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1.
东北地区古生代花岗岩分布范围非常广泛,花岗岩研究对反演地壳增生意义重大。虽然如此,东部地区古生代花岗岩的研究仍相对薄弱,需要特别关注。 LA-ICPMS U-Pb 同位素定年结果表明,本研究花岗岩体为晚中生代海西期(262Ma)岩浆活动的产物。锆石的LA-MC-ICPMS Hf 同位素研究结果显示,εHf(t)范围为1.35~5.62,二阶段 Hf 模式年龄(tDM2)范围为1.1~1.4Ga,暗示花岗岩源区物质主要来自亏损地幔,同时暗示了一次重要的地壳增生事件。  相似文献   

2.
藏东同普二叠纪高分异花岗岩的锆石U-Pb年龄和岩石成因   总被引:1,自引:0,他引:1  
对具有富U或高U锆石的高硅花岗岩进行准确定年并进行成因讨论是花岗岩研究中的难题。本文以青藏高原东部江达-维西构造带北部同普岩基边缘相的高硅花岗岩为对象,开展了锆石U-Pb年代学、锆石Hf同位素和全岩元素地球化学研究。采用大激光束斑(100μm)先剥蚀2~3个脉冲的预剥蚀方法,获得了这套含富U或高U锆石高硅花岗岩的可靠锆石UPb年龄(260±1Ma)。这套高硅花岗岩具有高的Si O2含量(74.92%~76.46%)、高的全碱含量(Na2O+K2O;7.61%~8.55%)和高的分异指数(92~96),明显的Eu(Eu/Eu*=0.17~0.41)异常和显著亏损Ba、Nb、Sr、P和Ti等特征,属于典型的高分异花岗岩。本文数据,结合文献数据,指示同普高硅花岗岩为高分异I型花岗岩。富集的锆石Hf同位素组成(εHf(t)=-9.9~-5.8)指示它们来源于古老地壳物质的部分熔融。定量模拟表明它们可能由同期花岗闪长质母岩浆经历斜长石、磷灰石和富钛矿物的分离结晶作用形成。  相似文献   

3.
地球化学研究表明,大蒲柴河岩体具有典型的埃达克岩特征,来自加厚下地壳的部分熔融作用.本文采用激光等离子质谱对该岩体进行了U-Pb同位素定年,结果表明该岩体为晚侏罗世(165Ma)岩浆活动的产物.锆石的LA-MC-ICPMS Hf同位素研究结果显示,ε_(Hf)(165Ma)范围为-5.02~5.43,二阶段Hf模式年龄(t_(DM2))范围为965~1622Ma,暗示原始母岩浆为两种不同源区岩浆的混合.另外,Hf同位素研究表明,研究区在中-新元古代时(965~1304Ma)曾经历了一次重要的地壳增生事件.  相似文献   

4.
S- and I-type granites from the Lachlan Fold Belt, southeastern Australia, have been investigated to assess the role of disequilibrium melting in their petrogenesis. Differences between the median initial εHf compositions of magmatic zircon populations and the host bulk-rock (ΔεHfblk-zrc) range from −0.6 to +2.5 ε units, providing evidence for intra-sample (and hence inter-phase) Hf-isotopic heterogeneity. Linear variations on Harker diagrams and O and Hf isotope compositions of magmatic zircon preserved in many I- and S-type granites are inconsistent with assimilation or simple mixing hypotheses. In contrast, isotopic disequilibrium between the melt and a restite assemblage can explain the bulk-rock versus zircon differences observed in these samples.Assuming that magmatic zircon records the melt composition, differences between the bulk-rock εHf and εHf of magmatic zircon (ΔεHfblk-zrc values) measured for I-type granites (0.4–2.5) can largely be explained by disequilibrium amphibole dehydration melting of meta-igneous protoliths that were either isotopically heterogenous at the time they were formed, or perfectly homogeneous before being aged in the crust for 0.4–1.0 billion years prior to partial melting. The Currowong Suite exhibits petrographic features and preserves geochemical and isotopic compositions that do not lend themselves to simple restite model or magma mixing explanations; however, these observations could be explained by the restite unmixing of magma batches generated from a single source rock if, as modelling has suggested, separate batches contain different melt compositions.By investigating the application of disequilibrium melting to granite genesis, this study demonstrates that isotopic heterogeneity at various sampling scales should actually be expected for the production of granites from a single source, rather than necessitating the involvement of multiple sources and mixing processes. As a result great care should be taken in the interpretation of isotope data from granitic bulk-rocks or their zircons.  相似文献   

5.
The Wenjiaping and Wulaxi granite plutons are located in the Jianglang dome, which is a key domain for providing deep insight into the tectonic evolution of the Songpan-Ganzi Orogen. Two granites are composed chiefly of K-feldspar, quartz, biotite with minor plagioclase and hornblende. This study presents zircon U-Pb chronology, geochemistry and Hf isotope data to explore their petrogenesis and metallogenic implications. Zircon U-Pb dating provides crystallization ages of 164.5 ± 0.9 Ma and 163.4 ± 0.9 Ma for the Wenjiaping granite, and 164.3 ± 1.7 Ma for the Wulaxi granite. This indicates that they were formed synchronously. They also contain inherited zircons related to the Rodinia and Gondwana supercontinents and the Emeishan large igneous province. Their mineral assemblages lack peraluminous (e.g., garnet and cordierite) and high-temperature (e.g., pyroxene and fayalite) minerals. They are characterized by low A/CNK (1.10–0.99), FeOT/MgO (8.55–2.83) and K2O/N2O ratios (1.34–0.51) with low Zr + Nb + Ce + Y concentrations (average 258 ppm) and zircon saturation temperatures (781–651 °C). Their Al2O3, P2O5 and SiO2 contents show negative correlations, and they thus fit the I-type granite definition. Some major and trace elements exhibit strong correlations, implying extensive fractional crystallization (e.g., hornblende and ilmenite) during the magma evolution. Two granites show enrichment in light rare earth elements and large ion lithophile elements, and depletion in high field strength elements. They have low Mg# values (38.7–17.3) and Y/Nb ratios (0.45–0.16), and yield dominantly negative εHf(t) values (1.4–−13.9), indicating a heterogeneous source and their derivation from remelting of ancient continental crust (e.g., Mesoproterozoic Liwu Group in this region) with minor juvenile crust. Combined with prior studies, we conclude that the Wenjiaping and Wulaxi granites were formed in a post-collisional extensional regime, and were responsible for the 163.7–151.1 Ma magmatic hydrothermal Cu-W mineralization in the Jianglang dome. In addition, two granite plutons intrude this dome and they are undeformed, implying that the doming was during the Early to Middle Jurassic.  相似文献   

6.
新疆东天山晚古生代中酸性岩浆活动广泛分布且已有较多研究成果。近年来在该区识别出印支期岩浆作用,然而研究者对其岩石成因、源区性质及相关动力学问题研究较少。白山钼矿区位于东天山康古尔-黄山韧性剪切带东段,是东天山多金属成矿带印支期斑岩型钼矿床,其矿体主要赋存于深部花岗斑岩体外接触带中。本文则对白山钼矿区深部花岗斑岩开展了岩石地球化学、锆石U-Pb年代学及Lu-Hf同位素组成研究。SIMS锆石U-Pb定年结果表明,白山花岗斑岩体大约侵位于226.8±3.2Ma。岩石地球化学结果表明,花岗斑岩具高Si O2含量(68.87%~72.82%)及全碱含量(6.85%~8.17%),铝饱和指数A/CNK为0.93~1.06,均小于1.1,为准铝质至过铝质I型花岗岩。岩石具有明显的轻重稀土分异和弱的Eu负异常,富集大离子亲石元素(K、Rb、Sr),相对亏损高场强元素(Nb、Ta、Ti、Th),具高Sr/Y和La/Yb比值的特点,显示与埃达克质岩石相似的地球化学特征。白山花岗斑岩锆石Lu-Hf同位素数据显示,其具较高的εHf(t)值(+8.0~+11.0)和较年轻的地壳模式年龄tCDM(556~758Ma)。结合岩石地球化学及同位素地球化学特征,本文认为白山花岗岩体可能来源于增厚下地壳物质的部分熔融,并可能混有幔源岩浆物质,形成于东天山碰撞造山作用之后的板内伸展阶段。  相似文献   

7.
东昆仑祁漫塔格地区是近年来发现的具有优越多金属成矿条件的地区,区内中-酸性侵入岩广泛发育且与成矿关系密切。于沟子铁-稀有多金属矿床位于祁漫塔格地区西部,矿床主要由产于钾长花岗岩外接触带矽卡岩内的铁-铜(钼)多金属矿化体及产于花岗岩体内部的铌、铷等稀有元素矿化体组成。锆石LA-MC-ICP-MS定年测得钾长花岗岩U-Pb年龄为210.0±0.6Ma,属晚三叠世末期岩浆活动的产物。岩体主要由条纹长石(60%~65%)、斜长石(10%~15%)、石英(20%~22%)、钠闪石(4%~5%)和少量黑云母(1%~2%)等组成,为典型的碱性花岗岩。地球化学特征上,该岩体具有高硅、高钾、准铝、钙碱性特点,富Nb、Zr、Rb、Th、U,贫Ba、Sr、P、Ti等元素,稀土元素总量较高,富集轻稀土,具强烈的负Eu异常(δEu=0.09~0.26),属于A型花岗岩。锆石εHf(t)值为-6.71~2.25,平均为-1.15,二阶段Hf模式年龄(t DM2)为1102~1674Ma,显示在成岩过程中有地幔物质的参与。综合研究认为,于沟子岩体形成于晚三叠世末后造山板内伸展阶段,该碱性花岗岩的确定,标志着东昆仑祁漫塔格地区在晚三叠世末(212~210Ma)已逐步演化为伸展构造背景下的后造山构造阶段。同时矿床的成矿时代、氧同位素及电子探针结果均显示花岗岩与铁-稀有多金属成矿有关,指示出该类型碱性花岗岩具有良好的铁-稀有多金属成矿潜力。  相似文献   

8.
龙镇地区花岗岩锆石U-Pb年龄和Hf同位素及地质意义   总被引:17,自引:8,他引:9  
张彦龙  葛文春  高妍  陈井胜  赵磊 《岩石学报》2010,26(4):1059-1073
龙镇地区花岗岩位于大、小兴安岭的结合部,属于兴安地块与松嫩地块中的A-I型花岗岩带;该区各岩体岩石类型基本相同,主要为花岗闪长岩和二长花岗岩,地球化学特征显示为高钾钙碱性系列的I型花岗岩。花岗岩中锆石的LA-ICP-MSU-Pb年代学分析结果表明,正达山岩体形成于320~315Ma,模拉布山岩体形成于169±3Ma,朝阳林场岩体形成于187~171Ma。这些花岗质岩浆的就位分别与古生代时期古亚洲洋闭合过程中的块体拼合作用及中生代古太平洋的构造演化有关。Hf同位素成分特征表明,两期花岗岩的源岩均为新元古代-显生宙期间亏损地幔来源的火成岩。结合已发表的Sr-Nd-Hf同位素资料,本文认为兴安地块大陆地壳增生的时间主要为新元古代-显生宙,这与松嫩地块一致,而明显晚于额尔古纳地块的地壳增生时间(中-新元古代),从而揭示了它们不同的地壳演化历史。  相似文献   

9.
The southeastern Guyana Shield,northeast Amazonian Craton,in the north of Brazil,is part of a widespread orogenic belt developed during the Transamazonian orogenic cycle(2.26-1.95 Ga)that includes a large Archean continental landmass strongly reworked during the Transamazonian orogeny,named Amapa Block.It consists mainly of a high-grade metamorphic granulitic-migmatitic-gneiss complex,of Meso-to Neoarchean age and Rhyacian granitoids and supracrustal sequences.For the first time,coupled U-Pb and Lu-Hf isotope data were obtained on zircon by LA-ICP-MS from five tectono-stratigraphic units of the Archean basement and one Paleoproterozoic intrusive rock,in order to investigate the main episodes of crustal growth and reworking.Whole-rock Sm-Nd isotope data were compared to the zircon Lu-Hf data.Three main magmatic episodes were defined by U-Pb zircon dating,two in the Mesoarchean(~3.19 Ga and 2.85 Ga)and one in the Neoarchean(~2.69-2.65 Ga).SubchondriticεHf(t)values obtained for almost all investigated units indicate that crustal reworking processes were predominant during the formation of rocks that today make up the Amapa Block.Hf-TDMC model ages,ranging from2.99 Ga to 3.97 Ga,indicate that at least two important periods of mantle extraction and continental crust formation occurred during the Archean in southeastern Guyana Shield,an older one in the Eoarchean(~4.0 Ga)and a younger one in the Mesoarchean(~3.0-3.1 Ga).The latter is recognized as an important period of crustal accretion worldwide.The recognition of an Eoarchean episode to the southeastern most part of the Guyana Shield is unprecedented and was not recorded by whole-rock Sm-Nd data,which were restricted to the Meso-Paleoarchean(2.83 Ga to 3.51 Ga).This finding reveals t hat continental crust generation in the Amazonian Craton began at least 500 Ma earlier than previously suggested by the SmNd systematics.  相似文献   

10.
对青藏高原冈底斯带西部中生代花岗岩的研究依然十分有限。本文选择青藏高原冈底斯带西部狮泉河-革吉-雄巴地区的三个花岗岩基进行了锆石SHRIMP U-Pb定年和锆石Hf同位素分析,并探讨了中冈底斯带中侏罗世-早白垩世花岗岩的分布特征及其揭示的地壳基底的属性。定年结果表明,江巴岩体花岗闪长岩年龄为170±3Ma,雄巴岩体碱长花岗岩年龄为149±3Ma,它们形成于中晚侏罗世;邦巴岩体寄主岩石正长花岗岩和其中的石英二长闪长岩包体年龄分别为144±3Ma和133±3Ma,形成于早白垩世。锆石Hf同位素和地壳模式年龄结果表明,中晚侏罗世的江巴岩体(εHf(t)为-16.8~-13.4,Hf同位素地壳模式年龄为2.1~2.3Ga)与雄巴碱长花岗岩(-11.3~-6.2和1.6~2.0Ga)具有富集的Hf同位素特征,显示了新元古界的地壳基底年龄。邦巴正长花岗岩(-4~-0.8和1.2~1.5Ga)与其中的闪长质包体(-2.8~+0.6和1.2~1.4Ga)具有一致的Hf同位素特征,显示了岩浆混合作用。本文花岗岩定年与Hf同位素结果进一步揭示出中冈底斯带存在未出露地表的古元古代地壳基底。  相似文献   

11.
对出露于冈底斯西部地区措勤北部达瓦错东侧的达雄岩体进行了锆石U-Pb定年、全岩主量元素、微量元素、Sr-Nd同位素和锆石Hf同位素研究,以约束其岩石成因.达雄岩体的主体岩性为花岗闪长岩,其中发育大量闪长质包体.花岗闪长岩的锆石LA-ICP MS年龄为107±1Ma,该年龄代表了岩体结晶年龄.花岗闪长岩锆石εNd(t)值变化于-1.0~3.0,两阶段模式年龄变化于974~1226Ma.花岗闪长岩富硅(SiO2=70.65%~71.10%),富钙(CaO=3.21%~3.26%)、贫钾(K2O=2.81%~2.99%)、低P2O5(0.09%),铝饱和指数(A/CNK)为1.01~1.02,属于偏铝质花岗岩或弱过铝质花岗岩.闪长质包体SiO2含量为57.84%,与寄主岩相比,闪长质包体更富CaO、MgO、TFe2O3和TiO2.花岗闪长岩和闪长质包体均属中钾钙碱性系列,εNd(t)值分别为-4.6和-3.2,两阶段模式年龄(tDM2)相近(分别为1277Ma和1166Ma),并与锆石Hf同位素模式年龄一致.岩相学、年代学和地球化学研究表明闪长质包体可能是由岩浆混合作用形成的镁铁质微粒包体.我们的初步研究成果似乎表明,冈底斯中西部地区在早白垩世晚期(~110Ma)很可能存在一次重要的岩浆混合作用,这一初步认识对研究冈底斯中北部地区规模宏大的白垩纪岩浆作用的深部动力学过程具有重要意义.  相似文献   

12.
西藏早侏罗世聂荣岩体中偏基性包体与酸性寄主岩的岩浆源区性质和岩石成因以及相互关系尚未得到很好约束,直接限制了对聂荣微陆块在早侏罗世特提斯构造岩浆演化中的作用的认识。为探讨这一问题,本文对采自聂荣地区的一对花岗岩及其闪长岩包体样品进行了锆石U-Pb定年和原位Hf同位素分析。寄主花岗岩的结晶年龄为185.1±1.5Ma,闪长岩包体的结晶年龄为183.6±1.1Ma,指示酸性岩浆和基性岩浆同时侵位。寄主花岗岩的锆石εHf(t)值介于-17.8~-0.9,其Hf同位素地壳模式年龄变化于1.3~2.4Ga,闪长岩包体的锆石εHf(t)值和Hf同位素地壳模式年龄值分别分布于-11.9~-2.9和1.4~2.0Ga,均表现出很大的变化范围。同时于~185Ma结晶的两种岩浆锆石Hf同位素的不均一性和继承锆石的出现,指示了聂荣微陆块早侏罗世中期发生了古老基底深熔或重熔的熔体和富集岩石圈地幔来源的岩浆间的混合,之后再与围岩混染的岩浆作用过程。  相似文献   

13.
西藏林周盆地中酸性脉岩的年代学、地球化学和岩石成因   总被引:3,自引:2,他引:3  
林子宗火山岩(也称林子宗群)出露在青藏高原拉萨地块南部,被认为是印度与欧亚大陆发生碰撞的岩浆作用响应。发育在拉萨东北林周盆地的林子宗火山岩剖面完整,是最初的命名地,在过去的20年来已经完成了较好的研究工作。本文对林周盆地林子宗火山岩地层中产出的中性(闪长玢岩)和酸性(花岗斑岩)脉岩开展了研究,新获得了5个样品的锆石UPb定年和Hf同位素数据和11套主量和微量元素地球化学数据。这些脉岩侵入到林子宗群的典中组和年波组地层中。所有样品均为亚碱性岩石,在钾质特征上属于钙碱性到高钾钙碱性系列岩石。样品均为过铝质(除了一个样品为铝质岩石,A/CNK=0.86)。一个闪长玢岩样品的年龄为62.4Ma,具有正的εHf(t)值(+5.1~+7.6),显示了与典中组安山岩相似的地球化学成分。其余的花岗斑岩侵入时代为55.1~61.1Ma,εHf(t)范围为-1.1~+10.4(仅有一个负值,其余全部为正值),它们与近于同时代的年波组流纹质火山岩具有相似的地球化学特征。林周盆地脉岩的主要特征可以归纳为:(1)岩石具有类似地幔的Hf同位素特征,总计86个Hf同位素中仅有一个负值,所有样品平均的εHf(t)为5.9;(2)每个样品具有变化范围很宽的εHf(t)值,4个花岗斑岩样品每个样品内部的εHf(t)值变化达到3.5~8.8个ε单位,显示了不均一的源区组成;(3)从主量元素的成分变化趋势(FeO T-MgO关系图)指示了岩浆混合作用的成分趋势。这些特征表明在冈底斯带南缘发生的古新世-始新世大规模幔源岩浆底侵作用和岩浆混合作用,也可以用来解释林周盆地脉岩的形成过程。这些脉岩作为浅成的侵入体,与其同时代的林子宗火山岩(典中组和年波组)一样,都是伴随着冈底斯带南缘从特提斯洋俯冲削减过渡到印度与欧亚大陆碰撞的构造转化过程中形成的。  相似文献   

14.
In the eastern Himalayan syntaxis, the southern Lhasa terrane is dominated by middle- to high-grade metamorphic rocks (Nyingchi Complex), which are intruded by felsic melts. U-Pb zircon dating and zircon Hf isotopic composition of these metamorphic and magmatic rocks provide important constraints on the tectono-thermal evolution of the Lhasa terrane during convergent process between Indian and Asian continents. U-Pb zircon data for an orthogneiss intruding the Nyingchi Complex yield a protolith magma crystallization age of 83.4 ± 1.2 Ma, with metamorphic ages of 65-46 Ma. This orthogneiss is characterized by positive εHf (t) values of + 8.3 and young Hf model ages of ~ 0.6 Ga, indicating a derivation primarily from a depleted-mantle or juvenile crustal source. Zircons from a quartz diorite yield a magma crystallization age of 63.1 ± 0.6 Ma, with εHf (t) values of − 8.2 to − 2.7, suggesting that this magma was sourced from partial melting of older crustal materials. Zircon cores from a foliated biotite granite show ages ranging from 347 to 2690 Ma, with age peaks at 347-403 Ma, 461-648 Ma and 1013-1183 Ma; their zircon εHf (t) values range from − 30.6 to + 6.9. Both the U-Pb ages and Hf isotopic composition of the zircon cores are similar to those of detrital zircons from the Nyingchi Complex paragneiss, implying that the granite was derived from anatexis of the Nyingchi Complex metasediments. The zircon rims from the granite indicate crustal anatexis at 64.4 ± 0.7 Ma and subsequent metamorphism at 55.1 ± 1.3 and 41.4 ± 2.3 Ma. Our results suggest that the late Cretaceous magmatism in the southern Lhasa terrane resulted from Neo-Tethys oceanic slab subduction and we infer that Paleocene crustal anatexis and metamorphism were related to the thermal perturbation caused by rollback of the northward subducted Neo-Tethyan oceanic slab.  相似文献   

15.
Young zircons from crystal-poor volcanic rocks provide the best samples for the investigations of pre-eruption magmatic processes and for testing a possible relationship between zircon Eu anomalies and crustal thickness. We report trace element chemistry and Hf-O isotope compositions of young zircons from 3 Holocene volcanoes in the Tengchong volcanic field, SE Tibet, in order to provide insights into magma evolution processes and conditions for high-K calc-alkaline volcanic rocks in a post-collisional setting. As decreasing zircon Ti content and falling temperature, zircon Hf content and Yb/Sm increase whereas zircon Eu anomaly and Th/U decrease, indicating fractional crystallization of plagioclase and zircon during magma cooling. More importantly, zircon Hf isotope ratio (εHf values) increases with decreasing zircon Ti content and falling temperature (T), suggesting gradually increasing incorporation of relatively high εHf juvenile materials in the crystallizing zircons during magma evolution. Negative correlations between zircon εHf and zircon δ18O also support open-system magma evolution. Our data suggest fractional crystallization of a magma with simultaneous contamination by high εHf and low δ 18O juvenile (immature) crustal materials during monotonic cooling after zircon saturation. The low-T, high-εHf and low- δ 18O zircons may indicate the involvement of the early Cretaceous juvenile granitic country rocks during shallow magma evolution. Average Eu anomalies in zircons from young Tengchong lavas yield crustal thickness of 40.7 ± 6.8 km, consistent with present crustal thickness (42.5 km) determined by geophysical methods.  相似文献   

16.
西藏南东部新识别出来的措美大火成岩省的地幔柱头部物质成分尚未得到很好的约束。为探讨此问题,在全岩地球化学数据基础上,本文首次报道了藏东南措美大火成岩省中机布淌、打隆、措美和哲古错OIB型镁铁质岩的锆石Hf同位素和微量元素数据。本文报道的OIB型镁铁质岩包括碱性(组Ⅰ)和亚碱性(组Ⅱ)系列的辉长岩和辉绿岩,以岩墙或岩床的形式产出。这些镁铁质岩具有高的TiO2(2.61%~4.07%)和P2O5(0.32%~0.51%)含量,富集轻稀土元素和高场强元素,地球化学特征类似于OIB。全岩微量元素地球化学指标显示组Ⅰ样品没有或很少受到地壳混染,组Ⅱ样品经历了较高程度的地壳混染。组Ⅰ中一件样品(JBT03-1)具有变化范围大的锆石εHf(t)值(-4.8~+5.3),可能暗示其受到了地壳和/或岩石圈地幔物质的混染。本文结果表明锆石Hf同位素比全岩地球化学数据能够更为有效地识别基性岩浆是否受到地壳和/或岩石圈地幔物质混染。措美大火成岩省中的OIB型镁铁质岩样品(组Ⅰ和组Ⅱ),具有不同于俯冲带镁铁质岩和洋壳镁铁质岩的锆石稀土元素配分型式和锆石Ti温度,这可能是岩浆源区温度和成分不同的结果。综合考虑全岩地球化学和锆石Hf同位素指标,本文提出未受到地壳或岩石圈地幔混染的打隆镇辉长岩体(以组I中的DL01样品为代表)很可能代表了措美大火成岩省纯的地幔柱头部物质成分[87Sr/86Sr(t)=0.7047,εNd(t=+1.5,εHf(t=+2.1~+5.7]。这些成分与代表白垩纪Kerguelen地幔柱头部物质的Site 1138和Bunbury Casuarina玄武岩非常相似,可能指示措美大火成岩省中的OIB型镁铁质岩本身就是Kerguelen地幔柱头部物质发生减压熔融的产物。  相似文献   

17.
拉萨地块南缘发育了广泛的中、新生代岩浆作用,然而与中、东部地区相比,南拉萨地块西部地区的研究程度还相对偏低,尤其是缺乏中生代以前岩浆活动的发现和研究。本文对南拉萨地块西部鸭洼地区新发现的中、新生代侵入岩开展了详细的锆石U-Pb定年和Hf同位素研究,发现鸭洼地区发育了晚三叠世(210~208Ma)辉长岩和闪长玢岩、晚侏罗世(约155Ma)似斑状二长花岗岩和始新世(约50Ma)花岗斑岩。晚三叠世辉长岩和闪长玢岩具有相对亏损的锆石Hf同位素组成,ε_(Hf)(t)值分别是+1.9~+6.2和-3.0~+7.4。晚侏罗世似斑状二长花岗岩和始新世花岗斑岩则具有明显富集的锆石Hf同位素组成,其ε_(Hf)(t)值分别是-10.0~-5.2和-7.9~-2.7,对应的地壳模式年龄分别是1534~1836Ma和1297~1624Ma,分别反映了古元古代和中元古代古老陆壳物质为主的再循环作用。结合区域文献数据,鸭洼-打加错地区中生代以来由于新特提斯洋的俯冲而发生了明显的地壳增生作用,新生地壳的生长从中生代到新生代早期逐渐进行,并且具有从陆内向海沟逐渐增加的趋势。  相似文献   

18.
河南商城县汤家坪花岗斑岩产于大别造山带北麓,岩体位于早白垩世达权店花岗岩体的南缘。岩体斑晶含量占10%左右,主要由钾长石、斜长石和石英组成,基质主要由钾长石、斜长石、石英和少量黑云母组成,副矿物主要为磁铁矿、赤铁矿、锆石。花岗斑岩中锆石U-Pb年龄为121.6±4.6Ma,为早白垩世中晚期。汤家坪花岗斑岩含白云母,无角闪石,具高硅(SiO272%)、高碱(Na2O+K2O7.4%)的特征,铝饱和指数(ACNK)为0.99~1.18,轻稀土富集、重稀土亏损(La/Yb)N=10.9~44.5,明显亏损Eu(δEu=0.40~0.58)、Sr、Ba、Nb等。P2O5与SiO2含量呈正相关关系、Pb与SiO2含量呈负相关关系、Y、Th随Rb升高而降低,属弱过铝质高分异S型花岗岩。汤家坪花岗斑岩εHf(t)(-17.6~-10.4)和εNd(t)(-15.5~-13.7)值均显示出壳源特征,tDM2(Hf)和tDM2(Nd)分别为1843~2281Ma和2034~2178Ma,反映汤家坪花岗斑岩来源于古老地壳物质的重熔,中等的初始Sr同位素指示源岩中可能有部分低成熟度地壳物质加入。结合稀土元素特征,认为汤家坪花岗斑岩源岩来源较深,主要源于下地壳物质。  相似文献   

19.
田东钨锡多金属矿床位于粤东莲花山断裂带北东带,矿区出露多个岩性侵入岩。本文以田东钨锡多金属矿区三种花岗岩为研究对象,开展了LA-ICP-MS锆石U-Pb定年和Hf同位素特征研究。三种花岗岩岩性分别为中粒花岗岩、粗粒花岗岩、细粒黑云母花岗岩,分别获得锆石206 Pb/238 U加权平均年龄为191.5±0.9 Ma、158.0±1.3 Ma、140.5±0.8 Ma,表明矿区发生了多次岩浆活动事件,分别发生在早侏罗世、晚侏罗世和早白垩世。中粒花岗岩的锆石εHf(t)值介于4.023~9.784,平均值为7.644,在εHf(t)-t图解上,εHf(t)值均在球粒陨石演化线之上,亏损地幔演化线之下,二阶段模式年龄介于611.0~974.9Ma,表明成岩物质主要来源于新生地壳部分熔融,还有幔源物质的加入。粗粒花岗岩的锆石εHf(t)值介于-3.623~-0.120,平均值为-1.680。细粒黑云母花岗岩的锆石εHf(t)值介于-5.358~-1.609,平均值为-3.577。在εHf(t)-t图解上,粗粒花岗岩和细粒黑云母花岗岩的εHf(t)值均落在球粒陨石演化线之下和中元古代地壳演化线之上,二阶段模式年龄分别介于1216.6~1438.5 Ma和1329.9~1422.5 Ma,表明成岩物质主要来源于中元古代古老地壳部分熔融,还有幔源物质的加入。  相似文献   

20.
豫西宜阳地区TTG质片麻岩锆石U-Pb定年和Hf同位素地质学   总被引:13,自引:19,他引:13  
本文报道对华北地块南缘、豫西宜阳穆册TTG质片麻岩的地球化学、锆石U-Pb定年及Hf同位素研究.宜阳穆册TTC质片麻岩SiO2含量为59~73%,Al2O3>15%、CaO、MgO、Al2O3、TiO2、Na2O/K2O与SiO2的含量呈负相关,表明在岩浆演化中有镁铁矿物和斜长石的分离,岩浆成分随着分异而富钾.P2O5与SiO2含量呈正相关,反映出磷灰石的分离.轻重稀土分异明显((La/Yb)N=9~23);重稀土相对于轻稀土轻度分异;无明显的Eu异常(Eu*=0.95~1.07).岩石富Rb、Sr、Ba、K等大离子亲石元素,亏损Nb、Ta等高场强元素.低Y(13.25~25.27 μg/g)和Yb(1.27~1.98 μg/g);高Sr(507.14~606.85 μg/g)及Sr/Y(34.15~39.97),上述地球化学特征一致表明,研究区片麻岩为一套高铝的TTG质岩石.这套片麻岩可能是在角闪岩相条件下部分熔融的产物.利用LA-ICP-MS锆石U-Pb法测得TTG质片麻岩的年龄为2.3 Ga.片麻岩中的锆石大部分具负εHf(t)值(最高达-4.95),揭示其源区可能主要为古老陆壳物质;部分锆石的εHf(t)为正值,说明在其形成过程中有一定比例的亏损地幔物质的加入.宜阳TTG质片麻岩的Hf同位素数据表明,其两阶段模式年龄主要2.57~3.01 Ga之间,平均值为2.82 Ga,所以说穆册灰色片麻的源区可能存在年龄为2.8 Ga左右(或更老)的地壳物质,说明代表该区基底的太华杂岩形成时代可能为2.8Ga(或更老).虽然华北地块陆壳最主要的增生时代被认为发生在2500 Ma,但宜阳TTG质片麻岩的研究结果和其他研究者的研究成果都说明华北地块大陆地壳在古元古代早期仍然存在相当规模的陆壳增生.  相似文献   

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