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51.
52.
辽东矿洞沟地区四张磙子古元古代花岗岩识别及意义   总被引:1,自引:0,他引:1  
为深入研究辽宁盖州四张磙子花岗岩的形成时代、地质特征及意义,通过锆石LA-ICP-MS U-Pb定年系统和X射线荧光光谱仪,对四张磙子花岗岩进行年龄测试和主微量元素分析.锆石定年结果表明,四张磙子花岗岩侵位年龄为(1 871.2±9.3)Ma,属于古元古代产物.主微量元素结果表明,四张磙子花岗岩与矿洞沟正长岩及闪长岩的Si O2与K2O及Na2O基本呈现正相关,与Ti O2,Al2O3,TFe2O3,Ca O,Mg O,M n O呈负相关,表明3种岩体可能具有亲缘关系.结合前人研究,认为四张磙子花岗岩与矿洞沟正长岩、闪长岩可能具有同一岩浆来源,四张磙子花岗岩为古元古代侵位的花岗岩体.  相似文献   
53.
柴北缘构造带泥盆纪构造属性研究   总被引:2,自引:2,他引:0  
根据露头及钻井资料,依据沉积学理论,对柴达木盆地东北部泥盆系地层厚度、碎屑颗粒组成、锆石年龄、超覆关系和沉积体系展布等进行研究。结果表明:柴北缘地区(包括柴北缘构造带与欧龙布鲁克微板块)泥盆纪发育自南向北展布的沉积体系,碎屑物质来源于由多个前泥盆纪构造岩片组成的造山带;该阶段柴北缘构造带构造属性既不是前陆盆地也不是裂陷槽,而是由多个前泥盆纪构造岩片组成的造山带;该造山带隆升开始于距今约465 Ma,遭受剥蚀开始于距今约430 Ma,其隆升可能持续到晚石炭世甚至二叠纪早期,初步推断该造山带至少存在了190 Ma,包括距今465~430 Ma的山体隆升与距今430~275 Ma的山体剥蚀阶段。  相似文献   
54.
卓勒萨依一带的乌郎组火山岩位于温泉县城东南25km处,岩石类型主要为安山岩和流纹岩,火山岩浆具有由酸性—中性—酸性演化的特点,以裂隙式喷发类型为主。LA-ICP-MS锆石U-Pb年龄为(293±3)Ma(MSWD=0.34、Probability=0.997),时代为早二叠世早期。该火山岩里特曼指数(σ)为1.71~2.60;碱度率(AR)为2.13~2.85,K2O/Na2O比值为0.31~1.83,属钙碱性系列。Nb/Ta值为18.65~22.85,略高于原始地幔值,Zr/Hf值为28.54~41.08,与原始地幔值相近。RbN/YbN比值为9.82~20.04,大于1,属于强不相容元素富集分配形式。稀土总量∑REE为 (118.41~194.70)×10-6;(Ce/Yb)N值为2.55~3.70,(La/Yb)N值为2.98~4.17,均大于1,属于轻稀土富集型,且轻稀土分馏明显;δEu值为0.19~0.59,远小于1,显示为负铕异常,铕亏损明显。根据相关构造环境判别图解,结合火山岩的地球化学特征及其所处的区域地质背景,认为在早二叠世发生大规模的陆陆叠覆造山作用,卓勒萨依一带火山活动较强烈,所反映的构造环境为陆内岛弧造山带火山岩环境。  相似文献   
55.
通过对藏东地区芒康盆地拉屋拉组高钾岩体(粗面岩体)2个代表性样品的LA-ICP-MS锆石U-Pb同位素年龄测试,获得该岩体的形成时代。岩石蚀变较轻,主要由长石(斜长石、钾长石)和黑云母组成;其LA-ICP-MS锆石U-Pb测年得到的加权平均年龄分别为(35.2±1.3)Ma和(36.4±0.3)Ma。这些测年值为高钾岩体的形成提供了一个准确时限。同时表明,芒康盆地高钾岩体属晚始新世的产物,为藏东地区金沙江-红河构造带的重要组成部分,也是金沙江-红河构造带发生局部的陆内俯冲的又一具体表现。  相似文献   
56.
TheNorthQilianMountainsattheboundarybe-tweenGansuandQinghaiProvincesareafamousCaledo-nianplatesuturezoneinthenorthwesternChina.Thissuturezoneis80to100kmwideandextendsintheNWdirectionparalleltotheNorthQaidamUHPbeltinthesouth[1,2].Itconsistspredominantlyofophiolite,island-arccomplexandhigh-presuremetamorphicrocks[38],andshowstypicalfeaturesofPacific-type[9](orB-type)sub-ductionzone.Spatially,thehigh-pressurerockscanbesubdividedintohigh-gradeblueschistbeltandlow-gradeblueschistbelt[5,6].Th…  相似文献   
57.
A felsic tuffaceous rock, obtained from a metamorphosed sequence of volcanics and sediments of the Hutuo Group, 8 km south of Taihuai in Wutaishan, contains two zircon populations. These record SHRIMP 207Pb/206Pb weighted mean ages of 2180±5 Ma and 2087±9 Ma, respectively. The older date is within error of the age of the Dawaliang Granite in Wutaishan and is considered to be  相似文献   
58.
The Qiashikansayi granodiorite is foliated resulting in a granodioritic gneiss. Its geochemical features, such as alumina saturation index(A/CNK) of 0.81-0.99, Na2O/K2O values>1, TiO2 contents <1.0%, LREE enrichment with high fractionation factors, weakly negative or no Eu anomalies, and significant Ba and Ti negative anomalies, suggest that it is similar to a typical island arc pluton. The trace elements of the Qiashikansayi granodiorite are plotted in the island arc field in the tectonic setting discrimination diagrams as well. Cathodoluminescence images demonstrated that the zircons have clear rhythmic crystallized zoning, without any remnant core and new crystallized rim, suggesting the zircons be magmatic ones. Their U and Th contents vary in the range of 574-870 μg/g, and 279-556μg/g respectively, with the Th/U ratio in the range of 0.52-0.68. SHRIMP zircon U-Pb dating yielded the 481.5±5.3 Ma age for the intrusion of the granodiorite, which is coeval with the island arc volcanic rocks in the no  相似文献   
59.
The genesis of the Carboniferous volcanic rocks in the Dahalajunshan group, mainly consisting of trachytes and trachy-andesites and distributing widely in western Tianshan Mountains, remains to be controversial. It has been proposed to be relevant to “rift” or “plume”. Detailed petrology and geochemical data presented in this paper show that these volcanic rocks represent typical continental arc magmatism. The volcanic rocks are mainly trachy-andesitic, and the magma source is enriched in LILE, Th and Pb, and depleted in HFSE and Ce. Trace element geochemical study suggests that the basalts could be modeled by 7% -11% partial melt of garnet Iherzolite. The volcanic rocks in the Dahalajunshan group are neither the products of “rift” nor so-called “plume”but represent the continental island arc of the Paleo-Southern Tianshan Ocean. The mantle wedge had been modified by the melt generating in subduction zone during a long evolution history of this island arc. The continental crust materials (i.e. mainly sediment on ocean floor) had been added into island arc through melt in subduction zone. Volcanic rocks occurring in different regions might represent magma eruption in different time. The zircon SHRIMP dating indicates that the ages of the basalt varies between 334.0 Ma and 394.9 Ma. The 13 analyses give an average age of 353.7±4.5 Ma (MSWD = 1.7). The apparent ages of zircons in trachy-andesite vary between 293.0 Ma and 465.4 Ma. All analyses fall on the U-Pb concordant line and are divided into two groups. 8 analyses produce an average age of 312.8±4.2 Ma (MSWD = 1.7), which represents the crystallizing age of zircon rims in trachy-andesite. The acquired two ages (i.e. 354 and 313 Ma) belong to the Early Carboniferous and Late Carboniferous epochs, respectively. Thus, the Dahalajunshan group would be separated into several groups with the accumulation of high-quality age dating and data of trace element and isotopic geochemistry, in our opinion.  相似文献   
60.
Using the in situ zircon U-Pb dating method of LA-ICPMS, we analyzed the 31 Ma old SHRIMP U-Pb age of the Yongsheng nepheline syenite from southern Jilin Province under different spot sizes. The obtained ages are comparable with that of SHRIMP in both accuracy and precision. The age is also identical to that of the Yinmawanshan gabbro from the Liaodong Peninsula within error. Both the Yongsheng nepheline syenite and the Yinmawanshan gabbro represent the youngest known exposed intrusions in northeastern and even eastern China. The results indicate the Eocene mantle-derived magmatic underplating, and the rapid crustal uplifting of this region since 30 Ma. The analyses also document extremely high LREE concentrations and relatively fiat REE patterns for the zircons from the Yongsheng nepheline syenite, which represent a new type of zircon REE pattern.  相似文献   
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