首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 296 毫秒
1.
本文对湘东湘乡-醴陵地区和湘东南桂阳地区的新元古代浅变质沉积岩进行了岩石地球化学研究和锆石U-Pb定年及锆石Lu-Hf同位素分析。研究显示两个地区的碎屑沉积岩具有相似的中等的成分成熟度,但大的K2O/Na2O变化指示不同沉积岩经历了不同程度的风化淋滤作用。两个地区多数样品的稀土分配模式与澳大利亚后太古代页岩(PAAS)的稀土分配模式相似,但总体具有更高的含量,尤其是重稀土。湘东地区板溪群沉积岩含有更高的相容元素(如Sc, Cr, Ni),说明源区具有更多的中基性组分,而湘东南震旦纪沉积岩主要由再循环物质组成。碎屑锆石U-Pb定年结果表明湘东新元古代沉积岩中含有大量850~800Ma的碎屑锆石,而缺少1000Ma左右的碎屑锆石,显示了与扬子地块的亲缘性。而湘东南新元古代沉积岩中含有丰富的Grenville期和一定数量的~2.5Ga的碎屑锆石,相似于华夏地块物质组成。表明扬子地块和华夏地块在西南地区的分界线很可能就从湘东的湘乡-醴陵地区和湘东南的桂阳地区之间通过。前人对华南早古生代沉积岩中碎屑锆石的年代学研究显示湘东和湘东南地区的早古生代沉积岩的物质组成均相似于华夏地块,指示它们的源区是东南的华夏地块。因此,从新元古代到早古生代,湘东地区的沉积物源区发生了重大改变,暗示在新元古代晚期(震旦纪)与早古生代(中寒武世)之间发生过一次构造运动,使华夏地块逐渐隆起或使湘东-湘西盆地进一步沉陷,从而使湘乡-醴陵地区从早古生代开始接受了来自华夏地块的碎屑物质。这期构造运动可能与泛非构造事件相关。  相似文献   

2.
华夏块体与扬子块体拼合带在广西境内的界线一直没有统一的认识.本文对桂北和桂东两个地区的新元古代—寒武纪浅变质沉积岩开展系统的地球化学、碎屑锆石年代学和Hf同位素学研究,以期为此提供岩石学证据.研究显示桂东大瑶山藤县地区存在南华系—震旦系沉积岩,沉积时代晚于741~622 Ma.这些南华系—震旦系沉积岩的碎屑锆石年龄谱以明显的~1.0Ga年龄峰和~2.5Ga弱峰为特征,相似于桂东广泛分布的寒武系沉积岩以及西华夏南岭-云开地体基底变质岩的锆石年龄谱.桂北龙胜地区新元古代沉积岩具有不同的碎屑锆石年龄谱,以一个~0.80 Ga主峰和两个(~2.0 Ga、~2.5 Ga)弱峰为特征,具有扬子南缘新元古代沉积岩的典型年龄谱.桂北新元古代沉积岩具有低的K2 O/Na2 O、Al2 O3/(Na2 O+CaO)和CIA指数,指示源区风化程度和成分成熟度较低,而桂东地区南华系—震旦系和寒武系沉积岩与之相反,说明源区的风化程度以及成分成熟度较高.主量元素和微量元素特征都表明桂北地区新元古代沉积岩的源区中有更多的镁铁质组分,相似于江南造山带其他地区新元古代沉积岩;而桂东地区南华系—震旦系和寒武系沉积岩的源区有较多长英质组分,相似于华夏南岭—云开地区新元古代沉积岩.结合桂东震旦系沉积岩具有与南岭-云开地体基底岩石相似的碎屑锆石Hf同位素组成,可以确定桂东大瑶山地区属于西华夏地块,而桂北龙胜地区属于扬子地块南缘江南造山带.因此,扬子地块与华夏地块西段的界线最有可能从桂北龙胜地区与桂东大瑶山地区之间通过.  相似文献   

3.
粤西云开地区基底变质岩的组成和形成   总被引:4,自引:3,他引:1  
云开地块被认为是华南西南部一个重要的前寒武纪变质基底出露区,但对其基底组成的认识仍存在较大争议。本文对云开地块内基底变质岩进行了岩石地球化学、锆石U-Pb-Hf同位素分析。分析结果表明云开地块的基底主要由于新元古代-早古生代的变质沉积岩组成。它们具有比上地壳平均成分更高的Si O2和相对更低的Al2O3、Ca O、Na2O,岩石成熟度中等。微量元素与PAAS相似,但Sr、Cr、Ni等强烈亏损,高场强元素Nb、Ta轻度亏损,而大多数样品的Zr、Hf、Th、U等轻度富集,说明源区更富集长英质组分而贫镁铁组分。地球化学特征和碎屑锆石组成指示这套沉积岩形成于被动大陆边缘环境,源区既有古老的再循环物质,也有大量未经明显改造的新元古代岩浆物质。综合本文和前人的锆石U-Pb定年数据,云开地块基底变质岩原岩可以分为两组:第一组样品形成较早(时代上限为850~522Ma),总体年龄谱特征显示出与华夏南岭地区的亲缘性。这组样品的源区主要有4次岩浆作用(2700~2400Ma、1800~1400Ma、1150~900Ma、850~700Ma),均涉及到古老地壳再循环以及新生地壳的加入,但以再循环的物质为主。最主要的新生地壳生长发生在新太古代和Grenville期。而第二组样品的沉积时代在517Ma之后,具有与扬子南缘新元古代沉积岩的相似性。这组亲扬子沉积物的源区具有不同的4次岩浆事件(2600~2350Ma、2000~1750Ma、1700~1500Ma、900~750Ma),新太古代晚期-古元古早期岩浆主要涉及古老基底再循环。古元古晚期-中元古早期岩浆大多起源于新生地壳物质,而新元古代是最重要的新生地壳生长期,同时也涉及大量古老地壳物质的再循环。不同时代沉积岩的碎屑物质组成变化表明大概在522~517Ma之间云开沉积盆地和物源区受到一定程度的构造运动影响,使得源区由华夏地块变成扬子地块。这期构造事件很可能是早古生代造山事件的初始阶段。根据本文资料和其他证据我们认为云开地块归属于华夏板块,扬子与华夏地块的分界线至少在云开地块以北,且很可能在平乐与平南之间。  相似文献   

4.
杨红  刘福来  刘平华  王舫 《岩石学报》2013,29(6):2161-2170
大红山群是扬子地块西南缘出露的古元古代结晶基底,主要经历了绿片岩相-低角闪岩相变质作用.本研究对大红山群老厂河组变质中酸性岩和变质沉积岩——石榴白云母-长石石英片岩中的白云母进行了40Ar-39Ar测年,得到三个样品的坪年龄和40Ar/39Ar等时线年龄结果较统一,坪年龄代表的变质年龄分别为837.7±4.2Ma、839.6±4.2Ma和844.2±4.2Ma.变质沉积岩和变质中酸性岩的变质时代类似,均介于837~845Ma.大红山群变质基性岩中变质锆石的U-Pb定年年龄为849±12Ma(杨红等,2012),40Ar-39Ar测年数据与锆石定年数据相结合,说明大红山群古元古代结晶基底中的火山岩和沉积岩均在新元古代经历了同期变质作用,其主期低角闪岩相变质作用发生于新元古代837~850Ma.结合前人发表的扬子西缘~750Ma的变质年龄,扬子西缘从北向南的区域变质作用时限可扩展到750 ~850Ma.此外,扬子西缘存在750~850Ma的岩浆事件,本文研究结果说明,扬子地块西缘在新元古代不仅发生了大规模岩浆作用,也发生了750~850Ma的区域变质作用,扬子西缘存在新元古代的岩浆-变质事件.岩浆事件与变质事件之间可能存在相关性,即新元古代岩浆作用引起了扬子西缘的区域动力热流变质作用.  相似文献   

5.
系统收集并总结了武当地块与扬子陆核区(崆岭地区)已发表的新元古代沉积岩中碎屑锆石的U-Pb年代学数据,对二者的相互关系进行分析,并讨论了扬子克拉通北缘新元古代时期的构造演化过程及特征。对前人发表的年代学数据进行的统计和对比结果表明,武当地块沉积岩中碎屑锆石年龄谱记录了~710Ma和~2.5Ga的年龄峰值,同时缺乏3.0Ga年龄的锆石,表明其沉积物质来源可能并非扬子陆核区,其在新元古代之前可能作为一个独立的微陆块与扬子陆核区(崆岭地区)分离开来,二者于新元古代中期发生碰撞拼合而成为一个整体。  相似文献   

6.
新元古代-早古生代,Rodinia超大陆裂解至Gondwana大陆聚合的过程对华南构造格局与古地理演化具有重要的制约作用,然而在这过程中华夏地块的位置、华夏与扬子之间的关系等问题仍存在争议。本文通过同位素地层年代学、新元古代冰期事件及成矿事件对比了华夏地块武夷南部-南岭地区及华夏西缘新元古代中-晚期地层。在此基础上,对新元古代沉积物进行碎屑锆石物源分析,发现华夏西缘拉伸纪晚期-埃迪卡拉纪曾出现多次物源方向的转换,并在成冰纪晚期同时出现来自华南内部和外部的双向物源。结合浅海陆棚的沉积环境,表明此时扬子与华夏之间并没有宽阔的大洋相隔。华夏地块拉伸纪晚期-埃迪卡拉纪碎屑岩中包含了大量中元古代至新元古代早期的碎屑锆石,与东冈瓦纳北部印度、东南极等地区的沉积记录吻合,指示华夏地块至少自750 Ma时期就接收到来自印度北缘的碎屑物质。在Rodinia超大陆裂解至Gondwana大陆聚合期间,华南一直保持在超大陆边缘的古地理位置,与印度北缘相连。  相似文献   

7.
出露于扬子地块西南缘的盐边群为一套火山-沉积岩系,其深入研究对探讨扬子西缘新元古代构造环境具有重要意义.本文对盐边群中碎屑沉积岩进行了较系统的岩石学、碎屑物质组成和地球化学研究,并从小坪组和乍古组中各选取了1件变质砂岩样品进行锆石U-Pb年龄和Hf同位素分析.变质砂岩主要由棱角状-次棱角状火山岩岩屑、石英和长石矿物碎屑组成.碎屑沉积岩Al2O3/SiO2值为0.12~0.4,K2O/Na2O值范围为0.14 ~9.45(其中板岩K2O/Na2O值多大于1.0,而变质砂岩中多数样品的K2O/Na2O值小于1.0).所有样品具有轻-中等程度的轻重稀土元素分异((La/Yb)N=1.6 ~9.37),多数样品具有明显的负Eu异常.εNd(t)值范围为-1.77~ +5.01.变质砂岩碎屑锆石U-Pb年龄峰值为900~ 910Ma,同时存在少量太古代-古元古代碎屑锆石.小坪组和乍古组变质砂岩中年轻碎屑锆石206pb/238U年龄加权平均值分别为888±8Ma和884±14Ma.碎屑物质组成、地球化学和锆石U-Pb年龄结果共同表明,盐边群碎屑沉积为近源沉积,物源区主要为岛孤中酸性火山岩和花岗岩.结合关刀山岩体(857Ma)和荒田组玄武岩(880~830Ma)研究结果,进一步限定盐边群的时代为880~830Ma,形成于弧后盆地环境,其沉积物源区为华夏地块向扬子地块俯冲过程中,扬子西南缘形成的火山岛孤.  相似文献   

8.
广西大明山地块寒武系碎屑锆石U Pb年龄及其构造意义   总被引:1,自引:0,他引:1  
邹和平  杜晓东  劳妙姬  丁汝鑫 《地质学报》2014,88(10):1800-1819
大明山地区位处扬子地块与华夏地块结合带的西南段,对该区寒武系碎屑锆石开展U-Pb年龄谱研究可为新元古代—早古生代扬子地块与华夏地块结合带构造属性的进一步确定和对华南大地构造演化的深入研究提供新的依据。本次研究对该区2件寒武纪砂岩样品分选出的碎屑锆石进行了LA-ICPMS U-Pb年代测定和分析。锆石的透射光及阴极发光图像、Th/U比值、稀土元素特征说明其主要为岩浆岩锆石。222个谐和年龄数据显示出5个主要年龄区间:550~560Ma、750~780 Ma、950~1020 Ma、1560~1740Ma和2390~2450Ma,其中以950~1020Ma区间表现为最突出的峰值。对比大明山与大瑶山地区的寒武系碎屑锆石年龄谱系,两者表现出相似的分布特征。最明显的年龄峰值(980Ma)揭示物源区曾是Grenville期造山带的一部分。与扬子地块和华夏地块碎屑锆石年龄谱系进行比较,结合古水流及相关地质证据,认为所研究样品的碎屑锆石主要来自华夏地块。根据现有的资料,我们更倾向于认为寒武纪时扬子—华夏之间可能没有大洋的分割,而是一陆间海(intercontinental sea)格局。本次研究还在大明山寒武系中测得8颗具有太古宙年龄的古老锆石(≥2500Ma,其中1颗≥3200Ma)。这些锆石具振荡环带结构,Th/U比值均≥0.4,稀土分布多具有明显的Ce正异常与Eu负异常,指示其来自岩浆岩,反映物源区在太古宙发生过岩浆作用。结合前人研究获得的华夏地块太古宙锆石年龄信息,认为华夏地块可能存在太古宙地壳基底或接受过古老陆块的物源供给。  相似文献   

9.
柯贤忠  周岱  龙文国  王晶  徐德明  田洋  金巍 《地球科学》2018,43(7):2249-2275
云开地块中生代构造演化是华南地区的研究热点之一.通过对云开地块变质基底中的混合岩、片麻岩(5个样品)和花岗岩(1个样品)开展锆石LA-ICP-MS U-Pb定年,获得440.3±3.3 Ma、230.2±2.9 Ma、230.7±1.3 Ma、459.5±2.7 Ma、431.5±4.3 Ma、229.2±5.4 Ma、229.7±2.7 Ma 7组变质(深熔)或岩浆年龄和2组(样品1432-1和ID7-3)碎屑锆石年龄,碎屑锆石年龄范围均为太古代-新元古代,且具有~1.0 Ga年龄主峰,与天堂山岩群和云开群碎屑锆石年龄谱相似.区域资料表明云开地块天堂山岩群和云开群具有相似的物质组成,均形成于早古生代-新元古代,存在变质程度和物质面貌的差异;在加里东期构造-热事件的基础上,广泛叠加了印支期区域变质(深熔)-构造-流体作用影响.4个样品中(1431-1、1432-1、D116-3和ID7-3)锆石原位Lu-Hf同位素组成显示,加里东期变质和深熔锆石Lu/Hf同位素组成基本一致,应继承了原岩的同位素组成特征.印支期变质和深熔锆石Lu/Hf同位素组成不同,可能主要由变质作用和深熔作用的差异所致.以古-中元古代为主的地壳物质参与了加里东期和印支期变质-深熔作用,在加里东期和印支期深熔作用过程中,均有少量幔源物质的加入,印支期幔源物质的贡献相对显著.   相似文献   

10.
云南新平地区大红山群出露于扬子地块西南缘,主要由低绿片岩相-角闪岩相变质的火山-沉积岩组成。大红山群的岩石成因、年代格架及其形成的构造背景缺乏系统研究,制约了地质学家们全面认识和理解扬子西南缘<~1.75 Ga的构造演化历史。本文以大红山群底部老厂河组变沉积岩及其内部变火山岩夹层为重点研究对象,开展岩相学、全岩地球化学和锆石U-Pb定年等综合研究。岩石地球化学研究结果表明,变沉积岩的化学成分与大陆上地壳沉积物成分接近,原岩为成熟度较高的泥岩/页岩,未经历沉积再循环,形成于被动大陆边缘的构造背景;变火山岩原岩化学成分相当于钙碱性过铝质A型流纹岩,形成于造山后的大陆裂谷拉张环境。锆石U-Pb定年结果显示,老厂河组变沉积岩的碎屑锆石记录了2.3~2.2 Ga和1.9~1.75 Ga两个主年龄峰以及2.7~2.6 Ga次年龄峰。结合前人研究结果,表明大红山群物源主要来源于扬子地块西南缘的太古宙-古元古代基底岩石。变火山岩样品的岩浆锆石核部记录了1 713~1 711 Ma的年龄,应代表老厂河组原岩的形成时代,锆石的变质增生边限定峰期变质时代为约843 Ma。综合前人研究结果表明,大红山群普遍经历了849~837 Ma的新元古代变质事件。综上所述,扬子地块西南缘的大红山群完好记录了与Columbia超大陆裂解有关的非造山岩浆活动,新元古代变质事件可能与Rodinia超大陆裂解和聚合过程密切相关。  相似文献   

11.
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   

12.
The provenance of the large and super-large scale bauxite deposits developed in the Wuchuan–Zheng’an–Daozhen (WZD) alumina metallogenic province in the Yangtze Block of South China is poorly understood. LA-ICP-MS and SIMS U–Pb dating of detrital zircons from bauxite ores and the underlying Hanjiadian Group in the WZD area provide new constrains on the provenance of the WZD bauxite and provide new insight on the bauxite ore-forming process. The ages of the detrital zircons in the bauxites and the zircons in the Hanjiadian Group are similar suggesting that the bauxites are genetically related to the Hanjiadian sediments. The detrital zircon populations of the four samples studied show four primary age peaks: 2600–2400 Ma, 1900–1700 Ma, 1300–700 Ma and 700–400 Ma. The age distribution of detrital zircons indicates that they are probably derived from various sources including Neoproterozoic, Mesoproterozoic, Paleoproterozoic, Archean and some minor Paleozoic sources. The most abundant age population contains a continuous range of ages from 1300 to 700 Ma, ages consistent with subduction-related magmatic activities (1000–740 Ma) along the western margin of the Yangtze Block and the worldwide Grenville orogenic events (1300–1000 Ma). Thus, it is suggested that the main provenances of the WZD bauxite and the Hanjiadian Group are the Neoproterozoic igneous rocks in the western Yangtze Block and the Grenville-age igneous rocks in the southern Cathaysia Block. In addition, this work verifies that the global Grenville orogenic events and subduction-related magmatic activities associated with the Yangtze Block had a significant influence on the formation of the WZD bauxite deposits.  相似文献   

13.
《Gondwana Research》2013,24(4):1261-1272
A combined study of Lu–Hf isotopes and U–Pb ages for detrital zircons from sedimentary rocks can provide information on the crustal evolution of sedimentary provenances, and comparisons with potential source regions can constrain interpretations of paleogeographic settings. Detailed isotopic data on detrital zircons from Neoproterozoic sedimentary rocks in the northern part of the Yangtze Block suggest that these rocks have the maximum depositional ages of ~ 750 Ma, and share a similar provenance. In their source area, units of late Archean (2.45 to 2.55 Ga) to Paleoproterozoic (1.9 to 2.0 Ga) U–Pb ages made up the basement, and were overlain or intruded by magmatic rocks of Neoproterozoic U–Pb ages (740 to 900 Ma). Hf isotopic signatures of the detrital zircons indicate that a little juvenile crust formed in the Neoarchean; reworking of old crust dominates the magmatic activity during the Archean to Paleoproterozoic, while the most significant juvenile addition to the crust occurred in the Neoproterozoic. Only the Neoproterozoic zircon U–Pb ages can be matched with known magmatism in the northern Yangtze Block, while other age peaks cannot be correlated with known provenance areas. Similar zircon U–Pb ages have been obtained previously from sediments along the southeastern and western margins of the Yangtze Block. Thus, it is suggested that an unexposed old basement is widespread beneath the Yangtze Block and was the major contributor to the Neoproterozoic sediments. This basement had a magmatic activity at ~ 2.5 Ga, similar to that in North China; but zircon Hf isotopes suggest significant differences in the overall evolutionary histories between the Yangtze and North China.  相似文献   

14.
Neoproterozoic sedimentary sequences in the South China Block provide great opportunity to examine the tectonic evolution and crustal accretion during this period. This study presents U–Pb ages and Hf isotope composition of detrital zircons and Nd isotope composition of whole rocks of the Neoproterozoic sequences from the Yangtze Block, part of the South China Block. Age patterns of detrital zircons imply that the source area experienced three major periods of magmatic activity at 2,300–2,560, 1,900–2,100 and 770–1,000?Ma and two major episodes of juvenile crust accretion at 2,600–3,400 and 770–1,000?Ma. The maximum age of the Gucheng glaciation can be restricted at?~768?Ma from the youngest detrital zircon ages, probably corresponding to the Kaigas glaciation rather than to the Sturtian glaciation. High La/Sc ratio and low Cr/Th, Sc/Th and Co/Th ratios of the sedimentary rocks point to a derivation from dominantly felsic upper continental crustal sources, whereas large variation of εNd(t) and εHf(t) values indicates that mantle-derived magmatic rocks also provided material to the sedimentary sequences in different degrees. The shift in εNd(t) values of whole rocks and U–Pb age spectra of detrital zircons records the evolution from a back-arc to retro-arc foreland to a rift basin. Age distribution of detrital zircons from the Neoproterozoic sequences, compared with those of the major crustal blocks of Rodinia, implies that the position of the Yangtze Block was probably adjacent to northern India rather than between Australia and Laurentia before the breakup of the Rodinia supercontinent.  相似文献   

15.
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   

16.
滇中地区昆阳群物源及构造环境   总被引:2,自引:0,他引:2       下载免费PDF全文
昆阳群的形成时代、沉积环境、源岩性质等一直存在较大争议,为了查明滇中地区昆阳群的物源及其形成的构造环境,文章在分析昆阳群沉积组合和沉积相的基础上,对昆阳群3件变质砂岩样品中的碎屑锆石进行LA-ICPMS锆石U-Pb年龄测定,对昆阳群20件极低级变质碎屑岩进行地球化学分析。从昆阳群黄草岭组、黑山头组和美党组中分别获得了最年轻的谐和年龄为984.0 Ma、945.0 Ma和954.0 Ma;碎屑锆石年龄峰谱显示,在1.0 Ga、1.35Ga、1.73 Ga和2.44 Ga出现了统计峰值,其年龄主要集中在1.73 Ga和1.35 Ga。表明昆阳群源区主要经历了1.0 Ga、1.35 Ga、1.73 Ga和2.44 Ga的构造热事件,资料显示扬子地块西南缘出露的大红山群形成时代为1.7 Ga,格林威尔期的构造热事件时期为1.0~1.3 Ga。此外,地球化学分析结果表明昆阳群源岩主要是形成于大陆岛弧—活动大陆边缘的石英质旋回沉积、长英质岩石和少量镁铁质岩石。在中元古代晚期—新元古代早期(0.95~1.0 Ga),Rodinia超大陆形成阶段,在扬子地块西南缘的弧后前陆盆地中形成昆阳群的沉积组合,物源主要来自扬子地块西南缘的大红山群和格林威尔期岛弧的岩石。  相似文献   

17.
扬子陆块出露了较多前南华纪地层和岩浆岩,碎屑沉积岩中保存的碎屑锆石对限定地层沉积时代、示踪沉积物源和反演早期大陆构造演化具有重要意义.通过对扬子北缘大洪山地区中元古代打鼓石群碎屑锆石年代学的研究,结果显示李家咀组最年轻的锆石年龄为1 250±64 Ma,主要峰值为2 078 Ma、2 437 Ma、2 659 Ma和3 084 Ma附近;罗汉岭组最年轻锆石年龄为1 077±51 Ma,主要峰值为1 126 Ma、2 044 Ma、2 458 Ma和2 635 Ma附近.根据结果认为:李家咀组的沉积时代在1 250±64 Ma与1 126 Ma之间,罗汉岭组沉积时代晚于1 077±51 Ma,可以确定打鼓石群的沉积时代为中元古代.另外,通过对打鼓石群、神农架群、会理群和东川群的碎屑锆石统计频谱特征的对比分析,发现在扬子陆块不同地区出露的中元古代地层,具有明显不同的锆石年谱特征,反映了各地层单元的物源差异很大,在中元古时期应分属不同的地块,经历了中-新元古代构造演化,才逐渐拼合成统一的扬子陆块基底.   相似文献   

18.
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   

19.
秦岭造山带东段秦岭岩群的年代学和地球化学研究   总被引:20,自引:14,他引:6  
时毓  于津海  徐夕生  邱检生  陈立辉 《岩石学报》2009,25(10):2651-2670
对东秦岭地区的陕西省洛南县、宁陕县、长安县和河南省淅川县出露的四个秦岭岩群变质岩进行的岩石学和地球化学研究表明,样品主要由变质火山岩和变质沉积岩组成.详细的锆石U-Pb定年结果显示三个正变质岩均形成于新元古代早期(971~843Ma),而副变质岩中富集大量新元古代碎屑锆石,根据最年轻的谐和年龄(859Ma)和早古生代的变质年龄,推测其沉积时代为新元古代中晚期.因此,北秦岭南部的秦岭岩群的变质岩主要由新元古代早期的火成岩和新元古代中晚期的沉积岩组成.变质作用主要发生在加里东期,局部有燕山期的变质作用叠加.指示北秦岭的造山作用主要发生在早古生代.岩石地球化学研究还显示秦岭岩群的新元古代火山岩均形成于火山弧构造环境,沉积岩沉积于大陆弧-活动大陆边缘环境,指示秦岭造山带在新元古代早期是一个火山弧.秦岭岩群的火山岩和沉积岩在形成时代和构造环境方面与扬子克拉通西缘的特征非常相似,表明位于北秦岭造山带的秦岭岩群应归属于扬子克拉通陆块,是扬子北缘的一个大陆边缘弧.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号