203.9±2.2)Ma,地球化学特征表现为高Si、低Ti、富Al、富碱,富集大离子亲石元素Rb、Th、U和稀土元素La、Ce、Nd、Sm,亏损Ba、Nb、Ta、Zr、Hf、Sr、P、Ti,属于典型的低Ba、Sr岩石,锆石同位素176Hf/177Hf值为0.282 714~0.282 749,εHf(t)值为+2.56~+3.65,tDMC模式年龄为852~912 Ma,与阿拉尔岩体具有形成时代的一致性,地球化学特征的相关性,176Hf/177Hf值与εHf(t)值的相似性,表明两者具有密切的成因关系。结合区域资料认为,中生代稀有金属矿化伟晶岩脉与阿...  相似文献   

2.
板山坪岩体是北秦岭二郎坪群中的侵入岩。为了查明该岩体的成因,对该岩体进行了锆石U-Pb年代学、锆石原位Hf同位素研究以及矿物化学分析等方面的研究。研究结果表明,板山坪岩体岩性组成主要为石英闪长岩和花岗闪长岩,花岗闪长岩内部存在暗色包体。本次研究获得板山坪石英闪长岩锆石U-Pb年龄为442.7~432.2 Ma,花岗闪长岩锆石U-Pb年龄为436.8~432.7 Ma,暗色包体锆石U-Pb年龄为437.6 Ma。锆石176Hf/177Hf值为0.282 737~0.282 736,εHf(t)值集中分布在8.4~9.4之间,二阶段Hf模式年龄(TDM2)在876~832 Ma之间。石英闪长岩结晶温压分别为673 ℃~745 ℃和0.19~0.54 GPa,花岗闪长岩结晶温压分别为657 ℃~730 ℃和0.48~0.96 GPa,暗色包体结晶温压分别为680 ℃~734 ℃和0.69~1.65 GPa。综合分析认为板山坪岩体为复式岩体,两期结晶年龄分别为496~487 Ma和442~432 Ma。岩石来源于地幔分离出来的新生下地壳。  相似文献   

3.
嘎机Pb-Zn-Cu多金属成矿区位于老君山穹窿状变形-变质岩系和花岗岩体的北部接触带上,属于滇东南W-Sn-Pb-Zn-Cu多金属矿集区的重要组成部分,是近年来新发现的、规模达到中型的多金属矿床。笔者在钻探工程基础上对矿区内隐伏的花岗片麻岩和石英片岩开展了LA-ICP-MS锆石U-Pb定年和原位Hf同位素研究。结果表明,花岗片麻岩锆石206Pb/238U加权平均年龄为(419.9±6.3)Ma,石英片岩锆石206Pb/238U加权平均年龄为(411.0±11.0) Ma,指示其原岩形成于晚志留世—早泥盆世,具有同源岩浆演化特征,为区域加里东期岩浆活动的产物,后期均发生了变质作用。花岗片麻岩锆石176Hf/177Hf值在0.28243~0.28252之间,εHf(t)=-3.4~0.3,石英片岩锆石176Hf/177Hf值为0.28237~0.28253,εHf(t)=-...  相似文献   

4.
粤东莲花山地区位于我国东南沿海火山岩发育区,是我国重要的钨金成矿远景区。通过对该地区各类花岗岩进行LA-ICP-MS锆石U-Pb定年、岩石地球化学特征、锆石Lu-Hf同位素组成和微量元素研究,结果表明:莲花山地区的岩浆活动至少存在3期,其中石英闪长玢岩形成于中侏罗世((168.0±2.2)Ma),黑云母二长花岗岩形成于早白垩世早期((137.5±1.9)Ma),石英斑岩形成于早白垩世晚期((102.0±1.5)Ma和(98.7±1.8)Ma);岩石以钙碱性铝质-强过铝质岩浆为主,石英斑岩和流纹斑岩与成矿关系密切;各类岩浆锆石的176Lu/177Hf值均低于0.002,176Hf/177Hf值大多数小于0.282 7,εHft)值大多数处于-2.57~1.00之间,fLu-Hf值为-0.99~-0.95,二阶段模式年龄主要介于1.00~0.81 Ga之间,指示成岩物质来源主要来自新元古代古老下地壳变质泥岩和变质砂岩部分熔融,有少量幔源物质加入;锆石结晶温度大多处于650~750℃之间,岩石为I型花岗岩。莲花山地区不同阶段的岩浆活动和成矿作用与区域构造转换事件相关,虽缺少高精度成矿年龄对成矿时限的限制,但根据地质事实和本次研究认为该地区主要的钨金成矿时间应略晚于石英斑岩的形成时间((102.0~98.7)Ma)。  相似文献   

5.
秦岭是一个多阶段演化的复杂大陆碰撞造山带,经历了多期的洋—陆俯冲聚合过程,目前对于南秦岭勉略洋盆的闭合时间仍旧存在不同认识。本文对南秦岭佛坪西岔河角闪黑云片岩中的锆石开展了内部结构分析、原位微量元素组成分析和LA-ICP-MS微区U-Pb定年。CL图像揭示锆石内部无环带,或发育扇形分区,显示典型的变质成因锆石的内部结构特征。这些锆石在稀土配分图中显示LREE亏损,HREE富集,具有明显的Ce正异常和微弱的Eu负异常,与变质重结晶稀土配分图类似。此外,它们的Hf同位素组成均一,176Hf/177Hf和176Lu/177Hf的比值分别介于0.282 436~0.282 570和0.000 262~0.001 138,其εHf(t)值介于-7~-2,两阶段Hf模式年龄(TDM2)为1 707~1 409 Ma,晚于前人对长角坝岩群沉积时代的认识,可能与变质作用过程中流体的加入有关,使得176Hf/177Hf比值升高。这些变质成因锆石206Pb/238U加权平均年龄为220±1 Ma,该变质年龄及其锆石Ti温度计算结果(平均值约为716 ℃)均与佛坪热穹隆变质时代及变质温度一致,揭示这套角闪黑云片岩形成于高温伸展环境。由于典型的热穹隆常发育于伸展的构造环境中,因此佛坪热穹隆变质时代的确定揭示南秦岭勉略洋盆的闭合可能发生在晚三叠世之前。  相似文献   

6.
对冈底斯中段南木林县普洛岗乡花岗岩岩体进行了原位锆石LA-ICP-MS U-Pb定年和Hf同位素分析。2个花岗岩样品加权平均年龄分别为(44.3±1.1)和(44.5±1.1) Ma,代表该岩体的岩浆结晶年龄为始新世。岩石地球化学资料显示,花岗岩SiO2质量分数为60.53%~65.28%,K2O+Na2O质量分数为6.53%~7.98%,Al2O3质量分数为15.52%~16.13%,铝饱和指数为0.86~0.91,属于准铝质高钾钙碱性系列花岗岩类。花岗岩轻稀土元素相对较富集,具有明显的Eu负异常,微量元素中亏损Nb、Ta、Ti和富集Rb、Th、U、Pb。锆石Hf同位素初始比值εHf(t)值为8.8~11.1,176Hf/177Hf 为0.282 994~0.283 060,Hf同位素地壳模式年龄为422~557 Ma,反映了其岩浆来源于新生地壳物质的部分熔融。普洛岗乡花岗岩的形成与新特提斯洋向北俯冲、俯冲板片折返断离有关。  相似文献   

7.
近期在燕山期岩浆活动缺乏的黔西南地区发现了罗悃二长花岗斑岩,为厘定其形成年龄,明确黔西南地区燕山期岩浆岩活动机制,本文对其进行了激光剥蚀电感耦合等离子质谱仪(LA-ICP-MS)锆石U-Pb定年,Hf同位素和主、微量元素分析。结果表明,18颗柱状锆石年龄为(157.8±0.4)Ma(MSWD=1.4),代表二长花岗斑岩的侵位年代为晚侏罗世;锆石的176Hf/177Hf值(0.282 390~0.282 478)和εHf(t)(均值为-8.17)表明二长花岗斑岩的岩浆源区主要以富集地幔为主;岩石的SiO2含量为65.91%,CaO为1.44%,Al2O3为15.67%,MgO为0.57%,TFe2O3为4.23%,K2O为4.19%,Na2O为5.72%,σ为3.76~4.98,A/CNK为0.93~0.96,显示富碱、准铝质的特征,应为I型花岗岩类;岩石的∑REE(32...  相似文献   

8.
麻元锡矿床是马来半岛东部花岗岩带内重要原生锡矿之一。为厘定矿区成矿花岗岩的形成时间及构造背景,本文开展了岩石学、锆石U-Pb年代学、岩石地球化学、Sr-Nd同位素及锆石Hf同位素研究。对2件矿区花岗岩样品的锆石进行了LA-ICP-MS U-Pb测试,获得了207Pb/206Pb-238U/206Pb谐和年龄分别为(259.0±3.3) Ma(MSWD=0.77)和(261.3±2.8) Ma(MSWD=0.55),加权平均年龄为(260.30±2.0) Ma(MSWD=1.3)及(263.0±2.1) Ma(MSWD=0.15)。岩石地球化学分析显示,矿区花岗岩样品富Si O2(73.09%~76.56%)、富K2O(4.29%~4.91%),IA/CNK为1.03~1.06,轻稀土富集(LREE/HREE为4.24~8.08),Eu负异常明显(δEu=0.08~0.20),富含大离子亲石元素(Rb、K、Th、U),亏损高场强元素(N...  相似文献   

9.
车路沟金矿是北祁连山发现的首例与斑岩有关的金矿床,矿体产于加里东晚期侵入的中酸性斑岩体及其与围岩接触带内。为了查明含矿斑岩体侵位时代、岩石成因和源区性质,本文以车路沟一带含矿斑岩体作为研究对象,对其开展了岩石地球化学、LA-ICP-MS锆石U-Pb同位素定年和Hf同位素特征研究。该岩体主要由花岗闪长斑岩、石英闪长斑岩、英云闪长斑岩组成,对花岗闪长斑岩、英云闪长斑岩进行了LA-ICP-MS锆石U-Pb同位素定年,分别获得锆石206Pb/238U加权平均年龄为438.6±3.8Ma和433.0±3.8Ma,指示岩浆侵位时代为早志留世晚期。岩石Si O2含量为61.4%~68.6%,Al2O3含量为15.0%~16.7%,MgO含量为0.36%~2.95%,σ值介于1.20~2.03之间,A/CNK值为1.0~1.1之间,属钙碱性系列准铝质花岗岩类;具有弱负铕异常-正铕异常(δEu=0.90~1.18),高Sr(319×10-6~549×10-6  相似文献   

10.
俯冲带是壳-幔物质循环的重要场所,硬玉岩可以记录这一循环过程。文中总结了俄罗斯极地乌拉尔硬玉岩的研究进展。硬玉岩呈脉状或透镜状产在蛇纹石化的方辉橄榄岩中,主要由硬玉和绿辉石组成。根据结构和颜色,硬玉可识别出两个世代。硬玉韵律环带发育,含有H2O和CH4流体包裹体,显示从流体中结晶的特征。硬玉岩中的锆石为热液锆石,锆石稀土元素中LaN/YbN=0.001~0.01,LuN/GdN=10~83,Ce/Ce*=2.8~72,显示正异常,δEu=0.53~1.02,类似于岩浆锆石。锆石的176Hf/177Hf=0.282 708~0.283 017,εHf(t)=+6~+17,类似于N-MORB的Hf同位素组成,锆石δ18O组成为5.03‰~6.04‰,平均δ18O为(5.45±0.11)‰,类似于岩浆热液和地幔的氧同位素组成。这可能反映了锆石是被俯冲带流体从途经火成岩中捕获的或者形成锆石的流体与寄主岩(方辉橄榄岩)达到了平衡。硬玉岩稀土元素配分模式近平坦或轻稀土元素略显富集,LaN/YbN比值为0.82~2.42,δEu为1.2~1.6,显示正异常,这与寄主岩稀土元素配分模式相似。富集Sr、Ba、Zr、Hf,Nb为负异常,与岛弧岩浆特征类似。(87Sr/86Sr)t为0.703 400~0.703 519(t=368 Ma),变化较小,与古海水差别明显;εNd(t)值为+0.77~+5.61,变化较大,与寄主岩(方辉橄榄岩)的Nd同位素组成类似,但不同于海水及沉积物的Nd同位素组成,表明硬玉岩的物质来源与寄主岩有明显继承关系,海水与沉积物的贡献不是主要的。矿物学和岩石学证据支持极地乌拉尔的硬玉岩主要是俯冲带流体与橄榄岩相互作用后并在其中结晶的产物。  相似文献   

11.
水口山铅锌多金属矿田是我国南岭地区重要的有色金属和贵金属生产基地之一。矿田内中酸性岩体发育,研究这些岩体的地质地球化学特征对理清区内成岩成矿演化谱系和指导找矿勘探均具有重要意义。该矿田内,老鸦巢4号和鸭公塘3号花岗闪长岩岩体的主微量元素组成相似,都具有高钾钙碱-钾玄及准铝质的特点。岩石微量元素配分呈平滑的右倾,轻稀土元素富集,重稀土元素分布平滑,具有弱的负铕异常。LA-ICP-MS锆石U-Pb定年表明,老鸦巢花岗闪长岩的年龄为(162.9±0.7) Ma,鸭公塘花岗闪长岩的年龄为(156.3±0.6) Ma。年龄结果表明水口山矿田花岗闪长岩岩体主要形成于燕山早期,经历了多期多阶段侵位过程。锆石原位Lu-Hf同位素分析结果显示,老鸦巢花岗闪长岩εHf(t)值为-11.2~-8.24,二阶段模式年龄(TDM2)为1 920~1 734 Ma;鸭公塘花岗闪长岩εHf(t)值为-13.51~-6.23,二阶段模式年龄为2 063~1 601 Ma,显示鸭公塘岩体壳幔混合作用强于老鸦巢岩体。结合岩石地球化学特征及前人对矿田内仙人岩二长岩等岩体的研究结果,文章认为形成老鸦巢和鸭公塘岩体的岩浆主要起源于古老下地壳玄武岩-火成岩的部分熔融。该矿田在165~155 Ma处于中晚侏罗世地壳拉张减薄的构造背景中,岩浆岩锆石的εHf(t)值急剧增加,幔源岩浆底侵作用增强。水口山铅锌多金属矿田与鸭公塘及仙人岩的岩体形成时代一致,三者具有成因联系,壳幔岩浆混合为成矿提供了大量金属物质,是区内形成众多铜铅锌金矿床的重要因素。  相似文献   

12.
花岗岩是陆壳的重要组成部分,它是揭示地壳演化地球动力学过程的主要对象之一。为了揭示夹皮沟—海沟构造带的中生代地质演化,本文系统地开展了该带中段松江河地区花岗岩体内部产出的似斑状花岗岩的野外地质调查、岩相学、单颗粒锆石U-Pb同位素年代学、全岩元素、Hf同位素地球化学的研究。研究结果揭示:岩石呈粉红色、普遍发生较强的糜棱岩化作用,发育糜棱叶理构造;获得岩浆锆石的U-Pb同位素谐和年龄为217~169Ma;加权平均年龄为(169.6±1.8)Ma(n=9,MSWD=1.3);主量元素呈现高硅(71.18%~71.99%)、富碱(8.54%~8.93%)、贫镁(0.42%~0.52%)、贫钙(0.93%~1.38%)特征,并且A/NK>1.0,A/CNK<1.1;微量元素呈现低Rb、Zr和高Sr、Ba等质量分数,高Sr/Y和(La/Yb)_N特征;稀土元素表现轻稀土元素富集、重稀土元素亏损和较弱Eu的正异常特征;获得锆石原位^(176 )Yb/^(177 )Hf值为0.010 517~0.050 159,^(176 )Lu/^(177 )Hf值为0.000 476~0.001 784,^(176 )Hf/^(177 )Hf为0.282 310~0.282 457,对应的锆石εHf(t)值为-12.7~-7.5,二阶段模式年龄为2 792~2 325Ma。上述特征揭示,松江河地区中生代似斑状花岗岩属准中等分异、同碰撞向伸展转换的Ⅰ型花岗岩,原始岩浆起源于新太古代陆壳重熔作用,岩浆就位发生在中侏罗世早阶段;它记录了燕山期早侏罗世古太平洋板块向欧亚大陆之下俯冲的挤压陆壳活化产生岩浆,并于中侏罗世地壳伸展岩浆上升过程中经岩浆结晶分离作用而产生的中等分异岩浆结晶形成,成岩后于晚侏罗世遭受了韧脆性构造作用改造。  相似文献   

13.
内蒙古赤峰浩布高铅锌矿床大地构造位置位于大兴安岭地区南段,属黄岗梁—甘珠尔庙褶皱成矿带.对浩布高铅锌矿床小罕山岩体进行了详细的岩石学、年代学、岩石地球化学和Hf同位素研究.结果显示:小罕山岩体主要岩石类型为二长花岗岩,形成于(143.9±1.1)Ma,属于早白垩世;地球化学组成上表现出高硅(SiO2=66.96% ~6...  相似文献   

14.
T. Andersen  W.L. Griffin  A.G. Sylvester   《Lithos》2007,93(3-4):273-287
Laser ablation ICPMS U–Pb and Lu–Hf isotope data on granitic-granodioritic gneisses of the Precambrian Vråvatn complex in central Telemark, southern Norway, indicate that the magmatic protoliths crystallized at 1201 ± 9 Ma to 1219 ± 8 Ma, from magmas with juvenile or near-juvenile Hf isotopic composition (176Hf/177Hf = 0.2823 ± 11, epsilon-Hf > + 6). These data provide supporting evidence for the depleted mantle Hf-isotope evolution curve in a time period where juvenile igneous rocks are scarce on a global scale. They also identify a hitherto unknown event of mafic underplating in the region, and provide new and important limits on the crustal evolution of the SW part of the Fennoscandian Shield. This juvenile geochemical component in the deep crust may have contributed to the 1.0–0.92 Ga anorogenic magmatism in the region, which includes both A-type granite and a large anorthosite–mangerite–charnockite–granite intrusive complex. The gneisses of the Vråvatn complex were intruded by a granitic pluton with mafic enclaves and hybrid facies (the Vrådal granite) in that period. LAM-ICPMS U–Pb data from zircons from granitic and hybrid facies of the pluton indicates an intrusive age of 966 ± 4 Ma, and give a hint of ca. 1.46 Ga inheritance. The initial Hf isotopic composition of this granite (176Hf/177Hf = 0.28219 ± 13, epsilon-Hf = − 5 to + 6) overlaps with mixtures of pre-1.7 Ga crustal rocks and juvenile Sveconorwegian crust, lithospheric mantle and/or global depleted mantle. Contributions from ca. 1.2 Ga crustal underplate must be considered when modelling the petrogenesis of late Sveconorwegian anorogenic magmatism in the region.  相似文献   

15.
Field relations and whole-rock geochemistry indicate that magma mixing has been important in the genesis of the late Mesozoic I-type igneous complexes at Pingtan and Tonglu in SE China. Morphological and trace-element studies of zircon populations in rocks from each of these complexes have defined several distinct growth stages [Mineral. Mag. (2001)]. In-situ LAM-MC-ICPMS microanalysis shows large variations in 176Hf/177Hf (up to 15 Hf units) between zircons of different growth stages within a single rock, and between zones within single zircon grains (up to 9 Hf units). These variations suggest that each of the observed magmas in both complexes developed through hybridisation of ≥2 magmas with different sources. Although this mixing has produced similar Sr and Nd isotopic compositions in the different rock types of each complex, the zircons have functioned as “tape recorders” and have preserved details of the assembly of the different magmas.

In the Tonglu complex the most primitive magma is a mafic monzonite (preserved as enclaves), whose isotopic composition suggests derivation from the lower crust; rhyodacites, rhyolites and quartz diorites reflect the mixing of the monzonite with ≥2 more felsic magmas, derived from older crustal materials. In the Pingtan complex, zircons in a quartz diorite enclave suggest mixing between a crustal magma and a more primitive mantle-derived component. Zircons from granites and granodiorite enclaves indicate mixing between the quartz diorite and more felsic melts with lower 176Hf/177Hf. Major changes in 176Hf/177Hf correlate with discontinuous changes in the trace-element composition and morphology of the zircons, in particular the development of sector zoning that suggests rapid disequilibrium crystallisation. We suggest that the magma mixing recorded by the changes in 176Hf/177Hf occurred during transport in magma conduits. The in-situ analysis of Hf-isotopic stratigraphy in zircons is a new and powerful tool for the detailed study of magma generation processes.  相似文献   


16.
鄂东南地区程潮大型矽卡岩型铁矿区岩体成因探讨   总被引:2,自引:0,他引:2  
湖北程潮铁矿是鄂东南矿集区内最大的矽卡岩型铁矿床。为了系统研究矿区内不同侵入体的成因,对程潮矿区内不同时代的侵入体进行了矿物学、地球化学和Sr-Nd-Pb同位素研究。矿区内花岗岩、石英二长斑岩、闪长岩中的黑云母成分特征暗示它们均为壳幔物质混合成因的镁质黑云母;与成矿相关的花岗岩、石英二长斑岩中原生黑云母矿物学成分显示出原始岩浆具有高氧逸度的特征,高氧逸度为磁铁矿的形成提供了有利条件。岩石地球化学特征研究表明,不同类型的岩石都具有富钾和准铝质的特征,富集Rb、Ba、K等大离子亲石元素和轻稀土元素,亏损Nb、Ta、Ti等高场强元素。矿区岩石的(87Sr/86Sr)i值为0.705 0~0.709 1,εNd(t)值为-14.16~-6.95,206Pb/204Pb值为17.636~18.919,207Pb/204Pb值为15.451~15.613,208Pb/204Pb值为37.833~39.556。矿物学、地球化学、Sr-Nd-Pb同位素特征暗示矿区岩体为富集地幔发生部分熔融并同化混染了不同比例下地壳物质的产物,早期闪长岩((140±1) Ma)比晚期花岗岩和石英二长斑岩((128±1) Ma)的源区有更多的地幔成分,花岗岩和石英二长斑岩与闪长岩具有相近的锆石饱和温度(平均值分别为783、788、765℃)。  相似文献   

17.
Tom Andersen  William L Griffin   《Lithos》2004,73(3-4):271-288
The Storgangen orebody is a concordantly layered, sill-like body of ilmenite-rich norite, intruding anorthosites of the Rogaland Intrusive Complex (RIC), SW Norway. 17 zircon grains were separated from ca. 5 kg of sand-size flotation waste collected from the on-site repository from ilmenite mining. These zircons were analysed for major and trace elements by electron microprobe, and for U–Pb and Lu–Hf isotopes by laser ablation microprobe plasma source mass spectrometry. Eight of the zircons define a well-constrained (MSWD=0.37) concordant population with an age of 949±7 Ma, which is significantly older than the 920–930 Ma ages previously reported for zircon inclusions in orthopyroxene megacrysts from the RIC. The remaining zircons, interpreted as inherited grains, show a range of 207Pb/206Pb ages up to 1407±14 Ma, with an upper intercept age at ca. 1520 Ma. The concordant zircons have similar trace element patterns, and a mean initial Hf isotope composition of 176Hf/177Hf949 Ma=0.28223±5 (Hf=+2±2). This is similar to the Hf-isotope composition of zircons in a range of post-tectonic Sveconorwegian granites from South Norway, and slightly more radiogenic than expected for mid-Proterozoic juvenile crust. The older, inherited zircons show Lu–Hf crustal residence ages in the range 1.85–2.04 Ga. One (undated) zircon plots well within the field of Hf isotope evolution of Paleoproterozoic rocks of the Baltic Shield. These findings indicate the presence of Paleoproterozoic components in the deep crust of the Rogaland area, but do not demonstrate that such rocks, or a Sveconorwegian mantle-derived component, contributed significantly to the petrogenesis of the RIC. If the parent magma was derived from a homogeneous, lower crustal mafic granulite source, the lower crustal protolith must be at least 1.5 Ga old, and it must have an elevated Rb/Sr ratio. This component would be indistinguishable in Sr, Nd and Hf isotopes from some intermediate mixtures between Sveconorwegian mantle and Paleoprotoerzoic felsic crust, but it cannot account for the initial 143Nd/144Nd of the most primitive, late Sveconorwegian granite in the region, without the addition of mantle-derived material.  相似文献   

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