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1.
本文通过对云南早元古代哀牢山群、底巴都组与大红山群的地质地球化学研究,从地球化学角度证明早元古代扬子板块西缘存在板块运动,前特提斯域的元古大洋板块在其东北方向的俯冲作用中,与古扬子板块发生碰撞而在俯冲带大陆边缘弧与弧后盆地分别形成哀牢山群、底巴都组与大红山群的基性火山岩。  相似文献   

2.
DISCUSSION ON RELATIONSHIP BETWEEN WESTERN MARGIN OF YANGTZE BLOCK AND SOUTHWESTERN SANJIANG REGION IN PROTEROZOIC  相似文献   

3.
大理地区存在较完整的新元古代泛非期构造-热事件记录,海东挖色花岗闪长岩、花岗岩中获得黑云母K-Ar年龄799Ma、锆石U-Pb年龄667Ma,苍山云弄峰黑云母二长花岗岩中获得锆石U-Pb年龄748Ma,大沟箐角闪辉长岩中获得K-Ar年龄892.3Ma。新元古代挖色花岗岩和云弄峰花岗岩与奥陶系大成村组沉积接触。大成村组粉砂岩中产腕足类、腹足类化石,顶部与中志留统阴阳山组假整合接触,缺失下志留统。向阳村奥陶系—志留系发育较好,产丰富的三叶虫、笔石化石,其中不乏早奥陶世的标准分子。大理地区的地层构造与丽江地区差异较大,不能对比,但可以同青海南部及藏东对比。古中元界苍山群相当于宁多群,新元古界罗平山岩组相当于草曲群,缺失震旦系—寒武系。下奥陶统向阳组、迎凤村组相当于青泥洞组和曾子顶组。因此,大理地区板坱构造划分应归属西藏-三江造山系中的扬子西缘多岛-弧-盆系。西藏-三江造山系与扬子-华南陆块区的界线应移至红河-程海断裂上。  相似文献   

4.
从前人的研究来看,十里墩组缺少限定其形成时代的标准化石,这导致其沉积时限尚有诸多争议,并且对于该套地层物源的相关研究甚少.以西秦岭临潭地区十里墩组上段碎屑岩为研究对象,进行LA-ICP-MS锆石U-Pb年代学研究,探讨其形成时代及物源.结果表明:十里墩组上部层位的2个样品中最小锆石年龄组加权平均年龄为265.7±6.5 Ma,即十里墩组上段沉积时代应不老于265.7±6.5 Ma,综合古生物化石信息将其形成年代厘定为中晚二叠世.所获得碎屑锆石年龄可划分为4组:①显生宙年龄组,265~467 Ma;②新元古代年龄组,564~996 Ma,该组有小段峰值,峰值年龄为955 Ma;③中元古代年龄组,1 099~1 539 Ma;④古元古代-太古代年龄组,1 622~3 153 Ma,该组年龄又可细分为古元古代中晚期年龄段:1 622~2 194 Ma,峰值为1 902 Ma;古元古代早期-太古代年龄段:2 343~3 153 Ma,峰值为2 516 Ma.综合研究认为,十里墩组上段的物源具多元性,包括华北板块南缘、祁连造山带东段以及西秦岭北缘构造带,且华北板块南缘古老基底为其主要物源.据沉积相、岩相古地理以及区域构造演化分析认为,十里墩组上段沉积于扬子板块俯冲伴随勉略洋收敛所形成的弧后盆地北缘斜坡地带.   相似文献   

5.
扬子板块东北缘的浅变质岩被认为是三叠纪大陆俯冲过程中从扬子板块剥离而来的,其原岩主要为新元古代中期岩浆岩和沉积岩,是理解扬子板块东北缘新元古代构造演化的重要对象。郯庐断裂带张八岭隆起北段夹持于大别造山带和苏鲁造山带之间,出露一套绿片岩相—低角闪岩变火山—沉积序列,即由西冷组变火山岩和北将军组变碎屑岩组成的张八岭群。然而,西冷组与北将军组之间的关系和张八岭群的形成时代都尚存在争议。为此,本文对张八岭群开展了详细的野外地质调查和MC-LA-ICP-MS锆石U-Pb定年工作。锆石U-Pb定年结果显示,西冷组顶部石英角斑岩的原岩时代为723±7 Ma;北将军组底部变粉砂岩的碎屑锆石年龄变化于916~614 Ma之间,与西冷组、肥东杂岩内新元古代岩浆活动时间相一致,暗示它们的物质主要由西冷组和肥东杂岩提供,其中,最年轻碎屑锆石谐和年龄(677±12 Ma)限定了北将军组沉积时代下限。结合野外地质特征和前人张八岭群上覆震旦系盖层沉积初始时间(635 Ma),本文认为北将军组的沉积时限为677~635 Ma,是覆盖于西冷组之上的中新元古代晚期沉积地层。对比研究显示,张八岭群可能是扬子东北缘新元古代中期裂谷火山—沉积岩系的重要组成部分。  相似文献   

6.
鲁西杨庄条带状铁建造特征及锆石年代学研究   总被引:3,自引:0,他引:3  
赖小东  杨晓勇 《岩石学报》2012,28(11):3612-3622
泰山群主要分布于鲁西地区中部,是鲁西花岗-绿岩带的一个重要组成部分。近年来,在沂水县杨庄发现了一定规模的沉积变质铁矿,铁矿层位赋存于柳杭岩组上段的斜长角闪岩段内。本文对杨庄铁矿BIF及侵入地层的岩浆岩进行锆石年代学测定,测定的含磁铁矿斜长角闪岩中锆石U-Pb年龄数据主要集中在2.6Ga附近,确定斜长角闪岩的形成年龄为2615±61Ma;铁矿顶板黑云母石英片岩的形成年龄小于2527±66Ma,该岩段又被晚期混合花岗岩穿插,其锆石年龄测定结果为2469±34Ma,所以推测黑云母石英片岩的形成年龄在2.5Ga附近。据此我们认为鲁西地区的"柳杭岩组"似可近一步解体为新太古的斜长角闪岩段(含磁铁矿建造)和古元古的表壳岩段(以片岩系为主)。混合花岗岩的形成年龄属于古元古代早期,似乎可以填补全球地质演化的静寂期 (2.3~2.5Ga)。以泰山群为代表的变质岩系在地下较深部位出现或者被中晚元古代盖层覆盖,为探讨华北克拉通早期演化和开展华北克拉通BIF型铁矿研究具有重要意义。  相似文献   

7.
As an important part of South China Old Land, the Jiangnan Orogenic Belt plays a significant role in explaining the assembly and the evolution of the Upper Yangtze Block and Cathaysia, as well as the structure and growth mechanism of continental lithosphere in South China.The Lengjiaxi and the Banxi groups are the base strata of the west section of the Jiangnan Orogenic Belt.Thus, the research of geochronology and tectonic evolution of the Lengjiaxi and the Banxi groups is significant.The maximum sedimentary age of the Lengjiaxi Group is ca.862 Ma, and the minimum is ca.822 Ma.The Zhangjiawan Formation, which is situated in the upper part of the Banxi Group is ca.802 Ma.The Lengjiaxi Group and equivalent strata should thus belong to the Neoproterozoic in age.The Jiangnan Orogenic Belt consisting of the Lengjiaxi and the Banxi groups as important constituents is not a Greenville Orogen Belt(1.3 Ga–1.0 Ga).The Jiangnan Orogenic Belt is a recyclic orogenic belt, and the prototype basin is a foreland basin with materials derived from the southwest and the sediments belong to the active continental sedimentation.By combining large amounts of dating data of the Lengjiaxi and the Banxi groups as well as equivalent strata, the evolutionary model of the western section of the Jiangnan Orogenic Belt is established as follows: Before 862 Ma, the South China Ocean was subducted beneath the Upper Yangtze Block, while a continental island arc was formed on the side near the Upper Yangtze Block.The South China Ocean was not closed in this period.From 862 Ma to 822 Ma, the Upper Yangtze Block was collided with Cathaysia; and sediments began to be deposited in the foreland basin between the two blocks.The Lengjiaxi Group and equivalent strata were thus formed and the materials might be derived from the recyclic orogenic belt.From 822 Ma to 802 Ma, Cathaysia continued pushing to the Upper Yangtze Block, experienced the Jinning-Sibao Movement(Wuling Movement); as result, the folded basement of the Jiangnan Orogenic Belt was formed.After 802 Ma, Cathaysia and the Upper Yangtze Block were separated from each other, the Nanhua rift basin was formed and began to receive the sediments of the Banxi Group and equivalent strata.These large amounts of dating data and research results also indicate that before the collision of the Upper Yangtze Block with Cathaysia, materials of the continental crust became less and less from the southwest to the east in the Jiangnan Orogeneic Belt; only island arc and neomagmatic arc were developed in the eastern section.Ocean-continent subduction or continent-continent subduction took place in the western and southern sections, while intra-oceanic subduction occurred in the eastern section.Comprehensive analyses on U-Pb ages and Hf model ages of zircons, the main provenance of the Lengjiaxi Group is Cathaysia.  相似文献   

8.
云南哀牢山地区构造岩石地层单元及其构造演化   总被引:28,自引:5,他引:28  
依据新获得的同位素年代学资料和构造岩石地层单元,重新认识了云南哀牢山造山带形成与演化历史。认为:在哀牢山地区元古界深变质岩系属基底构造层;前造山期岩石组合及构造演化为扬子地块西缘被动大陆边缘志留纪深水相碎屑岩→陆缘泥盆纪被动裂谷盆地中火山-沉积岩→石炭纪哀牢山有限洋盆及蛇绿岩石组合→晚二叠世-早三叠世哀牢山洋-陆碰撞成陆及弧火山岩-陆相碎屑岩组合。燕山期主造山期及岩石组合为晚三叠世-侏罗纪前陆盆地磨拉石建造-同造山期中酸性侵入岩-燕山期脆韧性剪切带及构造岩。喜马拉雅山期陆内造山成原的岩石组合为第三-第四纪陆内山间盆地中磨拉石建造-红河韧性剪切带及构造岩-富碱侵入岩和煌斑岩。  相似文献   

9.
以四川和云南晚二叠世-早三叠世形成的峨嵋山玄武岩和同期形成的龙门山、墨江辉绿玢岩为主要研究对象,结合与勉略、三江蛇绿岩套内的玄武岩的对比,从岩石的化学成分、稀土元素和微量元素的含量和特征比值分析,提出晚古生代扬子陆块西缘的基性岩浆活动经历了由特提斯洋壳俯冲诱发陆块内玄武岩浆的发生、洋壳消减和陆块内大规模玄武岩浆喷发及局部小规模岩浆活动的萎缩消亡3个发展演化阶段.扬子陆块内玄武岩浆主要来源于正常或富集型地幔,在发生和萎缩阶段部分岩浆源自亏损型地幔.扬子陆块西缘晚古生代时期的基性岩浆活动是全球岩石圈构造活动的局域表现,与特提斯洋的俯冲-封闭有直接联系.  相似文献   

10.
采用LA-ICP-MS方法,对四川盆地南部会理地区古近纪雷打树组碎屑锆石进行了U-Th-Pb同位素测定,获得了72组单颗粒锆石的U-Pb年龄,建立了碎屑锆石的U-Pb年龄谱。结果表明,雷打树组碎屑锆石U-Pb年龄区间为2465~204Ma,地质时代为古元古代最早期成铁纪至晚三叠世最晚期瑞替阶,年龄分布具有清晰的幕式分布特征,集中分布于5个区间,出现了5个明显的峰值,物源区主要为扬子陆块西缘及其西侧的“三江”造山带。雷打树组碎屑锆石U-Pb年龄谱显示,扬子陆块西缘经历了古元古代陆壳增生、中元古代Rodinia超大陆汇聚、新元古代晚期Rodinia超大陆裂解、二叠纪玄武岩喷溢及中-晚三叠世印支运动5次重要的构造热事件,与扬子陆块西缘形成演化进程完全吻合。与四川盆地古近纪柳嘉组碎屑锆石的U-Pb年龄谱相比,雷打树组碎屑锆石U-Pb年龄谱缺失侏罗纪、白垩纪信号,增加了早奥陶世和早泥盆世信号,说明四川盆地北部与南部的物源存在一定的区别。碎屑锆石U-Pb年龄谱对比结果显示,雷打树组碎屑锆石U-Pb年龄谱具有较高的精确度,扬子陆块与华夏陆块自1000Ma汇聚以来具有很好的亲缘性,而与华北克拉通之间直至400Ma才开始建立亲缘关系。  相似文献   

11.
《China Geology》2021,4(4):616-629
The Mesoproterozoic Dongchuan Group that is widely exposed in Yimen area, central Yunnan Province is a series of sedimentary sort of low-grade metamorphic rocks interbedded with volcanic rocks, which are closely related to the early tectonic evolution of the Earth. However, its formation era, sedimentary filling sequence, and geotectonic characteristics have always been in dispute. In this study, several rhyolitic tuffaceous slate interlayers with a centimeter-level thickness were found in the previously determined Heishan Formation of the Dongchuan Group located to the western part of Yimen-Luoci fault zone. This paper focuses on the study of the rhyolitic tuffaceous slate in Qifulangqing Village, Tongchang Township, Yimen County. LA-ICP-MS zircon dating was conducted, achieving the crystallization age of magma of 2491 ± 15 Ma and the metamorphic ages of about 2.3 Ga, 2.0 Ga, and 1.8 Ga for the first time. Meanwhile, according to in-situ Hf isotope analysis, the zircon εHf(t) values were determined to range from −3.0 to 7.6, with an average of 2.7. Furthermore, the first-stage Hf model age (TDM1) was determined to be 2513−2916 Ma, indicating that the provenance of the rhyolitic tuffaceous slate is the depleted mantle or juvenile crust between the Middle Mesoarchean and the Late Neoarchean. Therefore, it is believed that the strata of the slate were deposited in the Late Neoarchean, instead of the Mesoproterozoic as determined by previous researchers. Accordingly, it is not appropriate to group the strata into the Mesoproterozoic Dongchuan Group. Instead, they should be classified as the Maolu Formation of the Neoarchean Puduhe Group given the lithologic association and regional information. Furthermore, the magma ages of 2491 ± 15 Ma are highly consistent with the eras of the large-scale Late Neoarchean orogenic magmatic activities on the northern margin of the Yangtze Craton, and thus reflect the orogenic process consisting of subduction and collision from Late Neoarchean to Early Paleoproterozoic. The magmatic activities during this period were possibly caused by the convergence of the supercontinent Kenorland. Meanwhile, the metamorphic ages of 2.3 Ga, 2.0 Ga, and 1.8 Ga are highly consistent with three metamorphic ages of 2.36 Ga, 1.95 Ga, and 1.85 Ga of the northern margin of the Yangtze Craton, indicating that the strata experienced Paleoproterozoic tectonic-thermal events. The study area is located on the eastern margin of Qinghai-Tibet Plateau, and thus was possibly re-transformed by magmatism subjected to the subduction of the Meso-Tethys Ocean during the Early Cretaceous. The discoveries made in this study will provide strong petrological and chronological evidence for analyzing the early crustal evolution of the Yangtze block.©2021 China Geology Editorial Office.  相似文献   

12.
皖东南黄片麻岩的锆石U—Pb年龄   总被引:22,自引:2,他引:22  
在皖东嘉山南黄地区新元古代张八岭岩群之下,隐伏一套角闪岩相的TTG质片麻岩类。单颗锆石U-Pb法年龄测定得到其不一致线上交点年龄为2493±19Ma,代表了片麻岩原岩的形成年龄。这是扬子陆块北东缘首次发现的新太古代基底,证实扬子陆块北缘存在较广泛的新太古代—古元古代基底。  相似文献   

13.
碧口地块北缘下中泥盆统踏坡组的物源长期被认为来自碧口地块新元古界基底——碧口岩群,但一直缺少碎屑锆石物源数据的支持。本文对略阳地区泥盆系踏坡组不同层位的3个碎屑岩样品开展了系统的岩石学、锆石岩相学及其U-Pb定年和微量元素组成研究。锆石晶体特征对比分析显示,研究样品存在两种类型的锆石:普遍发育变质增生边的碎屑锆石(剖面北段样品)和不发育变质增生边的典型岩浆成因的碎屑锆石(剖面南、中段样品)。前者显示2个年龄峰值(~2.5 Ga主峰、~2.0 Ga次峰),还形成了2473±24 Ma的上交点年龄和359±84 Ma的下交点年龄,而后者两个样品有着一致的年龄峰值(~2.0 Ga主峰、~2.5 Ga次峰和~1.39 Ga微小峰值)。3个样品的谐和年龄均大于1.3 Ga,并不能限定踏坡组的沉积时代,且均不支持其物源主要来自碧口岩群的传统认识。碎屑锆石地球化学判别图解指示它们的源岩主要为形成于造山带环境中的花岗岩类(花岗闪长岩和英云闪长岩)、基性岩和钾镁煌斑岩。基于样品中的岩屑类型,结合区域地质、古流向、锆石年龄对比和源岩判别,认为踏坡组的原始物源来自位于扬子板块北缘的太古宙—古元古代基底(鱼洞子杂岩和崆岭杂岩),并且鱼洞子杂岩在踏坡组沉积后期曾大面积出露/抬升。同时表明碧口地块可能至少在早中泥盆世就与扬子板块拼合在一起了。  相似文献   

14.
为了限定扬子板块北缘地区新元古代岩浆活动事件的准确时间及和探讨岩石成因,本文对出露于四川省南江县光雾山钾长花岗岩进行了LA-ICP-MS锆石U-Pb定年和岩石地球化学研究。结果表明光雾山地区钾长花岗岩锆石U-Pb年龄为836.3Ma±8.3Ma,属于新元古代花岗岩。岩石具有高w(SiO2)(72.68%~78.10%),w(K2O)(4.26%~5.32%),w(Na2O)(1.68%~3.38%),相对富钾(K2O/Na2O=1.12~2.54),高碱(w(Na2O+K2O)=7.64%~8.99%),低P2O5含量等特征,铝饱和指数A/CNK=0.99~1.49,光雾山花岗岩属于过铝质高钾钙碱性花岗岩。岩石具有轻稀土元素相对富集,重稀土元素亏损的特征,具有明显Eu负异常,δEu为0.48~0.73。光雾山花岗岩微量元素表现出Rb,Th,K,Nd,Sm元素富集,Ba,Nb,Ta,Sr,P,Ti元素亏损的特点。地球化学研究表明,光雾山钾长花岗岩主要以粘土岩部分熔融为主及少部分含粘土的变质杂砂岩部分熔融形成的。岩浆可能来源于本区结晶基底新太古界-古元古界后河岩群和褶皱基底中-新元古界火地亚群中深变质岩为代表的地壳物质的部分熔融产物,为壳源成因类型,具有岛弧型花岗岩特征,形成于岛弧构造环境。光雾山钾长花岗岩的形成是新元古界时期扬子板块与华北板块之间的俯冲碰撞、岛弧形成构造演化过程中使区域地壳不断加厚和地壳深融作用的响应。扬子陆块北缘南江地区约836Ma同碰撞岛弧型钾长花岗岩的发现,表明该地区在约836Ma时为Rodinia超大陆汇聚形成阶段,此时期该区Rodinia超大陆尚未进入大陆裂解阶段。  相似文献   

15.
通过对川东南地区小河坝组砂岩的碎屑组分、岩屑类型、重矿物组合、地球化学(稀土元素、微量元素)及古流向的研究,分析了小河坝组砂岩的物源方向、母岩类型及源区的构造背景。结果显示:源区为盆地东边江南-雪峰山隆起西侧上元古界板板溪群及其侵入板溪群中的基性岩体、中基性喷出岩体。具有活动大陆边缘、大陆岛弧及被动大陆边缘的构造背景。地球化学研究进一步证明,母岩主要为更老的沉积岩再旋回沉积物及少量岩浆岩。在早志留世小河坝期以华南板块缓慢向扬子板块蠕动方式相拼接,致使扬子板块整体缓慢抬升,同时沉积中心不断向西北方向迁移,造成研究区具有明显沉积旋回性的物源供给特征。  相似文献   

16.
韩庆森  彭松柏  焦淑娟 《地球科学》2020,45(6):1986-1998
首次报道了扬子克拉通黄陵穹隆北部崆岭杂岩古元古代水月寺混杂岩带中发现特征性石榴石-蓝晶石-硬绿泥石组合低温-高压(LT-HP)榴辉岩相变泥质岩,其变质峰期矿物组合为石榴石+蓝晶石+硬绿泥石+多硅白云母+金红石+石英.相平衡模拟计算得到一条近等温减压的顺时针型变质P-T轨迹,其峰期变质条件为571~576℃,19.2~21.8 kbar.LA-ICP-MS锆石U-Pb年代学研究获得变泥质岩中碎屑锆石核部年龄集中于2.1~2.2 Ga,变质增生边年龄为1 991±20 Ma.Grt-Ky-Cld组合榴辉岩相变泥质岩原岩形成构造环境和变质峰期条件指示,其形成于较低地温梯度(dT/dP≈300℃/GPa)下的活动大陆边缘冷俯冲构造环境,进一步表明至少从古元古代开始具有“冷俯冲”构造特征的现代板块构造体制已经启动.   相似文献   

17.
《Precambrian Research》2005,136(2):177-202
A recently proposed model for the evolution of the North China Craton envisages discrete Eastern and Western Blocks that developed independently during the Archean and collided along the Trans-North China Orogen during a Paleoproterozoic orogenic event. This model has been further refined and modified by new structural, petrological and geochronological data obtained over the past few years. These new data indicate that the Western Block formed by amalgamation of the Ordos Block in the south and the Yinshan Block in the north along the east-west-trending Khondalite Belt some time before the collision of the Western and Eastern Blocks. The data also suggest that the Eastern Block underwent Paleoproterozoic rifting along its eastern continental margin in the period 2.2–1.9 Ga, and was accompanied by deposition of the Fenzishan and Jingshan Groups in Eastern Shandong, South and North Liaohe Groups in Liaoning, Laoling and Ji’an Groups in Southern Jilin, and possibly the Macheonayeong Group in North Korea. The final closure of this rift system at ∼1.9 Ga led to the formation of the Jiao-Liao-Ji Belt. In the late Archean to early Paleoproterozoic, the western margin of the Eastern Block faced a major ocean, and the east-dipping subduction beneath the western margin of the Eastern Block led to the formation of magmatic arcs that were subsequently incorporated into the Trans-North China Orogen. Continued subduction resulted in a major continent-continent collision, leading to extensive thrusting and high-pressure metamorphism. The available age data for metamorphism and deformation in the Trans-North China Orogen indicate that this collisional event occurred at about 1.85 Ga ago, resulting in the formation of the Trans-North China Orogen and final amalgamation of the North China Craton.  相似文献   

18.
滇东南屏边地区的基底组成一直是个谜。该区域的构造属性对约束扬子地块和华夏地块的西段界线非常重要。本文 对出露于该地区的震旦-寒武纪沉积岩进行了碎屑锆石U-Pb-Hf同位素分析。二个样品的锆石U-Pb同位素分析显示这二个 地层中的碎屑物质组成相似,都是以新元古代(700~937 Ma)碎屑物质为主,构成了~815 Ma的主峰。岩石中都含有少量 古-中元古代碎屑物质。屏边群沉积岩样品六个最年轻谐和锆石年龄变化于696~761 Ma,指示屏边形成于新元古代晚期, 与震旦系相当。屏边地区基底变质沉积岩的碎屑锆石年龄谱为一明显富集新元古代年龄的单峰模式,不同于华夏地块和印 支地块的年龄谱,而与扬子地块南缘及扬子西缘的沉积岩相似。Hf同位素特征也显示了与扬子地块(尤其是西缘)的亲缘 关系。结合其他证据,本文认为滇东南屏边地区属于扬子地块,扬子地块与华夏地块分界线的西延部分应该在研究区以南 或东南,而不可能是研究区以北的师宗-弥勒-罗甸断裂。碎屑锆石年龄分布特征还指示屏边群这套浅变质碎屑岩沉积于弧 后盆地,暗示扬子地块西南缘的新元古代俯冲作用可能一直持续到~752 Ma之后。  相似文献   

19.
邱啸飞 《地质学报》2022,96(11):3784-3798
扬子克拉通前泥盆纪地壳演化过程一直是地学界研究的热点。本文报道了扬子克拉通北部武汉地区玉笋山剖面的志留系坟头组和泥盆系云台观组碎屑沉积岩中锆石U- Pb年龄和Hf同位素组成。结果表明,武汉地区坟头组和云台观组样品中最年轻的碎屑锆石年龄分别为430±5 Ma和415±5 Ma,将该地区坟头组和云台观组的沉积时代各限定在中志留世和晚泥盆世。碎屑锆石Hf同位素特点表明,沉积物源区在中太古代、新太古代以及新元古代形成了少量初生地壳,而古老地壳的再造主要发生在新太古代、新元古代和古生代,区域上最显著的初生地壳生长时期则是古元古代。综合对比扬子克拉通北部东、西两侧具有明显不同的锆石U- Pb年龄、微量元素和Hf同位素组成,暗示扬子克拉通可能由多个相对独立地壳演化过程的部分构成,而不具有统一的早前寒武纪基底。  相似文献   

20.
河南信阳地区南湾组地球化学特征及其构造背景   总被引:7,自引:2,他引:7  
越来越多的研究结果表明华北与扬子板块碰撞缝合线位置位于北淮阳构造带内 ,其中 ,信阳地区南湾组构造的归属对确定华北与扬子板块碰撞缝合线位置的意义重大。南湾组的全岩及微量元素地球化学性质均揭示其具有活动陆缘沉积的特征 ;南湾组稀土元素地球化学特征表明其物源区来自上地壳。将南湾组稀土元素各特征值与华北、扬子两板块各圈层稀土元素特征值进行对比 ,发现其与华北板块上地壳的组成相似 ,与扬子板块各圈层的组成差异较大 ,因此可确定南湾组物源区主要为华北板块 ,南湾组是华北板块的组成部分 ,由此推断华北板块与扬子板块的碰撞缝合带位置应位于北淮阳构造带南湾组之南。同时 ,南湾组与邻区地层的地球化学特征对比揭示了信阳地区南湾组、安徽佛子岭群及秦岭地区刘岭群为相同沉积物在不同沉积构造环境的产物  相似文献   

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