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1.
通过对红旗岭矿区3号含矿岩体同位素年龄研究,该岩体锆石U-Pb年龄为(207±3)Ma,黑云母Ar-Ar年龄为(212.5±2.5)Ma,矿石Re-Os等时线年龄为(234±28)Ma,表明该含矿岩体形成于三叠纪晚期。该年龄和近年来对含矿基性-超基性岩体同位素年龄测定结果基本一致(205~230 Ma),说明它们均为三叠纪晚期岩浆作用的产物。根据岩体围岩年龄(Rb-Sr全岩等时线年龄(524±16)Ma和(357±23)Ma),认为该岩体成岩成矿主要形成于印支中晚期,是同一期构造岩浆活动的产物,岩浆及成矿物质来源具有同源性,从而形成了具有相同成因的矿床类型。  相似文献   

2.
应用SHRIMP锆石U-Pb测年,对攀西地区白马和太和含矿层状基性-超基性岩体的年龄进行研究,获得白马层状辉长岩体锆石U-Pb年龄为258±2Ma(95%可信度),太和层状辉长岩体锆石U-Pb年龄为262±2Ma(95%可信度)。结果表明,攀西地区的白马和太和含矿层状辉长岩体均形成于二叠纪晚期。该年龄信息显示了从层状辉长岩体的侵入到峨眉山玄武岩的喷发高峰期(250Ma)仅距5~10Ma,二者应属于同期不同阶段岩浆活动的产物。鉴于空间上层状辉长岩体与峨眉山玄武岩密切相关,基性-超基性岩体和玄武岩的形成均与晚古生代末期峨眉地幔柱活动有关。  相似文献   

3.
滇东南个旧白云山碱性岩年代学和地球化学及成因意义   总被引:2,自引:0,他引:2  
报道了滇东南个旧超大型锡多金属矿区西区北部白云山碱性岩新的锆石U-Pb年龄、全岩地球化学和Sr-Nd同位素数据。LA-ICP-MS锆石U-Pb定年结果表明,白云山碱性正长岩形成于晚白垩世(80.0±0.6 Ma),与个旧地区的中基性岩及花岗岩均为同一次构造岩浆事件的产物;碱性正长岩与霞石正长岩具有相似的主微量元素地球化学特征及Sr-Nd同位素组成,暗示二者很可能是源于同一富集地幔源区并经历了不同程度演化的产物。结合已有的元素和同位素组成结果,认为碱性岩、中基性岩和成矿花岗岩很可能分别源自富集的岩石圈地幔、正常的岩石圈地幔和地壳源区。在晚白垩世伸展构造背景控制下,源于不均一岩石圈地幔的碱性和中基性的岩浆底侵,促使中下地壳岩石部分熔融形成花岗质熔体,在上升至近地表过程中引起构造活动带成矿物质的富集,从而形成个旧超大型锡多金属矿床的矿化格局。可以说,源于富集地幔的碱性岩浆在含矿花岗质岩浆的成岩成矿过程中,应不只是提供热量的贡献。  相似文献   

4.
新疆哈密月牙湾铜镍矿是近年来在东天山卡拉塔格地区新发现的岩浆型铜镍硫化物矿床.为确定该矿床的成岩、成矿时代及其成矿作用,利用锆石LA-ICP-MS U-Pb定年和硫化物Re-Os同位素等时线定年方法,分别对主含矿岩相橄榄辉长岩和矿石中的磁黄铁矿进行了年龄测定.橄榄辉长岩中锆石的206Pb/238U年龄为255~292 Ma,加权平均值为274±2.4 Ma,代表了橄榄辉长岩的成岩年龄;矿石中磁黄铁矿Re-Os同位素等时线年龄为271.9±9.5 Ma,代表了硫化物熔离成矿的年龄;187Os/188Os初始值为0.279 6±0.008 9,γOs值为117~126,指示在岩浆侵位及硫化物熔离成矿过程中有地壳物质加入.月牙湾镁铁质岩浆的成岩、成矿作用发生于早二叠世,与东天山黄山-图拉尔根一带典型铜镍硫化物矿床为同一时期的产物.   相似文献   

5.
王汾连  赵太平  陈伟  王焰 《岩石学报》2013,29(10):3519-3532
攀西地区广泛发育Nb-Ta-Zr矿正长岩脉,它们在空间上与峨眉山大火成岩省的玄武岩、辉长岩及长英质岩体(正长岩和花岗岩)共生,但是否有成因联系并不清楚。本文对攀西地区炉库和白草两个Nb-Ta-Zr矿区中的正长岩体、无矿及含矿正长岩脉进行了锆石LA-ICPMS法U-Pb定年和Lu-Hf同位素研究。研究表明,炉库矿区正长岩体和无矿正长岩脉锆石U-Pb年龄为255.6±2.0Ma和255.6±1.5Ma,含矿正长岩脉为256.7±4.4Ma;白草矿区正长岩体和含矿正长岩脉形成时间为257.9±2.3Ma和257.8±1.3Ma。这些年龄结果均显示攀西地区Nb-Ta-Zr矿化的形成时代与正长岩体一致,说明Nb-Ta-Zr矿化的形成与峨眉山大火成岩省紧密相关,为地幔柱成矿系统的一部分。两个矿区含矿正长岩脉的锆石εHf(t)值分别为+0.1~+9.5(多数集中于+2~+6,炉库矿区)和-0.2~+7.7(白草矿区),与正长岩体相似(炉库矿区为+1.0~+6.6,白草矿区为+2.1~+6.2),说明含矿岩脉与正长岩体有紧密成因联系。结合锆石年龄和Hf同位素研究初步认为,正长岩体和正长岩脉是峨眉山地幔柱岩浆底侵到下地壳底部的基性岩再次部分熔融的结果。  相似文献   

6.
秦岭造山带富水杂岩体的一些变辉长岩含有粒度较大且U、Pb含量较高的斜锆石和锆石,是U-Pb同位素测年的极好矿物.对该杂岩体的中粗粒角闪黑云辉长岩中的斜锆石和锆石分别进行了SHRIMP法和TIMS法U-Pb同位素年龄测定,获得斜锆石和锆石的U-Pb同位素年龄分别为501.4 Ma±1.2 Ma和480.0 Ma±3.4Ma,两者相差约20 Ma.对该岩石中部分斜锆石向锆石转化的现象及锆石的成因进行了初步研究,认为斜锆石的U-Pb同位素年龄应解释为秦岭富水杂岩中基性岩石的形成时代,而锆石的成因及其U-Pb同位素系统在变质作用过程中的变化比较复杂,对其U-Pb同位素年龄地质意义的合理解释需做进一步的研究.  相似文献   

7.
玄武岩分相Sm-Nd内部等时线定年方法流程   总被引:1,自引:0,他引:1       下载免费PDF全文
长期以来,对玄武岩精确测年一直是困扰地质学家的重大科学问题。玄武岩结构和组成特殊,岩石中矿物组成单一、锆石十分稀少,颗粒很细,采用物理方法挑选单矿物和锆石十分困难,很难应用内部等时线法和锆石U-Pb法研究其成岩时代。而全岩样品间因岩浆分异产生的147Sm/144Nd比值差别很小,等时线年龄相对误差较大;Rb含量很低,Rb/Sr比值很小,全岩Sm-Nd法、Rb-Sr法常常不能给出正确可信的年龄。根据内部等时线法原理,本文通过化学方法,采用王水和氢氟酸-硝酸对玄武岩样品进行分步溶解,分别对同一件样品的王水溶解相、王水不溶相和全岩开展Sm-Nd同位素组成分析。结果表明:通过不同酸介质分步溶解,可提取玄武岩中石英、透辉石、长石等矿物组合,该组合与其全岩具有相同的εNd(t)和一致的Nd同位素模式年龄;矿物与全岩构筑的内部等时线中,147Sm/144Nd比值的变化由全岩之间的0.005扩大到0.11,143Nd/144Nd值的变化由全岩的0.512500~0.512547扩大到0.512500~0.513145。通过该方法获得了与已有锆石U-Pb年龄在误差范围内一致的Sm-Nd等时线年龄:t=(991±21)Ma(MSWD=2.1)。通过对比研究,本文认为:玄武岩分相Sm-Nd内部等时线定年方法,适用于前寒武纪及更古老的玄武岩样品的年龄测定。该方法的建立不仅有效提高玄武岩Sm-Nd等时线定年成功率,也为其他隐晶质且不易挑出单矿物样品的年龄测定提供了新的思路。  相似文献   

8.
湘南宜章县长城岭地区广泛出露以辉绿岩、花岗斑岩为主的燕山早期岩体,而宜章平和地区主要分布安山岩体,其年龄和成因有待进一步研究。分别用SHRIMP和LA-ICP-MS法测试了它们的年龄和Hf同位素组成,长城岭辉绿岩的SHRIMP锆石U-Pb年龄为153.7Ma±3.1Ma、227.0Ma±4.2Ma;长城岭花岗斑岩的LA-ICP-MS锆石U-Pb测年结果为153Ma±14Ma和231.58Ma±0.67Ma;平和安山岩的SHRIMP锆石U-Pb测年结果为159Ma±14Ma和229.3Ma±7.6Ma,LA-ICP-MS锆石U-Pb测年结果为161Ma±1Ma,显示为燕山早期岩浆侵位和印支期基性岩浆底侵。锆石Lu-Hf同位素原位分析结果表明,εHf(t)值在正值和负值范围内变化,指示岩浆为壳幔混合来源。结合长城岭花岗岩体中继承锆石的年龄信息,认为花岗质岩石可能来源于中元古代基底的重熔。岩体岩浆很可能是由元古宙火成岩石部分熔融形成的,并伴有年轻或新生幔源物质的加入,岩浆上升侵位的过程中发生了混合作用。  相似文献   

9.
湘南宜章县长城岭地区广泛出露以辉绿岩、花岗斑岩为主的燕山早期岩体,而宜章平和地区主要分布安山岩体,其年龄和成因有待进一步研究。分别用SHRIMP和LA-ICP-MS法测试了它们的年龄和Hf同位素组成,长城岭辉绿岩的SHRIMP锆石U-Pb年龄为153.7Ma±3.1Ma、227.0Ma±4.2Ma;长城岭花岗斑岩的LA-ICP-MS锆石U-Pb测年结果为153Ma±14Ma和231.58Ma±0.67Ma;平和安山岩的SHRIMP锆石U-Pb测年结果为159Ma±14Ma和229.3Ma±7.6Ma,LA-ICP-MS锆石U-Pb测年结果为161Ma±1Ma,显示为燕山早期岩浆侵位和印支期基性岩浆底侵。锆石Lu-Hf同位素原位分析结果表明,εHf(t)值在正值和负值范围内变化,指示岩浆为壳幔混合来源。结合长城岭花岗岩体中继承锆石的年龄信息,认为花岗质岩石可能来源于中元古代基底的重熔。岩体岩浆很可能是由元古宙火成岩石部分熔融形成的,并伴有年轻或新生幔源物质的加入,岩浆上升侵位的过程中发生了混合作用。  相似文献   

10.
对新疆磁海铁矿区镁铁-超镁铁质岩与铁成矿关系、正长岩与镁铁质岩关系的解剖,是认识磁海矿区成岩、成矿过程及构造背景的关键。本文利用SIMS锆石U-Pb测年法,获得磁海辉绿岩、辉长辉绿岩、磁南辉长岩、磁海北角闪石英正长岩的206Pb/238U-207Pb/235U谐和年龄分别为275.1±2.2Ma、281.9±3.2Ma、273.0±1.9Ma和273.0±1.8Ma,这与北山乃至北疆地区主要含铜镍-钒钛磁铁矿的镁铁-超镁铁质岩年龄一致。岩石地球化学特征研究显示,从辉石岩到辉长岩,再到辉绿岩,经历了Ti逐渐富集、Mg#和m/f值先增加后降低的过程,角闪石英正长岩具有A型花岗岩特征,与辉长岩、辉绿岩在成因上存在互补关系。综合年代学和地球化学特征,磁南辉石岩、辉长岩、磁海辉绿岩、辉长辉绿岩以及磁海北边的角闪石英正长岩为同源岩浆演化的产物,岩浆演化过程中受地壳混染作用微弱,在岩浆演化的早期,磁铁矿的结晶分离主导着岩浆成分的改变,当岩浆演化到辉长岩阶段,岩浆开始以结晶分异作用为主;磁铁矿的分离结晶时间早于钛铁矿,岩浆型的金属硫化物为磁铁矿和钛铁矿结晶过渡阶段的产物。磁海镁铁-超镁铁质岩石在成岩及成矿作用上可能与在时间和空间上相邻近的塔里木早二叠世大火成岩省有密切关系。  相似文献   

11.
40Ar-39Ar, Sm-Nd, U-Pb, and Lu-Hf isotope data are reported on the gabbro of the Volkovsky Massif, the only massif of the Uralian Platinum Belt wherein economic copper-iron-vanadium and high-grade gold-palladium mineralization is present. The massif is made up of gabbro blocks with concentrically zoned structure and diorite intrusions in its core. In the northeast and southwest, the gabbro is cut by syenite of the Kushva Massif. Gabbro blocks mainly consist of the olivine-anorthite gabbro, while labradorite two- pyroxene gabbro intersects both olivine-anorthite gabbro and Ti-magnetite and copper-PGE mineralization developed in them. The study of both gabbro types by Sm-Nd isochron and U-Pb (SHRIMP II) zircon methods with subsequent REE and Lu-Hf isotope analysis of zircon made it possible to date reliably (428 ± 7 Ma (SHRIMP) and 436 ± 21 Ma (Sm-Nd)) postore labradorite gabbro and, correspondingly, the upper age limit of the mineralization of the Volkovsky Massif. Ore-bearing olivine-anorthite gabbro contain four different-age zircon populations: 2682 ± 37–972 ± 18 Ma, 655 ± 15 to 565 ± 9 Ma; 450 ± 12 Ma, and 343 ± 8 Ma. Hf-Nd isotope systematics showed that zircon with an age of 450 ± 12 Ma presumably marks the formation age of the rocks, the older zircon was trapped, while zircon with an age of 343 ± 8 Ma was formed during low-temperature transformation of the rock and sometimes contains excess radiogenic Hf. Proterozoic xenogenic zircon was inherited from diverse rocks of ancient crust, while the oldest grain with an age of 2065 Ma was possibly formed in a deep mantle source. Vendian zircon was presumably also entrapped, and its morphology and geochemistry point to the crystallization from a basaltic melt. The abundance of pre-Paleozoic zircon in the olivine-anorthite gabbro suggests significant contribution of ancient material in their petrogenesis. This material could serve as source of ore components (metals and sulfur) for unique copper-sulfide gold-PGE mineralization of the Volkovsky Massif.  相似文献   

12.
Geochronological and geochemical analyses were carried out in order to identify the pre-Variscan basement of the Tauern Window (eastern Alps). Maficultramafic rocks from the central part of the Tauern window have been studied by REE-analysis and U-Pb and Sm-Nd isotopic analyses on whole rock, zircons, garnets and sphene. U-Pb and Sm—Nd zircon dating define both magmatic Pan-African and Cambro-Ordovician events from 650 Ma to 486 Ma within the Alpine fold belt. This indicates a time span of 150 Ma for magmatic activities in the Tauern Window of the eastern Alps. The ages of 657 Ma (U-Pb zircon) and 644 (Sm—Nd zireon) obtained from an amphibolite are the oldest dates of the Eastern Alps; they may be related to the Pan-African orogeny, and imply an early cycle of magmatic intrusion before major activity started at around 500 Ma. Sm-Nd whole rock analyses of the Precambrian rocks do not define an isochron, reflecting heterogenities within the mantle source. The initial Nd values (+1.2 to +4.7) are very low, implying an enrichment of the magma source. The second main phase of magmatic activity (539 486 Ma) is characterized by the emplacement of mafic/ultramafic rock sequences. As no ophiolitic relies are observed in these domains, the Early Paleozoic magmatism was likely associated with extensional tectonics. Obtained ages of 301±3 and 314+4/-3 Ma point to a Variscan metamorphism. The first combined U-Pb zircon/Sm—Nd zircon data for an amphibolite from the Basal Amphibolite Formation (BAF) favoured the Sm-Nd zircon isochron age as a magmatic age, whereas the low initial Nd value point to an enriched magma source as well as to heterogenities within the magma source. The obtained ages suggest that parts of the pre-Variscan basement within the Alpine fold belt were formed during the Pan-Africa cycle. The detection of Pre-Variscan ages within the Alpine basement must reffect a complex history involving significant pre-Variscan activity.  相似文献   

13.
The sequence of rock and ore formation at the Yermakovsky beryllium deposit is established on the basis of geological relationships and Rb-Sr and U-Pb isotopic dating. The Rb-Sr age of amphibolitefacies regional metamorphism is determined for quartz-biotite-plagioclase schist (266 ± 18 Ma) and dolomitized limestone (271 ± 12 Ma) of the Zun-Morino Formation. The U-Pb zircon age of premineral gabbro is 332 ± 1 Ma. The Rb-Sr age of gabbro is somewhat younger (316 ± 8.3 Ma), probably owing to the effect of Hercynian metamorphism on sedimentary rocks of the Zun-Morino Formation and gabbroic intrusion that cuts through it. The U-Pb zircon age of gneissose granite of the Tsagan Complex at the Yermakovsky deposit is 316 ± 2 Ma, i.e., close to the age of metamorphism superimposed on gabbro rocks. The U-Pb zircon age of preore granitic dikes, estimated at 325 ± 3 and 333 ± 10 Ma, is close to the age of gabbro. The Ar/Ar age of amphibole from a granitic dike (302.5 ± 0.9 Ma) probably displays a later closure of this isotopic system or the effect of superimposed processes. The Rb-Sr age of alkali syenite intrusion is 227 ± 1.9 Ma. The U-Pb zircon age of alkali leucogranite stock pertaining to the Lesser Kunalei Complex is 226 ± 1 Ma, while the Rb-Sr age of beryllium ore is 225.9 ± 1.2 Ma. These data indicate that beryllium ore mineralization is closely related in space and time to igneous rocks of the Lesser Kunalei Complex dated at 224 ± 5 Ma and varying from gabbro to alkali granite in composition. Thus, the preore Hercynian magmatism at the Yermakovsky deposit took place ∼330 Ma ago and was completed by metamorphism dated at 271–266 Ma. The ore-forming magmatism and beryllium ore mineralization are dated at 224 ± 5 Ma. Postore magmatic activity is scarce and probably correlated with tectonic melange of host rocks.  相似文献   

14.
对依兰地区黑龙江混杂岩中的变玄武岩、变枕状玄武岩及变堆晶辉长岩岩块中的锆石进行了LA-ICP-MS U-Pb同位素测定,结果表明,变玄武岩的锆石大量为捕获基底的锆石,其年龄范围大,从3172±24Ma到176±1Ma均有分布,其中具有基性岩典型的板状特征的锆石年龄为243±1Ma,代表了变玄武岩的原岩形成年龄;变枕状玄武岩及变堆晶辉长岩的年龄分别为251±1Ma和252±1Ma,分别代表各自原岩的形成年龄。本次锆石年龄的获得,证明晚二叠世佳木斯地块和松嫩-张广才岭地块之间存在古洋盆,为研究黑龙江杂岩的演化历史提供了重要的年代学依据。  相似文献   

15.
周丽云  王瑜  王娜 《地质通报》2015,34(203):400-418
分布于中国东北完达山地区的饶河花岗岩岩体中暗色矿物和斑晶钾长石定向排列,呈北北东走向,其中透镜状闪长质捕掳体近水平排列,局部具有左行剪切的特点。岩体中发育石香肠状石英脉,表明岩体在侵位过程中受到左行剪切作用的影响或制约。对出露的花岗岩进行LA-ICP-MS锆石U-Pb定年,获得年龄121±1Ma和119±1Ma,表明该岩浆流动形成于早白垩世。同时对围岩辉长岩、侵入岩体中的正长岩脉和辉绿岩脉进行锆石U-Pb年龄分析,分别获得160±1Ma、109±2Ma、124±1Ma的年龄结果。根据各样品中继承锆石的特征,围岩辉长岩的年龄数据很集中,不存在古老锆石的年龄信息。岩浆流动岩体及岩脉中都有太古宙、元古宙等各时代的锆石年龄数据,可能表明完达山地区在约120Ma之前已完成古太平洋板块的俯冲拼贴,饶河岩体形成于走滑环境下的陆内变形,为同构造侵入岩。  相似文献   

16.
First isotopic-geochemical data were obtained on basite-ultrabasite rocks from the southern Kovdor area that were previously provisionally ascribed to the drusite (coronite) complex based on the occurrence of drusite (coronite) textures. The mineral and whole-rock Sm-Nd isochron age determined for five rock samples from the Sorkajoki and Poioiva massifs and the massif of Elevation 403 m turned out to be close (within the error): 2485 ± 51, 2509 ± 93, and 2517 ± 75 Ma, respectively. The crystallization age was evaluated for the two massifs (Poiojovski and Mount Krutaya Vostochnaya) by the U-Pb system of zircons. Our samples contained both magmatic and xenogenic crustal zircons, whose age was estimated at 2700 Ma. The crystallization age of the massifs themselves (data on the magmatic zircons) is 2410 ± 10 Ma. The undepleted character of the mantle source (ɛNd = +0.9) and the much younger age of the massifs than that of other known manifestations of ultrabasic magmatism in the territory of Karelia and the Kola Peninsula (including the layered pluton classic drusite massifs) suggest that the central part of the Belomorian Mobile Belt hosts one more independent intrusive rock complex, which has never been recognized previously and which is different from typical drusites.  相似文献   

17.
北祁连地区玉石沟蛇绿岩以发育较完整和典型的蛇绿岩岩石组合而备受关注。对侵入于玉石沟蛇绿岩中的正长岩进行LA-ICP-MS锆石U-Pb定年,获得正长岩的结晶年龄为522.7±5.3Ma,属早寒武世。这是北祁连地区最早的碱性侵入岩浆活动记录。该年龄的获得限定了玉石沟蛇绿岩形成时代的上限,应不晚于522Ma,即玉石沟蛇绿岩所代表的洋盆的发育扩张过程至少在该时限前已结束。  相似文献   

18.
镰子沟金矿床位于小秦岭金矿集区西部,矿体受断裂和石英脉体控制,围岩蚀变以钾化和硅化为主。矿床浅部以金矿为主,深部发现金钼(共)伴生矿体。为了确定镰子沟金矿床成岩、成矿时代,选择镰子沟金矿床正长斑岩和金钼矿石分别进行了LA-ICP-MS锆石U-Pb和辉钼矿Re-Os同位素研究。获得正长斑岩的~(207)Pb/~(206)Pb年龄加权平均值为1802.9±9.9Ma,此年龄明显早于小秦岭地区金矿床的形成时代;获得辉钼矿Re-Os等时线年龄为128.8±6.5Ma,指示矿床形成于早白垩世,晚于区域已知花岗岩形成时代。综合研究认为,镰子沟金矿床的形成与区域花岗岩无关,可能与深部流体或隐伏岩浆有关。  相似文献   

19.
The Erdenetuin-Obo porphyry Cu-Mo deposit was formed at the final stage of development of magmatic activity occasionally manifested in the Late Permian-Early Triassic in the period of at least 40 Ma. Early plutonic (host) and late ore-bearing porphyry intrusive complexes were formed in that period. The plutonic complex is multiphase, while the porphyry complex is polyrhythmical and multiphase within rhythms. The obtained data on the U-Pb isotopic composition (SHRIMP II) of zircons from unaltered rocks of the ore field are discussed: gabbro, diorite, and granodiorite of the plutonic complex and granodiorite-porphyry I and II of the first and second rhythms of the ore-bearing complex, respectively. Zircons of different age levels and genotypes were identified in the course of performed investigations. Gabbro are dominated by postmagmatic (superimposed) zircons with the datings of 239–225 Ma. The age of xenogenic zircon brought out from the basement rocks is estimated at 1146 ± 11 Ma. Zircons occur as magmatic and postmagmatic (superimposed) minerals dated 252–247, 244–233 Ma in diorite and 244–242, 239–224 Ma in granodiorite. The ages of postmagmatic zircons from diorite are partially overlapped by datings of magmatic zircons from granodiorite and granodiorite-porphyry. In the porphyry complex, the datings of magmatic zircons are 240–234 and 222–220 Ma in granodiorite-porphyries I and II, respectively. There are also inherited zircons with datings coinciding with those of magmatic zircons from precursor intrusive rocks. Datings of such zircons are 249–241 and 257–231 Ma for granodiorite-porphyries I and II, respectively. As a whole, zircon datings in all studied igneous rocks forming a virtually uninterrupted range in the period of 257–220 Ma allow us to suggest the relation of the ore magmatic system to the long-living constantly active deep source occasionally delivering melt to the upper levels.  相似文献   

20.
在前人研究的基础上,对本巴图组的野外地质特征、岩石类型、岩石组合、锆石年代学等进行了研究。镜下特征显示本巴图组砂岩主体为岩屑晶屑含砾砂岩;碎屑锆石阴极发光图像显示,它们多具有震荡生长环带或条痕状吸收,Th/U比值为0.06~1.03(平均0.55),具有岩浆锆石的典型特点。应用LA-ICP-MS测年技术对本巴图组进行了碎屑锆石分析,其206Pb/238U年龄可以分为5组:①319~451Ma,峰期年龄为363Ma;②457~543Ma,峰期年龄为513Ma;③724~996Ma,峰期年龄为945Ma;④1031~1836Ma,峰期年龄为1572Ma;⑤2469~2505Ma,峰期年龄为2487Ma。年龄分布的意义:研究区本巴图组沉积的时间下限应为319Ma之后;457~543Ma发生泛非期构造热事件,沉积物源主要来源于佳-蒙地块;另外几组峰值年龄945Ma、1572Ma和2487Ma主要反映了佳-蒙地块基底的年龄信息。  相似文献   

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