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混杂岩基本特征与专题地质填图 被引量:38
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作者 闫臻 王宗起 +5 位作者 付长垒 牛漫兰 计文化 李荣社 祁生胜 毛晓长 《地质通报》 CAS CSCD 北大核心 2018年第2期167-191,共25页
混杂岩是造山带内最常见的地质体和最基本的大地构造相单元,是由多种地质作用共同形成的可作为一定比例尺(1∶25000或更大)的地质填图单元,并由块体和基质共同构成的内部无序的岩石混杂体。混杂岩的形成和就位构造环境不一致,并非所有... 混杂岩是造山带内最常见的地质体和最基本的大地构造相单元,是由多种地质作用共同形成的可作为一定比例尺(1∶25000或更大)的地质填图单元,并由块体和基质共同构成的内部无序的岩石混杂体。混杂岩的形成和就位构造环境不一致,并非所有混杂岩都具有古板块构造格局指示意义。蛇绿混杂岩和增生杂岩可作为古洋盆和汇聚板块边界的直接判别标志,其结构、组成与时空配置共同记录了古大洋板块地层系统发展及大陆地壳侧向与垂向增生历史。以大洋板块地层、海山理想层序和蛇绿岩"彭罗斯"层序模型为指导,专题地质填图是揭示造山带蛇绿混杂岩和增生杂岩结构、组成及其时空配置关系与形成机制的有效手段。这可为洋-陆转换研究及提高造山带结构深化认知程度提供直接证据,同时指导混杂岩相关矿床勘探与找矿预测。 展开更多
关键词 造山带 混杂岩 蛇绿混杂岩 增生杂岩 专题地质填图
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西昆仑奥依塔格石炭-二叠纪岩浆岩:弧后盆地的产物? 被引量:10
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作者 计文化 陈守建 +3 位作者 李荣社 何世平 赵振明 潘小萍 《岩石学报》 SCIE EI CAS CSCD 北大核心 2018年第8期2393-2409,共17页
目前对西昆仑石炭-二叠纪火山岩分带性、形成环境、深部地幔源区特征还缺乏较好的约束。在区域地质填图、综合研究的基础上,将西昆仑石炭-二叠纪岩浆岩空间上分为南带、北带。本文展示了北带岩浆岩集中出露的奥依塔格地区玄武岩、辉绿... 目前对西昆仑石炭-二叠纪火山岩分带性、形成环境、深部地幔源区特征还缺乏较好的约束。在区域地质填图、综合研究的基础上,将西昆仑石炭-二叠纪岩浆岩空间上分为南带、北带。本文展示了北带岩浆岩集中出露的奥依塔格地区玄武岩、辉绿岩、辉长岩的地球化学和Sr、Nd、Pb同位素以及与辉长岩共生的斜长花岗岩的锆石LA-ICP-MS测年数据,以约束该区基性岩形成的时代、构造环境和地幔源区特征,同时与库地玄武岩、阿羌基性火山岩进行了比较。目前的数据表明:(1)斜长花岗岩单颗粒锆石LA-ICP-MS测年得到313.6±1.6Ma、291.6±1.7Ma两组年龄,后者代表斜长花岗岩和辉长岩的侵位时代,前者可能代表玄武岩的年龄。(2)球粒陨石标准化稀土元素配分模式图中,玄武岩显示轻稀土略富集的向右缓倾模式,辉绿岩、辉长岩均为轻稀土略亏损的近平坦型;原始地幔标准化微量元素值均表现为大离子亲石元素相对富集,Nb、Ta谷明显,高场强元素中后半部分呈平坦型模式。(3)地球化学指标显示奥依塔格一带基性岩未受到或很少受到地壳物质混染,样品的Nd、Pb组成可以用来代表地幔源区的成分特点,Nd-Pb、Pb-Pb图解显示其代表的地幔源区具有"Dupal"异常,并于金沙江蛇绿岩中玄武岩代表的地幔源区有较高的一致性。(4)综合岩石地球化学、沉积组合认为奥依塔格基性岩形成于弧后盆地构造环境,区域对比,指出它与库地一些克沟组玄武岩、于田县阿羌组火山岩同为康西瓦-麻扎混杂岩带代表的洋盆向北俯冲,引发弧后盆地扩展的结果。 展开更多
关键词 锆石U-PB年代学 地球化学 构造环境 DUPAL异常 西昆仑奥依塔格
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中国西北地区南华纪—古生代构造重建及关键问题讨论 被引量:15
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作者 计文化 李荣社 +1 位作者 陈奋宁 杨博 《地质力学学报》 CSCD 2020年第5期634-655,共22页
中国西北是古亚洲构造域和特提斯构造域共同作用的地区,南华纪—古生代时期经历了复杂的洋-陆演化过程,诸陆(地)块于三叠纪基本拼贴就位,奠定了中生代以来陆内盆山演化的基础。但对于西北地区南华纪—古生代时期古亚洲洋盆最终关闭的时... 中国西北是古亚洲构造域和特提斯构造域共同作用的地区,南华纪—古生代时期经历了复杂的洋-陆演化过程,诸陆(地)块于三叠纪基本拼贴就位,奠定了中生代以来陆内盆山演化的基础。但对于西北地区南华纪—古生代时期古亚洲洋盆最终关闭的时限、位置,以及秦祁昆古生代造山带属于特提斯构造域还是古亚洲构造域等重大区域地质问题目前仍存在较大争议。文章在最新地质填图的基础上,通过对沉积建造、岩浆建造、变质变形等的综合分析,将西北地区南华纪—古生代的构造单元厘定为3个洋板块、4个弧盆系和2个陆(地)块群等9个二级、46个三级和112个四级构造单元,力图刻画消失的大洋盆地的残留组成和诸陆(地)块的边缘增生结构。结合古地磁、生物古地理研究成果,恢复了古生代不同时期西北洋-陆系统在全球的位置,讨论了洋盆消减、诸陆(地)块拼贴的过程。 展开更多
关键词 古亚洲构造 特提斯构造域 南华纪—古生代 构造重建
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东昆仑南缘布青山地区得力斯坦花岗闪长岩LA-ICP-MS锆石U-Pb年龄及其地质意义 被引量:3
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作者 邵东 计文化 +4 位作者 李荣社 陈守建 李猛 王刚 赵如意 《地质通报》 CAS CSCD 北大核心 2017年第9期1562-1568,共7页
布青山构造混杂岩带地处青藏高原东北缘,是东昆仑南缘一条重要的构造单元边界,带内构造岩浆活动强烈,早古生代—晚古生代中酸性侵入岩较发育。采用LA-ICP-MS锆石U-Pb同位素测年技术,对研究区内得力斯坦花岗闪长岩进行高精度的年代学测试... 布青山构造混杂岩带地处青藏高原东北缘,是东昆仑南缘一条重要的构造单元边界,带内构造岩浆活动强烈,早古生代—晚古生代中酸性侵入岩较发育。采用LA-ICP-MS锆石U-Pb同位素测年技术,对研究区内得力斯坦花岗闪长岩进行高精度的年代学测试,获得^(206)Pb/^(238)U年龄加权平均值为414.3±1.8Ma,表明其侵位时间为晚志留世—早泥盆世。结合前人研究成果,认为得力斯坦花岗闪长岩是洋壳俯冲板块部分熔融的产物,暗示布青山地区原特提斯洋向北俯冲可能持续到晚志留世—早泥盆世,进而为研究东昆仑地区的地质构造演化提供新的约束。 展开更多
关键词 锆石U-PB年龄 花岗闪长岩 原特提斯洋 布青山构造混杂岩
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Paleomagnetic data from the Late Carboniferous-Late Permian rocks in eastern Tibet and their implications for tectonic evolution of the northern Qiangtang-Qamdo block 被引量:10
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作者 CHENG Xin WU HanNing +9 位作者 DIAO ZongBao WANG HaiJun MA Lun ZHANG XiaoDong YANG Gang HONG JingJing JI WenHua li rongshe CHEN ShouJian ZHAO ZhenMing 《Science China Earth Sciences》 SCIE EI CAS 2013年第7期1209-1220,共12页
We report paleomagnetic results from the Late Carboniferous-Late Permian strata in eastern Tibet (China), and aim to clarify the tectonic and paleogeographic evolution of the northern Qiangtang-Qamdo block, which is t... We report paleomagnetic results from the Late Carboniferous-Late Permian strata in eastern Tibet (China), and aim to clarify the tectonic and paleogeographic evolution of the northern Qiangtang-Qamdo block, which is the key to the study of plate boundary between the Gondwanaland and the Eurasia during the late Paleozoic. Two hundred and nineteen samples-including limestone, muddy siltstone, basalt, lava, and tuff-were collected at 24 sites in the Upper Carboniferous and Middle-Upper Permian successions. A systematic study of rock magnetism and paleomagnetism yields three reliable paleomagnetic pole positions. Both hematite and magnetite occurred in the Late Carboniferous limestone samples. The demagnetization curve shows a characteristic double-component, with the remanent magnetization (ChRM) exhibiting a positive polarity (negative inclination). In the Late Permian limestone, tuff, and basalt, magnetic information were recorded primarily in magnetite, although a small fraction of them was found in hematite in basalt. The demagnetization curve illustrates a double or single component, with the ChRM showing a negative polarity (positive inclination), which has passed the classic fold test successfully. The single polarity features of the ChRM directions of the Late Carboniferous and Middle-Late Permian rocks are respectively related to the Kiaman positive and reversed polarities under the stratigraphic coordinates. This, in turn, indicates that both ChRMs directions represent the original remanence directions. By comparison with the previously published paleomagnetic results from the late Paleozoic rocks in the northern Qiangtang Range, we suggest that: (1) Qamdo and northern Qiangtang block were independent of each other during the Late Carboniferous to the Early Permian periods. The north Lancangjiang ocean basin between the two blocks may have closed before the Middle Permian and been involved in the continent-continent collision stage in the Late Permian-Early Triassic periods. (2) The northern Qiangtang-Qamdo Block paleogeographically was situated at low to intermediate latitudes in the Southern Hemisphere in the Late Carboniferous-Late Permian periods, and began to displace northward in the Early Triassic, with an amount of more than 5000 km northward transport from its current location. 展开更多
关键词 PALEOMAGNETISM TETHYS Northern Qiangtang block PALEOZOIC North Lancangjiang belt
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柴达木盆地北缘全吉群皱节山组碎屑锆石年代学特征及其地质意义 被引量:3
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作者 李猛 王超 +5 位作者 李荣社 彭岩 邵东 陈奋宁 陈守建 潘晓萍 《地球科学》 EI CAS CSCD 北大核心 2018年第12期4390-4398,共9页
柴达木盆地北缘的全吉群主要为一套未变质的砂砾岩、石英岩、砂页岩、白云岩和冰碛岩的地层,为全吉地块基底之上的最古老的直接沉积盖层.对全吉群上部皱节山组2件紫红色细砂岩样品进行碎屑锆石LA-ICP-MSU-Pb年龄测定,碎屑锆石207Pb/206P... 柴达木盆地北缘的全吉群主要为一套未变质的砂砾岩、石英岩、砂页岩、白云岩和冰碛岩的地层,为全吉地块基底之上的最古老的直接沉积盖层.对全吉群上部皱节山组2件紫红色细砂岩样品进行碎屑锆石LA-ICP-MSU-Pb年龄测定,碎屑锆石207Pb/206Pb年龄谱特征显示,皱节山组沉积物主要以1750~1990Ma(约占84.7%)的锆石年龄最为集中,其次为2400~2500Ma的年龄值,结合区域热事件,说明皱节山组沉积物可能主要来自于全吉地块古元古代末达肯大坂岩群,部分来自德令哈杂岩体.此外,~1.95Ga和~1.85Ga的碎屑锆石具有显著优势,它记录了全吉地块在古元古代的2期重要的热事件——古元古代末镁铁质岩墙群的侵入作用和古元古代晚期的区域变质-深熔作用. 展开更多
关键词 全吉群 皱节山组 碎屑锆石 U-PB年龄 全吉地块 地球化学
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The discovery of Palaeoproterozoic volcanic rocks in the Bulunkuoler Group from the Tianshuihai Massif in Xinjiang of Northwest China and its geological significance 被引量:33
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作者 JI WenHua li rongshe +6 位作者 CHEN ShouJian HE ShiPing ZHAO ZhenMing BIAN XiaoWei ZHU HaiPing CUI JiGang REN JuanGang 《Science China Earth Sciences》 SCIE EI CAS 2011年第1期61-72,共12页
In the Dabudaer region of the Tianshuihai Massif (Xinjiang, Northwest China), metavolcanic rocks within the mainly meta- sedimentary Bulunkuoler Group are basalt, basaltic andesite, and rhyolite. In situ zircon U-Pb... In the Dabudaer region of the Tianshuihai Massif (Xinjiang, Northwest China), metavolcanic rocks within the mainly meta- sedimentary Bulunkuoler Group are basalt, basaltic andesite, and rhyolite. In situ zircon U-Pb LA-ICP-MS dating on rhyolite magmatic zircons yielded an age of 2481±14 Ma, interpreted as the eruption age of the Bulunkuoler Group volcanic rocks. The basalt and basaltic andesite are low-A1 tholeiite series and the rhyolite is low-Al calc-alkaline series. All of rocks are charac- terized by enrichment of LREE and LILE (Rb, Th and Ba), depletion of P, Nb, Ta and Ti, and absence of Eu anomalies. The Cnd(t) of basalts ranges from 3.14 to 4.88 indicating a depleted mantle source. The trace element signatures show that these magmas experienced intense crustal contamination during their ascent. Direct evidence for crustal contamination is the xenocrystic zircons in the ryholite, with ages back to ca. 3300 Ma. The primitive-mantle normalized and Zr/Y-Zr diagrams for the basic volcanic rocks show that they formed in an intra-continental tectonic setting. Combined with the previous studies and compared with North China Craton Neoarchean basic volcanic rocks, it is supposed that the Bulunkuoler Group volcanic rocks reflect the Palaeoproterozoic mantle magma underplating and interaction with felsic crust. 展开更多
关键词 KARAKORUM Bulunkuoler Group zircon LA-ICP-MS U-Pb dating THOLEIITE UNDERPLATING
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Paleomagnetic results of Late Paleozoic rocks from northern Qiangtang Block in Qinghai-Tibet Plateau, China 被引量:10
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作者 CHENG Xin WU HanNing +10 位作者 GUO Qiang HOU BaoNing XIA lingYan WANG HaiJun DIAO ZongBao HUO FeiFei JI WenHua li rongshe CHEN ShouJian ZHAO ZhenMing liU XiaoJi 《Science China Earth Sciences》 SCIE EI CAS 2012年第1期67-75,共9页
Tectonic evolution of the Tethys and the boundary between the Gondwanaland and the Eurasia during the Carboniferous and Permian remain hotly debated. Qiangtang region in the Qinghai-Tibet Plateau may be a key place to... Tectonic evolution of the Tethys and the boundary between the Gondwanaland and the Eurasia during the Carboniferous and Permian remain hotly debated. Qiangtang region in the Qinghai-Tibet Plateau may be a key place to study these problems. A paleomagnetic study was conducted on the Late Paleozoic rocks in the northern Qiangtang region (33.7°N, 86.7°W), Tibet. Two sites (21 samples) in the Upper Carboniferous, eleven sites (101 samples) in the Permian, and two sites (16 samples) in the Lower Triassic were investigated. The rock magnetic data revealed hematite and magnetite as the main magnetic carders. In stepwise thermal demagnetization and/or combined alternating field (AC) demagnetization, two characteristic components in the majority of the samples were identified as (1) the Low-temperature Component (LTC), characterized by northerly decli- nation and moderate to steep inclination, corresponding to a pole position overlay with the present North Pole. A minority of the samples present single component, and their directions are the same as (2) the High-temperature Component (HTC) of double components. The combined single-component and HTC data of the Permian can pass the R-test at 95% level and the F-test at 99% level, as well as the BC-test. The pole position from the Late Carboniferous is at 31.8°S, 45.7°E with dp=2.1, dm=3.9, that from the Early and Middle (Late) Permian is at 31.7°S, 46.8°E with @=9.2, dm=16.9 (34.4°N, 54.1°E with dp=6.9, dm=1 2.5) respectively, and that from the Early Triassic is at 16.9°S, 22.5°E with dp=4.9, dm=9.2. These pole positions are different from the other poles for the Qiangtang Block, which suggests the single-component and HTC directions are probably a primary magnetization and the northern Qiangtang Block was paleogeographically situated at low latitudes in the Northern Hemisphere in the Late Paleozoic. 展开更多
关键词 PALEOMAGNETISM TETHYS Northern Qiangtang Block Late Paleozoic
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