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1.
文章对灵山岛上的两件流纹岩样品进行了系统的锆石U-Pb测试,获得加权平均年龄分别为123.1±1.9 Ma和121.4± 1.4 Ma,两个年龄在误差范围内一致,代表了灵山岛流纹岩的成岩年龄。地球化学组成上,灵山岛流纹岩具有高硅、高碱 和低磷、低Mg#、低钛和低钙的特征,富集Rb、Th和K等大离子亲石元素以及轻稀土元素,亏损Nb、Ta、Ti和P等高场强 元素。岩石组合和地球化学特征以及低的全岩锆饱和温度综合表明,灵山岛流纹岩属于高分异的I型流纹岩,而非伸展环 境下形成的A型流纹岩,属于苏鲁造山带后碰撞岩浆活动的产物。流纹岩的锆石εHf(t)值变化范围较小(-27.2~-32.3),二阶 段模式年龄tDM2主要为新太古代—中太古代(2662~3167 Ma),表明流纹岩是古老地壳物质重熔的产物。灵山岛流纹岩中新 元古代继承锆石的发现暗示其源于扬子古老陆壳(中地壳) 的部分熔融。综合结果表明:早白垩世时,华北克拉通破坏是 引起扬子壳源物质发生大规模(减压) 部分熔融的内在因素,岩石圈破坏形成的区域性伸展构造为流纹岩的最终上升和就 位提供了空间。  相似文献   

2.
为探讨江南造山带东段新元古代构造演化机制,对江南造山带东段登山群砂岩及火山岩进行锆石U-Pb年代学及地球化学研究.SHRIMP锆石U-Pb定年显示登山群高山组凝灰岩年龄为855.5±8.2 Ma,叶家组流纹岩年龄为798.1±7.8 Ma.地球化学数据显示高山组砂岩物源区为大陆岛弧,形成于弧后盆地;叶家组火山岩为双峰式火山岩,流纹岩轻稀土富集,重稀土亏损;高FeOt/(FeOt+MgO)和Ga/Al值、低CaO、MgO,εHf(t)值为7.9~10.9,富集Ba、Th、U等大离子亲石元素和高场强元素,强烈亏损Sr、P、Ti的特征显示其为典型的A型花岗岩,来自初生地壳的部分熔融;玄武岩属拉斑玄武岩系列,具有OIB特征,富集轻稀土及大离子亲石元素,来自软流圈地幔的部分熔融.双峰式火山岩形成于板内伸展背景.年代学及地球化学结果表明新元古代江南造山带东段扬子与华夏板块拼贴时限为855~800 Ma之间.造山结束之后地幔物质上涌,华南板块进入裂谷期.   相似文献   

3.
福建魁岐晶洞花岗岩锆石U-Pb年代学及其地球化学研究   总被引:5,自引:2,他引:3  
魁岐晶洞花岗岩具有高Si、高碱、低Ca、富集大离子亲石元素和高场强元素的地球化学特征,为典型的A型花岗岩。LA-ICP-MS锆石U-Pb定年分析显示,魁岐小晶洞花岗岩的锆石U-Pb年龄在101.7±2Ma和97.3±0.77Ma之间,而大晶洞花岗岩的锆石U-Pb年龄在93.6±1.5Ma和92.0±1.3Ma之间,表明它们是晚白垩世早期岩浆活动的产物。锆石原位Hf同位素分析显示,大晶洞锆石的εHf(t)分别为+1.45和+1.21,锆石二阶段模式年龄平均值为1064Ma和1078Ma,说明该类岩石是幔源岩浆底侵导致下地壳熔融的结果。以上研究成果表明,魁岐晶洞A型花岗岩形成于库拉板块向欧亚板块俯冲,诱发其上的大陆岩石圈板块伸展的构造环境。因此,其原始岩浆是新元古代下地壳物质部分熔融的产物,并伴有地幔物质的加入。  相似文献   

4.
古老锆石和岩石的发现,是探索地球早期地质演化的关键.为进一步揭示扬子陆块基底物质组成和早期地壳形成演化,采用LA-ICP-MS锆石微区U-Pb测年,对扬子陆块西南缘禄丰地区东川群变质砂岩进行了年代学研究,发现3 822±21 Ma的古老碎屑锆石.这是目前在扬子陆块获得的第2颗>3.8 Ga的古老锆石,也是目前在该地区发现的最老锆石.变质砂岩碎屑物质主要包括4个峰值年龄(~2 320 Ma、~2 162 Ma、~2 036 Ma和~1 915 Ma),2颗最年轻的锆石年龄基本限定了东川群早期最大沉积时限,与区域上火山岩时代相吻合.另外还包含少量中-晚太古代(2.6~2.9 Ga)和始太古代(3.7~3.8 Ga)的碎屑物质.Hf同位素组成显示这些碎屑锆石具有不同成因,其中2 674~3 822 Ma的碎屑锆石总体具有正的εHf(t)值和2.9~3.9 Ga的两阶段模式年龄,暗示扬子陆块在冥古宙-古太古代时期就有一定规模的新生陆壳分布.古元古代(1.9~2.4 Ga)的岩浆活动除有少量古元古代(2.3~2.4 Ga)新生地壳组分熔融外,大多为太古宙(2.5~3.7 Ga)古老地壳部分熔融.中元古代更多表现为古老地壳的熔融和物质再循环.研究结果为深化扬子陆块早前寒武纪地质演化认识提供了新资料.   相似文献   

5.
西天山加满特一带基性与酸性火山岩在时空上紧密伴生,其SiO2含量分别为41.89%~52.75%和74.79%~78.51%,具 有明显的Daly间断,属于典型的双峰式火山岩组合,其中的基性单元属于碱性系列,酸性单元属于钙碱性系列。对流纹岩 进行LA-ICP-MS锆石U-Pb法测年和Hf同位素分析,获得其形成年龄为(294.2±0.8) Ma,属于早二叠世,其εHf(t)为较高的 正值(8.0~17.1),二阶段Hf模式年龄TDM2(Hf)平均值为468 Ma。通过对加满特一带双峰式火山岩的地球化学特征和成因类 型进行探讨,表明其不属于同源岩浆演化成因,其中玄武岩是富集石榴石地幔源区发生了尖晶石相橄榄岩向石榴石相橄榄 岩过渡相部分熔融的产物,流纹岩是亏损地幔源底侵新生地壳部分熔融的产物,二者形成于板内伸展环境。结合区域构造 演化,认为西天山在早二叠世已经进入伸展构造背景。  相似文献   

6.
单强  曾乔松  罗勇  杨武斌  张红  裘瑜卓  于学元 《岩石学报》2011,27(12):3653-3665
阿尔泰南缘康布铁堡组酸性火山岩分布在麦兹、克朗、冲呼尔以及阿舍勒等火山-沉积盆地.本文对其中的钾质流纹岩(TM1,铁木尔特地区)和钠质流纹岩(KK7,可可塔勒地区)进行了SHRIMP锆石U-Pb定年以及地球化学的研究.钾质流纹岩的年龄为400.8±8.4Ma(加权平均年龄为394.8±7.9Ma),钠质流纹岩的年龄为402.2±6Ma(加权平均年龄为396.8±5.1Ma).主元素分析结果证明研究区在时间和空间上紧密共生的高钾流纹岩和高钠流纹岩同属于高碱、高硅、低钙、过铝质的钙碱性岩系.相似的稀土元素分配模式和同样亏损高场强元素(Ti、Nb、Ta)的地球化学特征暗示二者的原始岩浆源于上地壳部分熔融.钾质流纹岩富集Rb,Ba、Pb,钠质流纹岩则富集Sr,这种元素分相富集的特征符合在岩浆液态不混溶条件下微量元素在共轭钠质熔体和钾质硅酸盐熔体中的分配原则.由此推论,本区产出的钾质流纹岩和钠质流纹岩可能是上地壳部分熔融形成的高挥发分酸性岩浆液态不混溶的产物.  相似文献   

7.
西天山加满特一带基性与酸性火山岩在时空上紧密伴生,其SiO2含量分别为41.89%~52.75%和74.79%~78.51%,具 有明显的Daly间断,属于典型的双峰式火山岩组合,其中的基性单元属于碱性系列,酸性单元属于钙碱性系列。对流纹岩 进行LA-ICP-MS锆石U-Pb法测年和Hf同位素分析,获得其形成年龄为(294.2±0.8) Ma,属于早二叠世,其εHf(t)为较高的 正值(8.0~17.1),二阶段Hf模式年龄TDM2(Hf)平均值为468 Ma。通过对加满特一带双峰式火山岩的地球化学特征和成因类 型进行探讨,表明其不属于同源岩浆演化成因,其中玄武岩是富集石榴石地幔源区发生了尖晶石相橄榄岩向石榴石相橄榄 岩过渡相部分熔融的产物,流纹岩是亏损地幔源底侵新生地壳部分熔融的产物,二者形成于板内伸展环境。结合区域构造 演化,认为西天山在早二叠世已经进入伸展构造背景。  相似文献   

8.
本文对新县花岗岩岩基进行了系统的锆石U-Pb定年,全岩元素地球化学、Sr-Nd-Pb-Hf同位素测试,研究探讨其成岩年龄、岩石成因、物质来源以及地球化学动力学背景。锆石U-Pb年龄为125.5±1.5Ma,属于早白垩世产物。全岩元素地球化学成分表现为高硅、富碱,贫镁、铁和钙,富集轻稀土元素、大离子亲石元素(Rb、K、Th、U)和Pb,亏损重稀土元素、高场强元素(Nb、Ta、Ti)和Sr、Ba。全岩同位素具有中等略偏高的Sr 初始比值(87Sr/86Sr)i=0.706949~0.707086;低的放射性Pb同位素组成[ (206Pb/204Pb)i=16.611~17.152,(207Pb/204Pb)i=15.304~15.432,(208Pb/204Pb)i=37.316~37.702]; 低的Nd初始比值(εNd(t)=-13.65~-13.51)和老的Nd模式年龄(TDM2=2.12~2.13Ga)。锆石原位Hf同位素具有较低的初始比值(εHf(t)=-22.92~-19.40)和老的Hf二阶段模式年龄(TDM2=2.39~2.61 Ga)。综合以上元素地球化学特征、锆石U-Pb定年结果及Sr-Nd-Pb-Hf同位素组成,新县花岗岩岩基应属于分异的高钾钙碱性I型花岗岩,是化学成分类似于扬子板块北缘新元古代TTG型岩浆岩的扬子下地壳在非加厚下地壳(深度小于35km)环境下部分熔融的产物。  相似文献   

9.
林广春 《地球科学》2010,35(4):611-620
扬子西缘新元古代岩浆岩分布广泛, 目前对其成因和构造背景还存在很大争议.对扬子西缘康滇裂谷北段石棉花岗岩体进行了系统的SHRIMP锆石U-Pb年龄、岩石学和元素-Nd同位素地球化学研究, 结果表明该岩体是弱铝质的高钾钙碱性Ⅰ型花岗岩, 形成于818±7 Ma, 是由前存年轻(中元古代末-新元古代初)岛弧地壳物质部分熔融形成的, 并混染了少量古老地壳物质.石棉花岗岩形成于扬子地块西缘由会聚挤压向陆内伸展的转折时期, 其"岛弧地球化学特征"是继承了源岩的地球化学特征的结果, 不代表其形成时的构造环境.   相似文献   

10.
西天山二叠纪的岩石圈深部过程是备受关注的地球动力学问题,新疆阿吾拉勒西段下二叠统流纹岩提供了理解这个问题的良好机会。阿吾拉勒西段流纹岩发育流纹构造、斑状结构,斑晶主要为条纹长石、斜长石和石英,长英质基质呈雏晶微晶结构。岩石为富硅(66.97%~79.00%)、高钾(2.86%~11.07%)钙碱性、准铝质(A/CNK=0.91~0.99)岩浆系列。流纹岩富集U、Th和K等元素,明显亏损Nb、Ta、Eu、P等元素,显示εNd(t)正值(4.7~5.1)和低的初始锶比值((87Sr/86Sr)i=0.705 1~ 0.705 6),锆石饱和温度为818~909 ℃,幔源物质明显。与高分异I型花岗岩地球化学性质相似,岩浆可能起源于壳幔边界早石炭世新生下地壳的部分熔融。流纹岩锆石U Pb法测年获得(290.9±3.3) Ma和(296.3±3.1) Ma的早二叠世成岩年龄,岩浆的起源可能与北天山洋关闭之后洋壳岩石圈板块尾部断离导致软流圈物质和能量上涌并引起新生下地壳底部重熔等深部过程有关。  相似文献   

11.
对蚌埠地区的荆山和涂山花岗岩进行了详细的年代学和岩石地球化学研究,分析结果表明:花岗岩的SiO2含量较高,介于71.22%~73.76%之间,富K2O、Na2O,贫TiO2、CaO、MgO,为弱过铝质岩石。K2O-Na2O图解上,所有数据点都落在"I"型花岗岩区域,结合呈右倾的微量元素标准化蛛网图,可知该区富集大离子亲石元素,同时具有明显的U、Pb、Ba、Sr正异常,Ti的负异常,暗示蚌埠岩体的形成背景可能为造山后的伸展环境。CamecaIMS1280SIMS锆石U-Pb年龄分析表明,主要有800Ma左右的新元古代年龄、三叠纪相关的220Ma和晚侏罗世的165Ma这三种主体年龄。根据上述地球化学资料,推断蚌埠岩体的母岩浆来源于火成岩的部分熔融,岩浆源区为与华北板块碰撞后继续向北伸展的部分扬子板块下地壳火成岩物质,其中,800Ma左右的新元古代年龄解释为扬子板块下地壳物质的继承锆石年龄,三叠纪的继承锆石理解为三叠纪时期华南、华北板块的碰撞导致,晚侏罗世的岩浆活动推测由于古太平洋板块北西向的斜向俯冲诱发扬子板块下地壳的物质部分熔融所致。  相似文献   

12.
This paper reports new geochemical data including zircon U-Pb ages with Hf isotopic data, whole -rock major and trace isotopic compositions for the Early Cretaceous magmatic rocks in the northeastern North China Craton ( NCC), with the purpose of constraining its petrogenesis and tectonic setting. It also provides a basis for further discussion on the formation and evolution of the lithosphere in the northeastern NCC during the Late Mesozoic. Zircons in the Xinglin granite porphyry, Hongtuya andesitic crystal tuff and Jiangyuan rhyolitic breccia-bearing crystal-lithic tuff all show magmatic origin. Zircon U-Pb dating yield age are 130 +/- 1Ma, 128 +/- 1Ma and 120 +/- 1Ma, respectively. The Xinglin granite porphyry and the Hongtuya andesitic crystal tuff have high content of SiO2, Al2O3 Sr, high Na2O/K2O, Sr/Y and ( La/Yb)(N) ratios. In addition, they exhibit low Y and Yb. They are enriched in LILE ( e. g., Ba, Th and U), depleted in HFSE ( e. g., Nb, Ti and P) with weak negative Eu anomalies (delta Eu =0. 82 similar to 0. 94), showing they are typical of adakitic rocks. The Xinglin granite porphyry has high content of total -alkali, low content of TiO2, characterized by peraluminous-weakly peraluminous granite A/CNK = 1. 06 similar to 1. 14, the zircon saturated temperature values of 798 similar to 815 degrees C and a distribution pattern of LREE enrichment with incline to the right, which indicates it is I -type granite. The zircon ( t) values in the Xinglin granite porphyry ranged 17. 96 0. 19, and the two -stage model ages yield t(DM2) = 1197 similar to 2313Ma, which imply that the Xinglin granite porphyry is derived from partial melting of the thickened mafic lower crust of Paleoproterozoic to Mesoproterozoic. The zircon epsilon(Hf)( t) values in the Hongtuya andesitic crystal tuff ranged 3. 37 similar to 5. 47, and the two -stage model ages yield t(DM2) = 830 similar to 967Ma, indicating that the Hongtuya andesitic crystal tuff is a metasomatism product of the Neoproterozoic delaminated eclogite lower crust partial melting and mantle peridotite. Combined with the epsilon(Hf)( t) values in the Jiangyuan rhyolitic breccia-bearing crystal-lithic tuff ranged 2. 69 1. 00, and the two -stage model ages yield t(DM2) = 1115 similar to 1349Ma, we conclude that the epsilon(Hf)( t) values of magmatic rocks are heterogeneous in the southern Jilin Province, and the magmatic source area is characterized by multi -component origin, including both ancient crust and juvenile crust. We supposed that there were two accretion evolution events in the continental crust of the northeastern NCC during Proterozoic. Comprehensive studies have shown that subduction and slab roll -back of the Paleo-Pacific plate ( Izanagi) led to the thickened the northeastern NCC being in an extensional tectonic setting during the Early Cretaceous, and the destruction of the northeastern NCC by delamination occurred spatially from west to east. The partial melting of delaminated lower continental crust resulted in a wide distribution of adakitic rocks.  相似文献   

13.
The timing and extent of cratonic destruction are crucial to understanding the crustal evolution of the North China Craton (NCC). Zircon U–Pb–Hf isotope data and the whole-rock major and trace element characteristics of the Huyu igneous rocks in northwestern Beijing, China, provide possible new evidence for the initial destruction of the NCC. The igneous rocks occur as several sills and dikes, including lamprophyre, monzonite porphyry, and aplite. The lamprophyres have high Mg# and K2O contents. The monzonite porphyries have high Mg#, high K2O contents, and negative εHf(t) values with zircon U–Pb ages of 225.5–227.7 Ma. These two types of rocks are both enriched in large ion lithosphere elements (LILEs) and light rare earth elements (LREEs) but are depleted in high field strength elements (HFSEs) and high rare earth elements (HREEs) and have almost no Eu anomalies and relatively high total rare earth element (ΣREE) contents. In contrast, the aplites exhibit high silica and K2O contents, low MgO contents, and more negative εHf(t) values with a zircon U–Pb age of 206.2 Ma. The aplites are also enriched in LILEs and LREEs but are depleted in HFSEs and HREEs, with strongly negative Eu, Ti, P, La, Ce, and Sr anomalies and relatively low ΣREE contents. These results indicate that the lamprophyres and monzonite porphyries represent a continuous cogenetic magma evolution series after melt derived from an enriched metasomatized lithospheric mantle experienced crust assimilation and fractional crystallization. The aplites were produced by the fractional crystallization of low-Mg parental magma derived from melting of the ancient Archaean crust. The occurrence of the Huyu intrusive rocks with many other plutons of similar ages on the northern margin of the NCC suggests that the northern NCC entered an intraplate extensional tectonic environment in the Late Triassic.  相似文献   

14.
欧波  魏启荣  许欢  王健  张敏  徐长君  金磊 《地学前缘》2018,25(6):165-181
西藏南木林县格张地区在构造上位于中冈底斯带南部(即中拉萨地块南部)的革吉—申扎弧后盆地。以格张地区出露的火山岩为研究对象,进行岩石学、LA-ICP-MS锆石U-Pb定年、元素地球化学和Lu-Hf同位素地球化学分析研究。结果显示,格张地区火山岩主要为一套酸性火山碎屑岩夹少量的火山熔岩,岩石组合为流纹质含角砾晶屑凝灰岩和流纹质(含角砾)晶屑熔结凝灰岩夹少量流纹岩和玄武岩。火山岩中发育典型的岩浆锆石。对1件流纹岩和1件流纹质晶屑熔结凝灰岩样品中的锆石进行U-Pb LA-ICP-MS定年分析,分别获得的年龄为(133±1.7) Ma和(128±1.5) Ma,表明火山岩形成于早白垩世(K1)时期。火山岩主量元素在质量分数上表现为高SiO2(69.4%~75.8%)、高K2O(2.93%~5.58%)、富Al2O3(12.7%~14.6%)、低TiO2(0.20%~0.34%)、低Na2O(0.05%~2.5%)、弱过铝质过铝质(A/NK为0.92~1.83,A/CNK为1.06~3.59)、高钾钙碱性系列的钾质火山岩特征。稀土元素配分模式呈现为轻稀土元素强烈富集的右陡倾斜型,其(La/Yb)N为12.3~22.0,具明显的负铕异常(Eu/Eu*=0.47~0.62)。微量元素普遍表现出Rb、Th、K等元素的正异常和Ba、Ta、Nb、Sr、P、Ti等元素的负异常。火山岩的εHf(t)值主要集中在-12.4~-7.2,两阶段地壳Hf模式年龄tDM2主要为1.5~1.7 Ga,相当于念青唐古拉群(AnZNq)的地质时代。格张地区早白垩世火山岩应为中部拉萨地块基底的念青唐古拉群(AnZNq)部分熔融的结果,并伴有少量幔源物质的加入,形成于因班怒洋板片南向俯冲所产生的陆缘弧构造环境。  相似文献   

15.
运用阴极发光技术,对湖南白马山龙潭超单元2个样品和瓦屋塘花岗岩1个样品的锆石进行了内部结构分析,在此基础上利用锆石SHRIMP U-Pb定年方法进行了同位素年代学测定。其中,白马山龙潭超单元2个黑云母二长花岗岩样品分别给出了(215.9±1.9) Ma和(212.2±2.1) Ma的主体谐和年龄。同时还测得了一组较年轻的谐和年龄((201.0±2.8) Ma)和一组较老的锆石核部年龄(230.3~227.0 Ma),表明研究区印支晚期存在多期花岗质岩浆的侵入活动。瓦屋塘岩体黑云母二长花岗岩1个样品给出了(217.7±1.8) Ma的谐和年龄。这2个岩体的形成进一步佐证了华南大陆印支晚期岩浆活动于210~225 Ma,达到岩浆活动的峰期。地球化学测试结果显示,白马山和瓦屋塘岩体均为弱过铝-强过铝质花岗岩,具壳源型花岗岩的特征,形成于后碰撞期或碰撞晚期的构造环境,源于早元古代变质杂砂岩的部分熔融。结合区域大地构造背景认为,这2个岩体形成于秦岭-大别和松马2条印支期缝合带碰撞结束后的印支晚期伸展构造背景下,为热-应力松弛阶段,板内挤压加厚的地壳减压熔融作用的产物。  相似文献   

16.
陈超  吕新彪  李杰  衮民汕 《地球科学》2020,45(12):4446-4462
为探讨大兴安岭中段塔尔气地区中酸性火山岩成因及构造背景,深化大兴安岭中生代火山岩带的对比研究,对该地区满克头鄂博组、白音高老组火山岩开展了锆石U-Pb定年、岩石地球化学及Hf同位素分析.满克头鄂博组年龄为154±2 Ma和154±3 Ma,白音高老组年龄为132±2 Ma.样品富碱质,贫镁和钙,为弱过铝质.富K、Rb、Zr、Hf,贫Eu、Ba、Sr、P、Ti等元素,具有中等到较强的Eu负异常.锆石饱和温度平均值分别为915℃和841℃,表现出A型流纹岩的特点.样品εHf(t)值分别介于+6.9~+8.4和+6.7~+7.9,tDM2分别介于624~670 Ma和611~682 Ma,指示岩浆来源于新元古代亏损地幔增生年轻地壳物质.本地区满克头鄂博组形成于蒙古-鄂霍茨克洋闭合后伸展早期阶段,白音高老组则形成于蒙古-鄂霍茨克洋闭合后岩石圈伸展及拆沉作用,同时受到太平洋板块俯冲引发的弧后伸展作用叠加的影响.   相似文献   

17.
To constrain the evolution of the eastern segment of the Paleo-Asian Ocean (PAO), petrography, geochemistry and zircon U-Pb dating analyses were conducted over the gabbro and rhyolite in the Kaiyuan area, North Liaoning, in the eastern segment of the northern margin of the North China Craton (NCC). Zircon dating results indicate that the gabbros and rhyolite were formed in the Trassic (246 +/- 2Ma, 241 +/- 2Ma, 226 +/- 3Ma and 241 +/- 2Ma). The three gabbros of Triassic have similar geochemical characteristics, originated from the mantle, and were contaminated by crust materials in the process of ascending and emplacement. The Early Triassic gabbro (246Ma) originated from the enriched mantle source metasomatized by fluid. It was formed by 1% partial melting of garnet spinel lherzolite in the extensional environment caused by breaking off slab. The Middle Triassic gabbro (241Ma) was derived from a transitional mantle metasomatized by fluid and melt, and was formed by 1% to 2% partial melting of garnet spinel peridotite. The Late Triassic gabbro (226Ma) was derived from a transitional mantle metasomatized by fluid and melt, and was formed by 3% similar to 4% partial melting of garnet spinel lherzolite in the post-orogenic extensional environment. The Middle Triassic rhyolite (241Ma) has the characteristic of post collisional I-type granite, that enriched in light rare earth elements and large ion lithophile elements, depleted in high field strength elements, and negative Nb, Ti, P and Sr anomaly. The low content of Sr and Yb suggested a 30 similar to 40km depth source. The Middle Trassic "bimodal" igneous rocks implied an extensional environment caused by the remainder oceanic crust breaked away at the bottom of the crust. Based on the lithologic association, regional strata information and the chronological data in this paper and published by predecessors, the Triassic magmatism in the eastern segment of the northern margin of the NCC can be divided into five stages: 252 similar to 246Ma, 246 similar to 242Ma, 242 similar to 240Ma, 240 similar to 230Ma and 230 similar to 215Ma. These five magmatic events were the results of the southward subduction and extinction of the PAO: (1) The transformation from active continental margin to syn-collisional setting resulted in the final closure of the PAO (252 similar to 246 Ma); (2) Continuous pushing resulted in orogenic uplift (246 similar to 242Ma); (3) Extension caused by the detachment of the remainder subduction oceanic crust at the bottom of the crust (242 similar to 240Ma); (4) Rapid uplift and crustal thickening (240 similar to 230Ma); (5) Extension of post-orogenic(230 similar to 215Ma).  相似文献   

18.
羌塘地块作为近年地质研究的热点,其构造属性及是否存在太古宙-元古宙基底等问题一直存在争议。文中采用LA ICP MS锆石U Pb法对西藏荣玛牛山上三叠统日干配错组碎屑锆石进行年代学研究,结果表明:(1)日干配错组沉积岩中最年轻碎屑锆石年龄为(215±2) Ma,表明日干配错组的最大沉积年限为该时间,结合区域地质资料可将其沉积时代限定为晚三叠世诺利期-瑞替期。(2)年龄介于(580±6)~(212±2) Ma,峰值为(298±2) Ma,表明在晚古生代早期受古特提斯洋发育早期地壳减薄伸展阶段岩浆活动影响,冈瓦纳古陆为其物源区;峰值为(442±3) Ma,表明在中古生代受加里东期扬子板块和华夏板块碰撞、拼合而形成的岩浆活动的影响,物源区为扬子大陆周缘;只获得1颗锆石650~500 Ma年龄,表明源区基本未受到泛非运动岩浆活动的影响。(3)碎屑锆石出现相对少量介于(1 091±6)~(757±6) Ma的年龄,表明在中-新元古代受格林威尔-晋宁构造岩浆热事件的影响,物源区与羌南地块一致。(4)日干配错组沉积岩碎屑锆石测年得到大量介于(3 214±7)~(1 380±15) Ma年龄值,占总量的近60%,峰值为(1 875±5) Ma和(2 531±6) Ma,表明羌塘地块受元古宙羌塘结晶基底主期构造热事件和太古宙末全球超大陆拼合事件影响显著,且羌塘地块存在太古宙-元古宙基底。  相似文献   

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