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1.
Abstract Systematical Sr, Nd and O isotopic studies were made on the Huashan granite complex in Guangxi. In combination with the studies of geological, petrological and geochemical data, it is believed that the complex consists of granites of three stages, with different geneses and different source materials. They are not the products of differentiation and evolution of one single consanguineous magma. Granites of the 1st stage are of the Indosinian syntectic type or I type, also derived from a mixed mantle-crustal source. Those of the 2nd stage are of the early Yanshanian syntectic type or I type, also derived from a mixed mantle-crustal source, and those of the 3rd stage are of the late Yanshanian transformed type or S type, derived from a crustal source. 相似文献
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柯坪玄武岩的岩石学、地球化学、Nd、Sr、Pb同位素组成与岩石成因 总被引:41,自引:0,他引:41
柯坪玄武岩位于塔里木板块西缘,产于下二叠统库普库兹曼组和开派兹雷克组中。岩石化学组成以富集TFeO、TiO2、P2O5和SiO2不饱和为特征。大部分样品属碱性玄武岩系列,个别属拉斑玄武岩系列。它们的稀土元素和微量元素显示了板内拉张环境玄武岩的地球化学特征。εNd(t)=-1.73~-3.69,εSr(t)= 27.56~ 56.87,^206Pb/^204Pb=17.87~18.02,^207Pb/^204Pb=15.45~15.53,^208Pb/^204Pb=38.22~38.49。Nd、Sr、Pb同位素组成证明柯坪玄武岩源自于前寒武纪的富集型大陆岩石圈地幔。而且,这种情况在塔里木盆地及周缘地区十分发育的镁铁质岩浆岩中具有广泛的代表性。据此,可以将新疆南部和北部划分为两个明显不同的同位素地球化学省。南部省以富集型地幔的同位素组成为特征,而北部省以亏损型地幔的同位素组成为特征。分属于这两个省的古生代晚期阶段岩浆岩有可能不是同一个地质过程的产物。 相似文献
3.
Late Paleozoic post-collisional granitoids are widespread in West Junggar,as well as northern Xinjiang.As a representative of those intrusions,the Jietebutiao granite occurs in the southwestern margin of the West Junggar(northwest China),and is mainly composed of mid-coarsegrained monzogranite and syenogranite.In the present study,we report the results of high-precision zircon laser-ablation-inductively-coupled plasma mass-spectrometry U-Pb dating on the Jietebutiao granite for the first time,and yield weighted mean 206Pb/238U ages of 287±9 Ma and 278±3 Ma for monzogranite and syenogranite,respectively.The Jietebutiao granite has a pronounced A-type affinity;it is metaluminous to slightly peraluminous;has a high-K calc-alkaline composition;high concentrations of Na2O + K2O,varying from 6.8 to 8.5 wt%;high FeOt/MgO;10 000a/Al ratios,a low CaO,MgO,and TiO2 content;enriched in some large ion lithophile elements(LILE,such as Rb and Th) and high field strength elements(HFSE,such as Zr,Hf,and Y);and depleted in Sr,Ba,and Ti.In addition,the granite has a relatively high rare earth element(REE) content(except for Eu), with significant negative Eu anomalies(Eu/Eu* = 0.01-0.72),and showing slight tetrad REE patterns and non-charge and radius controlled(CHARAC) trace element behavior.Petrographic,geochemical, and geochronological data suggest that the parental magma of Jietebutiao intrusions are of mixed origin,and are most probably formed by the interaction between the lower crust- and mantle-derived magmas in the Early Permian post-collisional tectonic setting.The basaltic magmas underplated and interacted with the lower crust that was dominated by deeply buried arc(and back-arc basin) series and the oceanic crust formed in the Paleozoic,and then triggered the partial melting of the juvenile lower crust,producing voluminous granitic melts and forming the Jietebutiao A2-typc monzogranites, with the lithospheric mantle progressively thinning and rifting to form A1-type granites,such as syenogranites,in the Jietebutiao pluton.This further proves the important contribution of Late Paleozoic granitic magmatism in terms of vertical crustal growth in northern Xinjiang. 相似文献
4.
库鲁克塔格地区二叠纪脉岩群非常发育,主要岩石类型是辉绿岩,并有少量的斜闪煌斑岩、斜长玢岩和花岗斑岩。花岗斑岩属高钾钙碱性系列,具有A型花岗岩的稀土元素和微量元素地球化学特征;斜长玢岩的地球化学特征与花岗斑岩相似,二者都亏损U、Nb、Ta。斜闪煌斑岩的岩石化学组成属过碱性系列,显著富集轻稀土元素和大离子亲石元素。辉绿岩的岩石化学组成以钙碱性系列为主,稀土元素总量变化较大,Cs、Rb、Ba、Th元素丰度变化大,普遍亏损U、Nb、Ta。研究证明,辉绿岩脉的这些地球化学特征都与同化混染作用有关,大离子亲石元素丰度的变化还与热液蚀变有关。辉绿岩具有富集型Nd、Sr同位素组成,且变化范围大,是岩浆源区同化混染作用的结果。它们的铅同位素组成属低U(Th)/Pb值的正常铅,主要受混染物控制,并不代表源区特征。库鲁克塔格地区岩石圈地幔Nd、Sr、Pb同位素比塔里木板块西缘岩石圈地幔的富集程度更高,且变化范围大,反映了这两个地区岩石圈地幔的演化历史存在明显差异。 相似文献
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6.
张家口水泉沟正长岩杂岩体成因的REE和Sr、Nd、Pb同位素证据 总被引:13,自引:0,他引:13
水泉沟杂岩体位于尚义 赤城断裂的南侧,侵位于太古宙桑干群变质岩中。岩体形成于晚加里东至早海两期。其稀土元素含量为8.543×10~(-6)~211.6×10~(-6),随着岩石的CaO、MgO、FeO、Fe_2O_3含量降低,SiO_2、K_2O、Na_2O含量增大,稀土含量减小,稀土分布模式由右倾直线型变为近平直的“~”型。在铅同位素构造模式图上杂岩体落在地幔铅同位素演化线附近。在ε_(Nd)-ε-(Sr)图解上处于地幔演化线的下方。杂岩体的钕模式年龄低于围岩桑干群的形成年龄。岩体可能来源干上地幔与下地壳太古宙变质杂岩混熔作用所形成的正长岩岩浆。 相似文献
7.
Mantle Dynamics: A Nd, Sr, Pb and O Isotopic Study of the Cameroon Line Volcanic Chain 总被引:3,自引:3,他引:3
The Cameroon line comprises a 1600-km long Y-shaped chain of< 30 m.y. old volcanoes and <70 m.y. old plutons extendinginto mainland Africa from the Atlantic island of Pagalu. Thedistribution of basaltic volcanic centres is ideal for comparingsub-continental and sub-oceanic sources for basalts and forstudying the influence of the lithosphere on magma generation.We report Nd, Sr, Pb and O isotopic data for more than thirty(principally basaltic) samples from all the main volcanic centrestogether with data for two granulite facies xenoliths. Thosebasalts which display no obvious evidence of crustal contaminationyield initial 87Sr/86Sr ratios ranging from 0.7029 to 0.7035,Nd between +2 and +7 and 206Pb/204Pb between 19?0 and 20?6.The Nd and Sr isotopic compositions define a field on the lefthand side of the mantle array (that is with relativelyunradiogenic Sr) and include some data which show overlap withcompositions observed for St. Helena. 208Pb/204Pb ratios extendto 40?4amongst the more radiogenic observed for alkalibasalts. The Nd and Sr isotopic data are similar in oceanicand continental sectors indicating that the magmas are derivedfrom generally similar mantle sources. Despite this overallsimple picture, the source of the Cameroon line volcanics hasin fact been variable in both time and space. Pb is less radiogenicand Sr is more radiogenic in transitional to hypersthene-normativecompositions. There is a progression to more radiogenic leadisotopic compositions with time for the Cameroon line as a wholethat is most strikingly displayed in the 30 m.y. eruptive historyof Principe. These space-time data are difficult to reconcilewith conventional plume models or with some dispersed plumpudding models. The heterogeneities require isolationtimes considerably longer than the age of the south Atlanticsea floor (120 Ma). The eruptive lavas with the most radiogenicPb observed (accompanied by unradiogenic Nd) precisely straddlethe continental edge (i.e. occur in both oceanic and continentalsectors) with no dependency on Nd and Pb concentrations. A modelis proposed which links these observations with the destructionof lithosphere, and the impregnation of the uppermost mantleby the St. Helena hot spot during the formation of the SouthAtlantic ocean. This mantle was subsequently melted to formthe Cameroon line which appears to be derived from a risinghot zone initiated by the early plume activity. The magmaticproducts reflect the mantle mixing that took place during continentalbreakup, the consequent cooling and thickening of the lithosphereand the continued interaction between rising plume componentsand this lithosphere. The depth from which magmas are currentlybeing tapped at the continent/ocean boundary is estimated atless that 150 km. 相似文献
8.
Continental Lithospheric Contribution to Alkaline Magmatism: Isotopic (Nd, Sr, Pb) and Geochemical (REE) Evidence from Serra de Monchique and Mount Ormonde Complexes 总被引:2,自引:1,他引:2 下载免费PDF全文
Bernard-Griffiths Jean; Gruau Gerard; Cornen Guy; Azambre Bernard; Mace Joel 《Journal of Petrology》1997,38(1):115-132
Isotopic results (Sr, Nd, Pb), as well as concentrations ofmajor and trace elements (REE) are reported for whole-rock samplesand mineral separates from the onland alkaline complex of Serrade Monchique (South Portugal) and the offshore alkali basaltvolcanic suite of Mount Ormonde (Gorringe Bank). These two geneticallyrelated alkaline complexes were emplaced at the east Atlanticcontinent–ocean boundary during the Upper Cretaceous,i.e. 66–72 m.y. ago. Taken together, Serra de Monchiqueand Mount Ormonde may be seen as one of the few examples ofwithin-plate magmatism that straddles the continent–oceanboundary. Major and trace element compositions fail to revealany significant differences between onland and offshore complexes.This is particularly true regarding less differentiated samples(mg-number 0.40) which show the same progressive and continuousenrichment of their trace element patterns, with no specificanomaly (e.g. negative Nb anomaly) being present in samplesfrom the onland complex. Initial Pb and Sr isotopic compositionsalso do not allow any distinction to be made between Serra deMonchique and Mount Ormonde samples. Initial Pb isotope ratiosare moderately high (19.1 < 206Pb/204Pb < 19.8; 207Pb/204Pb= 15.6) in both cases. Moreover, once the effects of Sr contaminationby seawater are taken into account and the most contaminatedsamples discarded using data from fresh clinopyroxene separatesand results of leaching experiments, the initial Sr isotopiccompositions of Mount Ormonde samples are found to be unradiogenic(87Sr/86Sr = 0.7031±1) and identical to those obtainedat Serra de Monchique (87Sr/86Sr = 0.7032±1). In contrast,a systematic mean difference of 2 Nd units is observed betweenSerra de Monchique [Nd(T) = +4.8] and Mount Ormonde [Nd(T) =+6.6] whole-rock samples. Surprisingly, a variation is alsoobserved at Mount Ormonde between the whole-rock samples andone of the two analysed clinopyroxene separates. Whereas MountOrmonde whole-rock samples invariably yielded Nd(T) = +6.6 (meanvalue), a value of +0.5 is obtained for one clinopyroxene separate,whereas another gives +6.0. The above geochemical and isotopicresults make it possible to assign respective roles to the asthenosphere,lithosphere and crust in the petrogenesis of Serra de Monchiqueand Mount Ormonde complexes. We propose that both complexesshare a common mantle source whose isotopic characteristicsare very similar to the source of oceanic island basalts. Continentalmantle lithosphere, already characterized isotopically by studiesof peridotite massifs within the Iberian peninsula, acts asa contaminant which is evident onland on the whole-rock scale,and also present offshore as discrete clinopyroxene xenocrysts.The continental crust appears to play no role in the petrogenesisof the Serra de Monchique alkaline rocks. KEY WORDS: alkaline complexes; continental lithosphere; isotope geochemistry; passive continental margin; within-plate volcanics 相似文献
9.
鞍山3.3Ga陈台沟花岗岩地球化学和Nd、Pb同位素特征 总被引:9,自引:0,他引:9
地球化学和Nd、Pb同位素研究表明,鞍山地区陈台沟花岗岩不是早期古老陆壳物质壳内再循环的产物,而是同时代亏损地幔提取物(变玄武质岩石)在短时间内发生再次熔融的结果,形成过程中受到古老陆壳物质的混合混染。3.15±Ga是鞍山地区地质演化过程的一个重要阶段,它使陈台沟花岗岩的长石Pb和全岩Pb发生再次均匀化。3.3Ga的花岗质岩石在鞍山弓长岭地区也有分布,它们来自于与陈台沟花岗岩类似的物源区,但形成条件可能并不完全相同。 相似文献
10.
甲山岩体形成于早白垩世晚期,可划分为3个单元。电子探针分析结果表明,碱性长石主要为Na-正长石和歪长石,少量为正长石;角闪石主要为钙角闪石中的铁浅闪石,少数为铁角闪石和铁阳起石;单斜辉石属钙铁辉石和普通辉石。化学成分上,该岩体富S i、全碱、全Fe、REE、Th、Ga、Nb、Zr、H f,贫Mg、Ba、Sr、Ti,Cr、Co、N i、V等过渡元素亏损,富轻稀土,中等铕负异常,具有A型花岗岩的特点。甲山正长岩的N(87Sr)/N(86Sr)初始比值ISr=0.701 41~0.707 41,εNd(t)值为-2.27~-5.58,表明岩浆为富集的大陆岩石圈地幔部分熔融形成。岩石圈的拆沉和减薄作用是引发岩石圈地幔部分熔融的原因之一,岩石圈地幔的富集作用可能发生在中元古代晚期。 相似文献
11.
Crystalline basement and Precambrian crustal growth of the continental massifs within the Central Asian Orogenic Belt (CAOB) are still pending problems. Our geological and geochemical investigations identified an Archean (2606 Ma) granitic pluton in the Biliya area of the Erguna Massif. The Neoarchean granitoids show high and positive in-situ zircon εHf(t) (+0.3 to +10.0), whole-rock εNd(t) (+4.8) and whole-rock εHf(t) values (+2.1). They are characterized by high Y + Ce + Zr + Nb (> 220 ppm) and Zr contents and could be classified as A-type granites. These granitoids are characterized by high Zr saturation temperatures (TZr) (796–836°C). They were derived from partial re-melting of juvenile mafic lower crust in an intracontinental back-arc extensional environment. This newly identified Neoarchean granitic pluton may represent the crystalline basement of the several continent massifs within the CAOB, and their high ?Hf(t)–?Nd(t) values may also indicate the occurrence of lateral crustal growth events in these massifs during the Neoarchean. 相似文献
12.
Shen Weizhou Zhang Bangtong Ling Hongfei Lai Mingyuan Yang Jiedong Tao Xiancong 《《地质学报》英文版》1992,66(2):165-176
Nd, Sr and O isotopic study on the spilite-keratophyre sequence in Xiqiu shows that its ∈_(Nd) values are inthe range of 4.02-5.26, and its ∈_(Sr) values, +1.4-2.6. According to the points of these data in the ∈_(Nd)-T,∈_(Sr)-T and ∈_(Nd)-∈_(Sr) diagrams, the spilite-keratophyre is interpreted as being slightly contaminated by crustalmaterials. Its δ~(18)O values are 3.9-5.0‰. The depletion of ~(18)O in the rocks resulted from the influence ofseawater hydrothermal alteration during or soon after the rock formation. Based on the isotopic characteristicsand available geochemical data, it is believed that the spilite-keratophyre was formed in the well-developedisland-arc environment during the Late Proterozoic subduction of the palaeo-Pacific plate beneath thesoutheastern margin of the Yangtze massif. 相似文献
13.
Maslov A. V. Kuznetsov A. B. Politova N. V. Kozina N. V. Novigatsky A. N. Shevchenko V. P. 《Doklady Earth Sciences》2019,485(1):268-272
Doklady Earth Sciences - The isotopic characteristics (εNd, 207Pb/206Pb, and 87Sr/86Sr) of the modern bottom sediments sampled in the Barents Sea during the 67th voyage of the R/V Akademik... 相似文献
14.
峨眉山玄武岩Sr、Nd、Pb同位素特征及其物源探讨 总被引:30,自引:3,他引:30
选择峨眉山玄武岩区2个出露最全的云南永胜大迪里剖面和宾川上仓剖面进行了Sr、Nd、Pb同位素地球化学研究.结果表明, 少数样品的Pb同位素与Hanan和Graham定义的C组分相似, 而大多数样品则不在C组分范围之内, 说明除地幔柱物质外, 有岩石圈物质的加入.在多元同位素图解上, 峨眉山玄武岩位于EMⅠ、EMⅡ和DMM三端元之间, 表明其源区可以由地幔柱、富集的岩石圈地幔和地壳不同程度的混合来解释.结合已有的微量元素资料分析, 其中的地壳组分主要为下地壳, 而早期玄武质岩浆在上升过程中由于通道不畅通, 有较多的上地壳组分的混染.岩石圈地幔的富集作用可能与地幔柱释放出的小体积富Na、P而贫K的流体交代作用有关.粗面岩的同位素组成和玄武岩接近, 说明粗面岩是玄武质岩浆分离结晶作用形成的. 相似文献
15.
冀北小张家口基性-超基性杂岩的成因:岩石学、地球化学和Nd-Sr同位素证据 总被引:4,自引:0,他引:4
冀北小张家口基性-超基性杂岩体主要由辉石岩和次要的纯橄岩组成,并含有方辉橄榄岩透镜状捕掳体.岩石学和元素地球化学数据表明,辉石岩和纯橄岩可能是堆晶成因,而方辉橄榄岩可能是来自地幔源区的地幔岩捕掳体(抽取玄武质熔体之后的难熔残余).辉石岩和纯橄岩都表现出相当富集的Nd-Sr同位素特征,εND (t)=-2~10,ISr=0.7045~0.7081,表明它们的母岩浆来自富集的岩石圈地幔的部分熔融.化学成分和同位素成分一致表明,母岩浆在以橄榄石和辉石为主的分离结晶过程中,遭受下地壳不同程度的混染.辉石岩受显著混染,不能代表岩石圈地幔的同位素成分;而纯橄岩是最初的分离结晶体,仅受轻微下地壳混染,可近似反应岩石圈地幔源区的同位素成分.小张家口岩体的形成可能与古亚洲洋的缝合(240~250Ma)有关. 相似文献
16.
兴蒙造山带位于华北板块和西伯利亚板块之间,具有复杂的构造演化历史,其构造格局和拼合机制一直存在较大争议.本次在兴蒙造山带南部的朝阳地识别出一套形成于伸展背景的中泥盆世高Sr/Y花岗岩,可对早古生代末期弧陆拼贴过程进行约束.朝阳地花岗岩锆石U-Pb年龄为386.8±2.9 Ma,属于中泥盆世.岩石地球化学分析显示高SiO2、Al2O3、Na2O含量,中等CaO、K2O含量,较低FeOt、MgO含量的特征,Na2O/K2O比值均大于1,属于中钾钙碱性I型花岗岩;A/CNK范围为1.02~1.08,属于弱过铝质系列;微量元素具有富集Rb、Ba、K等大离子亲石元素及Sr,弱亏损Nb、Ta、P、Ti等高场强元素的特征,Sr/Y比值高(103~146);具有轻稀土富集的配分模式((La/Yb)N=9.9~14.6),重稀土分馏较弱,(Gd/Yb)N范围为1.45~1.97,具有弱Eu正异常(δEu值1.31~1.80),地球化学分析表明,高Sr/Y比值继承自岩浆源区而非加厚地壳的熔融.朝阳地侵入岩均具有富集的Sr-Nd-Hf同位素组成,εNd(t)和εHf(t)均为负值(范围分别为-18.6~-17.9,-38.30~-23.59),锆石Hf模式年龄范围为2 825~3 745 Ma,集中于2 800~3 000 Ma,Nd模式年龄较集中(2 584~2 642 Ma).综合岩石学、元素及同位素地球化学分析,朝阳地高Sr/Y侵入岩是中泥盆世在区域伸展背景下,由具有高Sr/Y比值的古老基性下地壳物质受减压和上涌软流圈加热共同作用发生部分熔融形成,代表泥盆纪白乃庙岛弧与华北陆块碰撞后区域伸展背景. 相似文献
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冈底斯铜矿带埃达克质含矿斑岩的源区组成与地壳混染:Nd、Sr、Pb、O同位素约束 总被引:17,自引:7,他引:17
本文通过对冈底斯铜矿带甲马、拉抗俄、南木、厅宫、冲江及洞嘎 6个矿区含矿斑岩的全岩 Nd、Sr、Pb、O同位素分析 ,发现它们具有比较清楚的变化规律。Sr、Pb同位素组成总体上表现为放射成因组份自西向东逐渐增高 ,87Sr/ 86 Sr、2 0 6 Pb/ 2 0 4 Pb、2 0 7Pb/ 2 0 4 Pb和 2 0 8Pb/ 2 0 4 Pb值变化范围分别为 0 .70 4 6 35~ 0 .70 792 0 ,18.315~18.6 6 1,15 .5 0 1~ 16 .6 2 6和 38.175~ 38.96 0 ;Nd同位素比值自西向东则逐渐降低 (1 43Nd/ 1 44 Nd=0 .5 12 313~0 .5 12 931)。综合分析显示这些含矿斑岩主要产生于俯冲到深部的雅鲁藏布江洋壳在榴辉岩相条件下的部分熔融 ,同时有少量俯冲沉积物参与了源区混合。上述同位素比值的区域变化与沉积物混入量沿成矿带自西向东不断增多有关 ,大体的比例是西段洞嘎矿区 <1% ;中段冲江、厅宫、南木和拉抗俄各矿区在 1%~ 5 %之间 ;东段甲马矿区为10 %~ 15 %。与 Nd、Sr、Pb同位素不同 ,氧同位素缺少上述变化规律。它们的 δ1 8O值在整个成矿带上都比较稳定 ,从 5 .5‰~ 9.8‰ ,平均为 7.7‰ (冲江和厅宫矿区以石英斑晶为准 ) ,明显高于亏损 MORB源区的 δ1 8O值 (5 .70‰ )。这说明在沉积物源区混合很少的情况下 ,成矿带中段和西段的含矿斑岩在上升侵位过程 相似文献
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中国油气田氦、铅、锶、钕等同位素组成与“二元论” 总被引:1,自引:0,他引:1
通过对He同位素组成特征研究,阐述了我国油气盆地的3He/4He比值受控干区域成藏背景的特征.在东部地区由于太平洋板块俯冲,深大断裂SN向分布和火山-岩浆活动剧烈等因素的影响,该比值最大,中部的最小,西部及南部的介于两者之间,而且其中的壳源、幔源比例也有所不同.克拉玛依油田、辽河油田及塔里木盆地油田?镲 的Pb、Sr、Nd同位素组成特征显示出他们经历了多源、多期、多灶的成藏作用,而天然气和天然气水合物的He-Ar、Ne、Xe、C-D及δ13C1-C1/(C2+C3)的关系特征,证明它们的成因是壳幔混合的结果.碳同位素组成显示松辽盆地、鄂尔多斯盆地、三水盆地及苏北盆地的油气来源皆和地壳与地幔贡献有关."二元论"的成藏理论的运用,有益干找藏工作的开展. 相似文献
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基底岩系和花岗岩类Pb-Nd同位素组成限制祁连山带的构造属性 总被引:14,自引:5,他引:14
对扬子陆块的西北部边界至今尚未得到有效的限定.中央山系西段祁连山带基底岩系和花岗岩类的Pb-Nd同位素组成为限定扬子陆块的西北边界提供限制.祁连山带前寒武纪基底岩系的Nd同位素亏损地幔模式年龄(TDM)主要分布于0.75-2.5 Ga之间, 峰值为2.1 Ga左右; 该带古生代花岗岩类的TDM变化于1.07-2.14 Ga之间.由此表明, 祁连山带地壳增长主要发生于元古宙, 缺乏太古宙地壳增长的信息.祁连山带前寒武纪基底和花岗岩类全岩均以高放射成因的铅同位素组成为特征, 极大多数样品的206Pb/204Pb > 18.0, 207Pb/204Pb > 15.5, 208Pb/204Pb > 38.0.因此, 祁连山带地壳增长特征和铅同位素组成特征与华北陆块存在明显的差异, 而与扬子陆块一致, 从而表明祁连山带具有扬子型陆块的构造属性.因此, 扬子陆块的西北部边界扩大至祁连山带的北侧.自新元古代以来, 祁连山带经历了岩石圈裂解作用, 并有洋盆形成, 但这些构造事件均发生在扬子型陆块内部的地质背景. 相似文献