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1.
中-新元古代四堡造山运动将扬子地块和华夏地块拼合成一个完整的华南板块。四堡造山运动结束后,位于华南板块东北部的浙北分区沉积了一套新元古代骆家门组地层,其底部以砾岩和砂质砾岩为特色,且以角度不整合直接覆盖于四堡造山单元双溪坞群之上。骆家门组地层的精确沉积时限对了解四堡造山结束后华南板块新一轮沉积盆地的形成和发展具有重要意义。本文对采自浙北富阳地区骆家门组底和顶部的两件沉凝灰岩样品进行SIMS锆石U-Pb定年工作,并据此分析骆家门组的起始沉积时间略早于845Ma,终止沉积时间略晚于830Ma。综合前人研究,我们认为浙北分区保存了华南板块新一轮沉积盆地(南华盆地)的早期沉积活动信息,骆家门组的初始沉积时限指示了南华盆地的开启时间略早于845Ma。  相似文献   

2.
赣中周潭群副变质岩碎屑锆石U-Pb年代学   总被引:5,自引:3,他引:2  
对赣中周潭群副变质岩中的碎屑锆石开展了LA-ICP-MS U-Pb定年工作,两个石榴黑云母片岩和一个黑云母片岩三个样品中碎屑锆石给出的最年轻的年龄峰值分别为834±11Ma、830±11Ma和809±15Ma.这些碎屑锆石具有与江南造山带内冷家溪群及其相当地层类似的年龄谱型式和相近的最年轻的年龄峰值,表明周潭群应与它们有相似的形成历史和源区,产生于相似的构造环境.因此,周潭群在新元古代扬子地块与华夏地块拼接的过程中,应与冷家溪群、双桥山群等地层一样靠近扬子一侧,而不应属华夏地块.从黑云母片岩部分碎屑锆石的变质边获取的年龄分别为444±11Ma和438±11Ma,表明周潭群地层的变质作用发生在加里东期,与华夏地块其他地区的角闪岩相变质岩的变质年龄一致.相反,与周潭群同期的双桥山群、冷家溪群等地层均未达到角闪岩相变质.这表明,在扬子和华夏地块新元古代的拼接之后,二块体在(现在的)赣中地区又裂开,从而导致了周潭群和相邻的冷家溪群及双桥山群在加里东时期有不同的变质响应.  相似文献   

3.
库鲁克塔格位于南天山和塔里木盆地接合部,保留相对较完整的地层记录。新元古代贝义西组主要为一套火山-沉积组合序列,育肯沟组为浊流成因的砂岩和粉砂岩组合。对取自两个地层的沉积岩样品,分别进行了碎屑锆石LA-ICP-MS U-Pb测年,并分别获得了93组和71组U-Pb有效年龄。其中贝义西组锆石U-Pb年龄主峰值为821Ma、次峰值为861Ma的碎屑锆石(761~847Ma)具有显著优势,育肯沟组年龄值为768Ma(次峰值为800Ma和741Ma)的碎屑锆石比较集中,说明库鲁克塔格地区在741Ma、768Ma、800Ma、821Ma和861Ma有大规模的岩浆活动。10个太古代碎屑锆石年龄以及综合已有的研究成果,确认库鲁克塔格存在中-新太古代基底。贝义西组砂岩主要源自761~847Ma、851~972Ma和1808~2498Ma岩石。育肯沟组主要来自734~845Ma、858~963Ma和1708~2486Ma的岩石。  相似文献   

4.
The Neoproterozoic Tonian strata(ca.870-725 Ma)in the western Jiangnan Orogen archive the records of sedimentary provenance and tectonic setting which can be used to understand the geological evolution of the South China Continent.These strata are separated into the basement and cover sequences by a regional angular unconformity.The basement sequence can be subdivided into the lower and the upper parts by the widespread interbedded ca.840 Ma basalt with pillow structure.In the present work,234 concordant detrital zircon analyses are obtained from three Tonian sandstone samples in the Fanjingshan district,Guizhou Province.Combined with previous results,a total of 1736 analyses of detrital zircon U-Pb ages derived from 12 formations of Tonian strata in the western Jiangnan Orogen are used to decipher the integrated sedimentary and tectonic histories.The zircons from the lowermost part of the basement sequence(the Yujiagou Formation)show oval morphology and display two Paleoproterozoic age peaks at 2325 Ma and 1845 Ma which are similar with the detrital zircon age peaks from the Late Paleoproterozoic to Early Mesoproterozoic Dongchuan/Dahongshan/Hekou groups,suggesting a passive margin basin in which the sediments were mainly sourced from the southwestern Yangtze Block.However,the zircon age population of the lower part of the basement sequence(the Xiaojiahe,Huixiangping formations and their equivalents)indicates the sedimentary derivation from bidirectional sources(the ca.870 Ma arc materials in the south and the old detritus from the southwestern Yangtze Block)which is consistent with a back arc setting for the deposition of the sediments.Zircons from the upper part of the basement sequence(the Duyantang Formation and its equivalent)show euhedral and subangular morphology and display a unimodal age peak at ca.835 Ma.This sequence was possibly deposited in a convergent setting and the detritus were came from the locally distributed syn-collisional igneous rocks.The lower part of the cover sequence(the Xinzhai and Wuye formations and their equivalents)shows a distinct zircon age peak at 815—809 Ma and two subordinate peaks at 2485 Ma and 2018 Ma,suggesting that the basin had gradually transformed into a continental rift basin and received the detritus from the ca.815 Ma post-collisional magmatic rocks as well as from different Paleoproterozoic source rocks in the northern Yangtze Block.We propose a tectonic evolution model that envisages eruption of ca.840 Ma basalt in a back arc basin that existed during ca.870-835 Ma,an angular unconformity was formed during amalgamation of the Yangtze Block and the Cathaysia Block at ca.835-820 Ma and the rifting of the South China Continent was initiated at ca.800 Ma.Our study concludes that the South China Continent was formed on the periphery of the Rodinia supercontinent.  相似文献   

5.
四堡群为一套出露于桂北黔东南地区、变形强烈的浅变质、陆源碎屑岩火山岩、系,厚度大于5000 m,其下未见底,上被丹洲群(下江群相当地层)所覆盖。桂北四堡群自下而上划分为九小组、文通组和鱼西组3组。样品A20140731-3采自于文通组,岩性为灰绿色熔结火山岩,首次分选出600余粒岩浆型锆石,完成SHRIMP U-Pb定年测点15个,获得加权平均年龄(860±13)Ma。这表明四堡群主体属于新元古界,进而分析、讨论了江南造山带主要地层对比关系。  相似文献   

6.
梵净山群沉积地质特征与原型盆地分析   总被引:1,自引:0,他引:1  
梵净山群出露于江南造山带西北端,为一套浅变质火山、碎屑岩系,其上亚群主要由深海、半深海浊积岩系组成,自下而上划分为铜厂组、洼溪组和独岩塘组。铜厂组主体由浊积扇相和盆地相组成,洼溪组则主要由浊积扇扇中、扇根亚相组成。进一步的沉积相序研究揭示,自回香坪组至铜厂组、洼溪组,沉积环境总体呈一先海进、后海退的沉积旋回,显示裂陷扩张过程。铜厂组和洼溪组浊流成因的小型斜层理位态研究揭示,前积层优选方位指向北、北东,证实沉积物来自其南,向北扩散。浊积砂岩骨架颗粒统计结果表明,石英含量占23%~34%,且主要为单晶石英,而长石含量占14%~23%,岩屑含量占39%~50%,岩屑以火山岩屑为主。骨架颗粒统计图解揭示其物源为岩浆弧。基于上述,并结合回香坪组火山岩大地构造属性研究,提出并确定梵净山群上部碎屑岩系的原型盆地形成于弧后裂陷,板块构造环境为初始边缘海。  相似文献   

7.
造山带内与板块俯冲-碰撞过程相关的一系列沉积盆地对于重建造山带演化历史具有重要意义。本文以党河南山-木里地区早古生代火山-沉积岩系为研究对象,对其开展沉积序列、锆石U-Pb年代学、Hf同位素及碎屑物源综合分析,研究结果表明:(1)该火山-沉积岩系从底部吾力沟组到中部盐池湾组,整体上表现为弧后盆地的演化特征,顶部多索曲组具有向前陆盆地演化的特征;(2)获得吾力沟组玄武安山岩锆石U-Pb年龄为472±10Ma,限定盐池湾组和多索曲组沉积时代分别为467~450Ma和450~440Ma;(3)盐池湾组碎屑锆石年龄谱系和锆石ε;(t)组成说明盐池湾组碎屑物质主要来源于中祁连岩浆弧;而多索曲组的早古生代碎屑物质主要来源于伴生的火山岩或南祁连花岗岩,前寒武纪碎屑物质主要来自于中祁连。综合分析与汇聚板块边缘相关的沉积盆地特征和前人研究资料,本文认为党河南山-木里地区的早古生代火山-沉积岩系可能形成于弧后盆地及其闭合过程的前陆盆地环境。  相似文献   

8.
The origin, age and evolution of the Precambrian metamorphic basement of southern China provide useful insights into early crustal development. Here, we present new laser ablation–inductively coupled plasma–mass spectrometry(LA–ICP–MS) U–Pb age data for detrital zircons from five samples of the Precambrian metamorphic basement of the Xiangshan uranium orefield. Two of these samples, from the northern Xiangshan volcanic basin, yielded a total of 140 U–Pb ages that cluster within the Neoproterozoic(773–963 Ma; 79.3% of data points), with the rest being scattered through the Paleoproterozoic and Mesoproterozoic, along with a single Archean age. These ages indicate that this basement material is associated with the Cathaysia Block. In comparison, the 172 concordant ages from the other three samples from the southern part of the Xiangshan volcanic basin cluster within the Neoproterozoic(767–944 Ma; 59.8%) as well as the Proterozoic(37.8%) and the Archean(2502–2712 Ma; 14.5%). These samples are also free of zircons with Grenvillian ages, indicating that these units are associated with the southeastern Yangtze Block. Combining these data with the geochemistry of these units, which suggests that the metamorphosed sedimentary rocks within the northern and southern parts of the Xiangshan basin have a common component from a magmatic island arc that formed during the early Neoproterozoic, we infer that the basin was located along the boundary between the Cathaysian and Yangtze blocks. In addition, the zircons within the samples from the southern and northern parts of the Xiangshan basin show different pre-Neoproterozoic(963 Ma) age populations but similar postNeoproterozoic zircon populations, indicating that the amalgamation of the Cathaysian and Yangtze blocks occurred after the Neoproterozoic(960 Ma), with magmatism peaking at 830 Ma and rifting starting at ~770 Ma, leading to the subsequent deposition(from bottom to top) of the Shenshan, Kuli, and Shangshi formations.  相似文献   

9.
赣东北万年地区万年群的建立及其意义   总被引:6,自引:0,他引:6  
万年群是发育在江南复合混杂岩带中之赣东北进贤——万年地区的一套中元古代蓟县纪浅变质岩系。据其岩性组合、沉积环境等特征自下而上进一步划分为枫树岭组、牛头岭组、皮库组和程源组,岩石地球化学特征反映其大地构造环境为大陆岛弧——弧后盆地,其层位与弧后盆地之双桥山群安乐林组、修水组,溪口岩群,火山岛弧的双溪坞群和弧间盆地的张村群相当。但岩性组合差异甚大,属同时异相的产物。万年群的建立为华南中元古代地层的划分对比提供了新的思路。  相似文献   

10.
大兴安岭北部漠河盆地额木尔河群自下而上由绣峰组、二十二站组、漠河组和开库康组组成, 目前对额木尔河群形成时代还存在不同的认识。绣峰组含砾粗砂岩及二十二站组碎屑岩中流纹质凝灰岩夹层激光探针(LA-ICP-MS)锆石U-Pb测年结果表明, 绣峰组含砾粗砂岩中的碎屑锆石U-Pb年龄变化于距今2195~163 Ma之间, 暗示了源区有古元古代基底存在, 这一年龄数据与盆地周缘分布的基底岩石时代相吻合。碎屑锆石中5个最年轻锆石的206Pb/238U年龄加权平均值为167±2 Ma, 反映绣峰组沉积下限为中侏罗世中期; 二十二站组流纹质凝灰岩岩浆锆石206Pb/238U年龄加权平均值为148±2 Ma, 由此限定二十二站组形成时代为晚侏罗世晚期。锆石U-Pb年龄数据反映额木尔河群沉积时间为中-晚侏罗世, 这一认识对恢复漠河盆地形成演化历史及油气资源勘查提供了新的证据。   相似文献   

11.
皖赣相邻地区位于江南造山带东段北缘,双桥山群为区内广泛分布的一套厚度巨大低绿片岩相变质的以泥砂质细碎屑岩为主含少量火山岩的复理石建造。综合岩石组合及沉积构造分析,其可能为一套形成于大陆边缘岛弧构造背景下的陆棚斜坡-滨浅海相火山-陆缘碎屑岩建造组合体,具体可划分出次深海-陆棚边缘斜坡相、浅海陆棚相、陆棚斜坡相、陆棚斜坡相-陆棚相4个阶段的沉积相,显示该时期海盆演化已处于萎缩闭合阶段。横涌组和安乐林组中近源间断不完整“鲍马序列”,主要为浊流和部分砂质碎屑流成因,分别形成于古华南洋新元古代陆缘俯冲作用下有限俯冲过程中和俯冲之后洋盆狭缩海退环境;从火山作用随沉积作用协同演化角度对沉积作用与大地构造的关系分析来看,源于洋壳俯冲作用的火山活动可能始于研究区南西。研究结果从沉积地层学角度,为新元古代皖赣相邻地区大地构造演化提供了重要证据。  相似文献   

12.
湖南冷家溪群划分及同位素年龄约束   总被引:4,自引:0,他引:4  
依据区域岩石组合特征,参照岩石地层的划分原则,对冷家溪群进行重新划分:下部为海相深水盆地沉积细碎屑岩系,划分出易家桥组、潘家冲组、雷神庙组;上部为盆地斜坡相浊流(扇)沉积粗碎屑岩系,分为黄浒洞组、小木坪组、大药菇组。在冷家溪群各岩组中的凝灰岩夹层内取得一批新的SHRIMP锆石U-Pb测年数据,对其沉积时代归属提供了新的约束。锆石SHRIMP年龄数据表明其沉积时限介于820~>862 Ma之间,时代属于新元古代早期。  相似文献   

13.
黑龙江西部龙江地区位于中亚造山带东段,黑河-贺根山缝合带与西拉木伦缝合带之间,地层记录了两大古板块之间古亚洲洋闭合过程的信息。本文对龙江地区乐平统林西组和下-中三叠统老龙头组的砂岩样品进行碎屑重矿物和碎屑锆石U-Pb同位素年代学研究。碎屑重矿物组合以锆石+磷灰石+金红石+角闪石+绿帘石+重晶石的组合为特征,表明物源主要来自于中酸性岩浆岩,并有少量变质岩及沉积岩组分。林西组样品最年轻的锆石年龄为278±3Ma,老龙头组样品最年轻的锆石年龄为247±3Ma、243±4Ma及237±3Ma,结合前人的研究,限定了林西组沉积于乐平世,老龙头组沉积于早三叠世-中三叠世。碎屑锆石年龄谱明显分为五组:237~258Ma、270~329Ma、357~558Ma、680~1633Ma及1893~1966Ma。其中237~258Ma的碎屑锆石主要来自与古亚洲洋洋壳消亡前的俯冲增生过程相关的火山活动,270~329Ma的碎屑锆石主要来自大石寨组火山岩及其同期侵入岩,357~558Ma的碎屑锆石来自早古生代-晚古生代早期岩浆弧,680~1633Ma的碎屑锆石可能来自兴安及额尔古纳地块的变质基底,而较古老的~1800Ma的锆石年龄暗示了华北克拉通基底的物源信息。通过研究发现林西组及老龙头组样品前30%年轻的碎屑锆石年龄与地层沉积年龄之差都小于100Ma,结合对砂岩碎屑组成、重矿物组合及盆地与火山弧位置关系的研究,认为研究区乐平世-中三叠世沉积盆地具有汇聚背景,为弧前盆地。  相似文献   

14.
最新地质调查与研究表明,赣东北江南次级盆地新元古界南华系是一套沉积超覆于基底变质岩系之上的裂谷系“楔状地层”。桃源组陆相火山岩及火山碎屑岩是该“楔状地层”的最低层位,代表了南华裂谷系江南次级盆地新一轮沉积旋回的起点。取自桃源组流纹岩样品的结晶锆石SHRIMP U Pb同位素年龄为803±9 Ma,这一年龄值基本上代表了该次级盆地新元古代盆地的开启时间。沉积相研究表明,江南次级盆地沉积作用主要由四个沉积相组合构成:(1)陆相火山岩组合;(2)冲洪积相及河湖相组合;(3)滨浅海-次深海相组合;(4)冰碛岩相组合。与扬子东南缘其它次级盆地相比,江南次级盆地沉积作用以陆相为主,但两者的剖面沉积演化序列非常相似,都经历了一个由陆相至海相的沉积超覆演化过程,代表了新元古代南华期华南古大陆解体之后扬子地块东南缘典型的裂谷盆地演化特征。  相似文献   

15.
Ordovician quartz turbidites of the Lachlan Fold Belt in southeastern Australia accumulated in a marginal sea and overlapped an adjoining island arc (Molong volcanic province) developed adjacent to eastern Gondwana. The turbidite succession in the Shoalhaven River Gorge, in the southern highlands of New South Wales, has abundant outcrop and graptolite sites. The succession consists of, from the base up, a unit of mainly thick‐bedded turbidites (undifferentiated Adaminaby Group), a unit with conspicuous bedded chert (Numeralla Chert), a unit with common thin‐bedded turbidites (Bumballa Formation (new name)) and a unit of black shale (Warbisco Shale). Coarse to very coarse sandstone in the Bumballa Formation is rich in quartz and similar to sandstone in the undifferentiated Adaminaby Group. Detrital zircons from sandstone in the Bumballa Formation, and from sandstone at a similar stratigraphic level from the upper Adaminaby Group of the Genoa River area in eastern Victoria, include grains as young as 453–473 Ma, slightly older than the stratigraphic ages.The dominant detrital ages are in the interval 500–700 Ma (Pacific Gondwana component) with a lessor concentration of Grenville ages (1000–1300 Ma). This pattern resembles other Ordovician sandstones from the Lachlan Fold Belt and also occurs in Triassic sandstones and Quaternary sands from eastern Australia. The Upper Ordovician succession is predominantly fine grained, which reflects reduced clastic inputs from the source in the Middle Cambrian to earliest Ordovician Ross‐Delamerian Fold Belts that developed along the eastern active margin of Gondwana. Development of subduction zones in the Late Ordovician marginal sea are considered to be mainly responsible for the diversion of sediment and the resulting reduction in the supply of terrigenous sand to the island arc and eastern part of the marginal sea.  相似文献   

16.
贾啸宇  高福红  修铭  刘国卿 《地球科学》2021,46(7):2379-2390
为揭示孙吴-嘉荫盆地晚白垩世富饶组和太平林场组的物源特征及其构造背景,对两组样品进行了碎屑锆石LA-ICP-MS U-Pb定年和地球化学特征研究.富饶组碎屑锆石55个测点产生以下年龄峰值:65 Ma、280 Ma和496 Ma,太平林场组碎屑锆石78个测点产生以下年龄峰值:98 Ma,189 Ma,240 Ma和488 Ma,表明富饶组和太平林场组具有混合物源的特征.Al2O3/TiO2平均值分别为41.42和29.31,结合主量、微量及稀土元素特征和碎屑锆石峰值年龄,确定富饶组和太平林场组物源主要为晚中生代长英质火成岩和沉积岩.地球化学和区域构造演化特征共同揭示富饶组和太平林场组物源区构造背景为活动大陆边缘,区域内晚中生代岩浆事件、佳木斯地块北部麻山群及广泛分布的古生代花岗岩为盆地晚白垩世地层提供了沉积物源.   相似文献   

17.
廖婉琳  肖龙  张雷  王国灿 《地球科学》2015,40(3):485-503
沉积物的地球化学和碎屑锆石特征在沉积岩物源分析及构造背景的研究中具有较为重要的作用.对克拉玛依后山地区早石炭世包古图组和太勒古拉组碎屑岩样品(共42个)进行了岩石学和地球化学研究,结果显示,这套碎屑岩的主量元素SiO2含量为54.64%~73.14%,Al2O3含量相对较高(11.89%~19.36%),(TFe2O3+MgO)含量比较高(3.97%~9.99%),反映岩石化学成熟度偏低.岩石稀土元素含量变化较大,在83×10-6~252×10-6之间变化,无Ce异常,Eu呈微弱负异常,具有低的∑REE等特征,与大洋岛弧型砂岩相似.采自这2个组的碎屑锆石U-Pb定年结果表明,包古图组有340 Ma和440 Ma两个主峰值,主要来源于石炭纪、志留纪的源岩;太勒古拉组碎屑锆石主峰值为325 Ma,其年龄与地层年龄很接近,推测其主要来源于同沉积石炭纪岩石.根据主、微量及稀土元素等多个构造环境判别图解的综合分析,结果表明早石炭世包古图组和太勒古拉组沉积物的物源特征及沉积构造背景较为相似,主要为大洋岛弧-大陆岛弧环境下的中酸性火山岩,夹有少量基性火山岩.   相似文献   

18.
对河上镇群底部骆家门组2个凝灰岩样品进行锆石测年,得到的2组SHRIMP 锆石U-Pb年龄分别为824±5Ma和832±6Ma、791±15Ma。同时,对骆家门组底部花岗岩砾石中的锆石进行了测试,获得的SHRIMP 锆石U-Pb年龄为901±9Ma。由此进一步约束了骆家门组的形成时代。骆家门组年龄的标定对于浙江地区神功运动界面上、下地层双溪坞群和河上镇群年龄的完善,进而确定江南造山带的地层格架和地层对比具有重要意义。这些地层年龄和已经获得的角度不整合于骆家门组之下双溪坞群的年龄数据,为神功运动时限的约束和对比提供了重要依据。  相似文献   

19.
通过西澳科庭大学离子探针中心的远程测试,在双桥山群横涌组和安乐林组斑脱岩中获得大量锆石,其SHRIMP U—Pb加权平均年龄为831Ma±5Ma(横涌组)、829Ma+5Ma(安乐林组),在河上镇群上墅组中获得加权平均年龄767Ma±5Ma。锆石SHRIMP U—Pb年龄表明华南地区广为发育的双桥山群应归入新元古界,该年龄为标定双桥山群在地层柱中的位置提供了准确的年代学依据。  相似文献   

20.
通过西澳科庭大学离子探针中心的远程测试,在双桥山群横涌组和安乐林组斑脱岩中获得大量锆石,其SHRIMP U-Pb加权平均年龄为831Ma±5Ma(横涌组)、829Ma±5Ma(安乐林组),在河上镇群上墅组中获得加权平均年龄767Ma±5Ma.锆石SHRIMP U-Pb年龄表明华南地区广为发育的双桥山群应归入新元古界,该年龄为标定双桥山群在地层柱中的位置提供了准确的年代学依据.  相似文献   

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