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1.
通过对新疆东准噶尔卡拉麦里地区贝勒库都克岩体的岩石地球化学特征的研究,结果表明,在贝勒库都克黑云母花岗岩中Rb、K和Th等大离子亲石元素明显富集,相对富集Zr、Hf等高场强元素,相对亏损Ba、Sr、Nb和Eu等元素,稀土元素含量相对较高,Eu的负异常极强,稀土元素配分模式呈平坦的“V”字型,属于典型的铝质A型花岗岩。该花岗岩在成因上属于A2型,形成于后碰撞的张性环境,其来源可能与洋壳和岛弧建造组成的年轻地壳有关。花岗岩微量元素构造判别图显示它是一种后碰撞花岗岩,标志卡拉麦里地区在晚石炭世造山作用的结束和板内构造演化的开始。该岩体锡质量分数普遍都比较高(15.50×10^-6),为锡的成矿物质来源和锡矿矿床学的深人探索提供重要参考。  相似文献   

2.
杨高学 《地质与勘探》2009,45(5):530-538
本文通过对新疆东准噶尔卡拉麦里地区贝勒库都克岩体的地球化学研究,初步探讨贝勒库都克A型花岗岩与锡矿的关系。研究表明贝勒库都克黑云母花岗岩具有高硅、低铝、贫钙镁、富碱的特征,FeOt/MgO值高,富集Rb、K、Th等大离子亲石元素及Zr、Hf等高场强元素,亏损Ba、Sr、Nb、Eu等元素,Eu的负异常极强,稀土元素配分模式呈平坦的V字型,属于典型的铝质A型花岗岩。该岩体含Sn普遍都比较高,已圈出8条含锡构造蚀变带,为锡的成矿物质来源和锡矿矿床学的深入探索提供了有利的证据。  相似文献   

3.
西准阿克巴斯陶铝质A型花岗岩厘定及意义   总被引:3,自引:0,他引:3  
岩石学和元素地球化学研究表明,阿克巴斯陶岩体属铝质A型花岗岩.该岩体以富硅(SiO2=74.51%~78.39%)、富碱(Na2O+K2O=7.87%~8.53%)和铝(Al2O3=11.8%~13.33%)、贫镁(MgO=0.15%~0.46%)、贫钙(CaO=0.45%~1.02%)和磷(P2O5=0.01%~0.06%),氧化指数变化较大(W=0.22~0.57),高FeOt/MgO比值(2.76~9.24,平均5.83)为特征.其K2ONa2O,NK/A=0.60~0.68,A/NCK=1.00~1.06,均大于1,属弱过铝质岩石.微量和稀土元素组成上,岩石富高场强元素(Zr和Hf等),亏损Ba,Nb,Ta,Y等元素.Zr+Nb+Ce+Y元素组合平均值(368.3×10-6)大于A型花岗岩下限值(350×10-6).在FeOt/MgO-Zr+Nb+Ce+Y和Rb/Ba-Zr+Ce+Y两类地球化学判别图解上均落入A型花岗岩区.δEu为0.038~0.130,铕强烈亏损,稀土分布曲线为"V"字型.上述特征表明,阿克巴斯陶岩体与国内外铝质A型花岗岩十分相似.在Nb-Y-Ce、AR-R1和R1-R2构造环境判别图上,显示出后造山花岗岩特征.阿克巴斯陶铝质A型花岗岩的厘定,对探讨西准噶尔地区构造演化问题具有重要意义.  相似文献   

4.
新疆东准噶尔卡拉麦里地区是一个重要的锡成矿带,分布有多种类型花岗岩。贝勒库都克岩体位于锡成矿带中部,由黑云母正长花岗岩和黑云母二长花岗岩组成。本文通过精确的LA-ICP-MS锆石U-Pb测年获得贝勒库都克含锡黑云母正长花岗岩年龄为283±2Ma,MSWD=0.14(95%置信度),时代属于早二叠世,这与东准噶尔后碰撞深成岩浆活动的范围(330~265Ma)相吻合。岩石地球化学研究表明,贝勒库都克岩体富硅(SiO2=75.25%~76.67%),低铝(Al2O3=11.91%~12.86%),贫镁(MgO=0.02%~0.18%)和钙(CaO=0.39%~0.89%),富碱(Na2O+K2O=8.08%~8.97%),K2ONa2O,NK/A=0.86~0.95(平均0.92),A/NCK=0.97~1.02,富集Rb、K等大离子亲石元素及Zr、Hf等高场强元素,Ba、Nb、Sr强烈亏损,δEu=0.01~0.11,其FeOt/MgO(12.71~84.51,平均34.55)和10000Ga/A1(2.97~4.20)值大,HFSE元素(Zr+Nb+Ce+Y=191.8×10-6~353.3×10-6)含量高,明显不同于典型的I型和S型花岗岩,基本属于典型的铝质A型花岗岩。年代学和地球化学综合研究表明,贝勒库都克铝质A型花岗岩是壳幔混合成因,是准噶尔地区后碰撞幔源岩浆底侵作用导致大陆地壳垂向生长过程的记录者。  相似文献   

5.
新疆东准噶尔苏吉泉铝质A型花岗岩的确立及其初步研究   总被引:38,自引:0,他引:38  
新疆东准噶尔卡拉麦里地区是一个重要的锡成矿带,分布有多种类型花岗岩,其中黑云母花岗岩长期以来被认为是S型花岗岩。本文研究表明,苏吉泉黑云母花岗岩富集Rb、K等大离子亲石元素及Zr、Hf等高场强元素,其FeO/MgO和10000Ga/Al值大,明显不同于典型的I型和S型花岗岩,属于典型的铝质A型花岗岩。锆石的LA-ICPMSU-Pb定年结果显示其形成时代为304±2Ma,比该区钙碱性花岗岩侵位晚,而与碱性花岗岩形成时代相近。这些黑云母花岗岩具有高εNd(t)的同位素特征,但它们不是直接来源于亏损地幔,而更可能是源自地幔且被深埋的年轻地壳物质部分熔融和结晶分异作用的产物。花岗岩微量元素构造判别图显示它们是一种后碰撞花岗岩,标志晚石炭世卡拉麦里地区造山作用的结束和板内构造演化的开始。  相似文献   

6.
秦亚  梁一鸿  胡兆初  冯坚  李敏 《地球科学》2013,38(4):677-688
主微量元素分析和LA-ICP-MS锆石U-Pb年龄显示吉南老岭地区的头道、老岭、上绿水桥和高台子岩体为一套早白垩世铝质A型花岗岩.主要岩性为钾长花岗岩、晶洞钾长花岗岩、花岗斑岩和花岗岩.LA-ICP-MS锆石U-Pb年龄为121~125Ma.主量元素具有富Si、alk, 贫Fe、Mg、Ca、Ti的特征; 微量元素亏损Ba、Sr、Ti、Nb、Ta、P, 富集K、Rb、Th等不相容元素; 稀土元素具有中等到强烈的负铕异常及右倾海鸥型的球粒陨石标准化稀土配分模式.元素地球化学特征表明岩体为铝质A型花岗岩(A/CNK=0.82~1.15, A/NK=1.00~1.28).岩石具有较低的不相容元素Ce/Nb、Y/Nb、Yb/Ta比值, 为A1型非造山花岗岩.研究表明吉南老岭地区早白垩世时处于非造山的伸展构造环境, 是华北板块东部早白垩世伸展地球动力学背景在吉林南部地区的岩浆活动体现.   相似文献   

7.
福建沿海铝质A型花岗岩的地球化学及岩石成因   总被引:71,自引:7,他引:71  
以乌山、金刚山和新村三个典型岩体为例,系统研究了福建沿海铝质A型花岗岩的地质和地球化学特征。研究结果表明,铝质A型花岗岩常含有锰铝榴石、富锰白云母等特征的富铝矿物,化学成分上相对富铝,为一套准铝到弱过铝的岩石组成,并具有贫磷、贫钛,氧化指数较低等特征。与碱性花岗岩相比,其Nb、Ta、Zr、Hf、Ga、Y和Zn等元素的含量及稀土总量和Ga/Al比值均偏低,但轻、重稀土的分馏程度(尤其是重稀土的分馏程  相似文献   

8.
杨高学  李永军  司国辉  吴宏恩  金朝 《地质学报》2010,84(12):1759-1769
新疆东准噶尔卡拉麦里地区是一个重要的锡成矿带,分布有多种类型花岗岩。贝勒库都克岩体位于锡成矿带中部,由黑云母正长花岗岩和黑云母二长花岗岩组成。本文通过精确的LA-ICP-MS锆石U-Pb测年获得贝勒库都克含锡黑云母正长花岗岩年龄为283±2Ma,MSWD=0.14(95%置信度),时代属于早二叠世,这与东准噶尔后碰撞深成岩浆活动的范围(330~265Ma)相吻合。岩石地球化学研究表明,贝勒库都克岩体富硅(SiO2=75.25%~76.67%),低铝(Al2O3=11.91%~12.86%),贫镁(MgO=0.02%~0.18%)和钙(CaO=0.39%~0.89%),富碱(Na2O+K2O=8.08%~8.97%),K2O>Na2O,NK/A=0.86~0.95(平均0.92),A/NCK=0.97~1.02,富集Rb、K等大离子亲石元素及Zr、Hf等高场强元素,Ba,Nb,Sr强烈亏损,δEu=0.01~0.11,其FeOt/MgO(12.71~84.51,平均34.55)和10000Ga/A1(2.97~4.20)值大,HFSE元素(Zr+Nb+Ce+Y=191.8×10-6~353.3×10-6)含量高,明显不同于典型的I型和S型花岗岩,基本属于典型的铝质A型花岗岩。年代学和地球化学综合研究表明,贝勒库都克铝质A型花岗岩是壳幔混合成因,是准噶尔地区后碰撞幔源岩浆底侵作用导致大陆地壳垂向生长过程的记录者。贝勒库都克铝质A型花岗岩Sn的含量高(6.0×10-6~19.5×10-6,个别为80.0×10-6),铝质A型花岗岩是成矿热液的直接母体,而富Sn的流体相最终形成了贝勒库都克锡矿床,锡矿与铝质A型花岗岩是同期地质事件的产物。  相似文献   

9.
西准噶尔地区广泛发育晚古生代后碰撞花岗岩,年龄多集中于300Ma左右,在时代上属于晚石炭世,A型花岗岩具有高硅、低铝、富碱、准铝质—弱过铝质、贫钙、低镁,10 000×Ga/Al比值较大,强烈富集高场强元素(HFSE)及Zr、Y、Ga等元素,Sr、Ba强烈亏损,稀土配分模式图呈现典型的右倾"海鸥型"等,并且在A1-A2...  相似文献   

10.
西准噶尔地区广泛发育晚古生代后碰撞花岗岩,年龄多集中于300Ma左右,在时代上属于晚石炭世,A型花岗岩具有具有高硅、低铝、富碱、准铝质-弱过铝质、贫钙、低镁,10000×Ga/Al比值较大,强烈富集高场强元素(HFSE)及Zr、Y、Ga等元素,Sr、Ba强烈亏损,稀土配分模式图呈现典型的右倾“海鸥型”等,并且在A1—A2型花岗岩判别图解显示具有典型的铝质A型的A2型花岗岩特征,表明A型花岗岩可能是年轻地壳(洋壳和岛弧)部分熔融形成的美云闪长-花岗闪长岩质岩浆经进一步分离结晶作用的产物,具备规模成矿的条件.  相似文献   

11.
新疆西准噶尔沿达拉布特构造带出露几个主要由碱长花岗岩组成的花岗岩基(包括庙儿沟、阿克巴斯套、克拉玛依及红山等岩体)。岩石学和元素地球化学研究表明,碱长花岗岩属于典型的铝质A型花岗岩,其10000×Ga A/l比值大。锆石的LAI-CPMS UP-b定年结果证实它们的形成时代均为~300Ma,与东准噶尔的碱性花岗岩体的侵位年龄一致。这些碱长花岗岩在成因类型上属A2型,形成于后碰撞的张性环境中。花岗岩的Nεd(t)= 6.42~ 7.46,但众多地质地球化学特征显示它们不是直接来源于亏损地幔,而更可能是由洋壳和岛弧建造组成的年轻地壳部分熔融形成的花岗闪长质岩浆再经过分离结晶作用的产物。  相似文献   

12.
Widespread in the Wuyi Mountain area of eastern Jiangxi are petrochemically peraluminous granites and they are characterized as being high in silica (SiO2 > 75% ) and highly alkaline (ALK=6.9% -7.5%) with K2O > Na2O and rather high ratios of FeOT/MgO (11.3-17.9). The rocks have low contents of CaO, MgO, TiO2 and P2 O5. The granites are enriched in REE (ΣREE =210.3 - 496. 8 μg/g) with remarkable negative Eu anomalies, but depleted in Eu, Ba, Sr, V, Co, and Ni, with 10000 x Ga/Al ratios, varying from 6. 1 to 9. 8. It is clear that these granites are obviously different from the I- and S-type granites, but are quite similar to those typical A-type granites such as aluminous A-type granites in the coastal areas of Fujian Province. State Geological Survey Project: supported by the Regional Geological Survey Project (No: 20001300002091 ) on the basis of the maps (scale 1: 250000) of Jingdezheng City, Nanchang City and Shangrao City.  相似文献   

13.
杭州泗岭铝质A型花岗岩的发现及其构造意义   总被引:4,自引:0,他引:4       下载免费PDF全文
初步研究表明,以往被认为是典型的S型花岗岩或改造-重熔型花岗岩的泗岭岩体应为铝质A型花岗岩。该岩体高硅、碱、钾而明显贫钙、镁;高(K2O Na2O)/CaO值(平均16.79)和AKI指数(平均0.92);FeO*/MgO比值大(平均13.95),高于M型、S型和I型花岗岩,而与世界A型花岗岩平均值(13.4)相近;岩石为弱碱性、准铝-弱过铝质,富含稀土元素、HFSE元素,高Rb、F和Nb,反映其具A型花岗岩的成分特征。泗岭岩体氧同位素δ18O为 8‰~ 9‰,反映岩浆主要起源于下地壳。该岩体侵位于拉张的构造环境,是晚白垩世早期一次重要的构造-岩浆热事件,同时也反映了区域性孝丰—三门湾大断裂与学川—湖州大断裂在晚白垩世早期处于拉伸阶段。  相似文献   

14.
韩宇捷  甘林 《新疆地质》2012,30(2):157-160
对新疆东准噶尔贝勒库都克岩体具代表性岩石进行Hf-O同位素测定,结果显示贝勒库都克岩体碱长花岗岩和二长花岗岩锆石具较一致的高正εHf(t)值。两个样品εHf(t)值分别为εHf(t)=12.6±0.3(正长花岗岩)和εHf(t)=12.7±0.3(二长花岗岩),其中二长花岗岩δ18O=9.19。结合微量元素地球化学特征,认为贝勒库都克岩体花岗岩不是直接起源于亏损地幔,源岩可能是该区早期发育的玄武质洋壳与少量陆源沉积物的混合物。  相似文献   

15.
Late Paleozoic post-collisional granitoids are widespread in West Junggar,as well as northern Xinjiang.As a representative of those intrusions,the Jietebutiao granite occurs in the southwestern margin of the West Junggar(northwest China),and is mainly composed of mid-coarsegrained monzogranite and syenogranite.In the present study,we report the results of high-precision zircon laser-ablation-inductively-coupled plasma mass-spectrometry U-Pb dating on the Jietebutiao granite for the first time,and yield weighted mean 206Pb/238U ages of 287±9 Ma and 278±3 Ma for monzogranite and syenogranite,respectively.The Jietebutiao granite has a pronounced A-type affinity;it is metaluminous to slightly peraluminous;has a high-K calc-alkaline composition;high concentrations of Na2O + K2O,varying from 6.8 to 8.5 wt%;high FeOt/MgO;10 000a/Al ratios,a low CaO,MgO,and TiO2 content;enriched in some large ion lithophile elements(LILE,such as Rb and Th) and high field strength elements(HFSE,such as Zr,Hf,and Y);and depleted in Sr,Ba,and Ti.In addition,the granite has a relatively high rare earth element(REE) content(except for Eu), with significant negative Eu anomalies(Eu/Eu* = 0.01-0.72),and showing slight tetrad REE patterns and non-charge and radius controlled(CHARAC) trace element behavior.Petrographic,geochemical, and geochronological data suggest that the parental magma of Jietebutiao intrusions are of mixed origin,and are most probably formed by the interaction between the lower crust- and mantle-derived magmas in the Early Permian post-collisional tectonic setting.The basaltic magmas underplated and interacted with the lower crust that was dominated by deeply buried arc(and back-arc basin) series and the oceanic crust formed in the Paleozoic,and then triggered the partial melting of the juvenile lower crust,producing voluminous granitic melts and forming the Jietebutiao A2-typc monzogranites, with the lithospheric mantle progressively thinning and rifting to form A1-type granites,such as syenogranites,in the Jietebutiao pluton.This further proves the important contribution of Late Paleozoic granitic magmatism in terms of vertical crustal growth in northern Xinjiang.  相似文献   

16.
西准噶尔乃至整个北疆地区广泛发育晚古生代后碰撞花岗岩类。作为其中的一部分,乌尔喀什尔山一带库鲁木苏岩基中的库鲁木苏序列主要由二长花岗岩、细粒正长花岗岩、中粗粒正长花岗岩、碱长花岗岩和碱长花岗斑岩组成。该序列富硅(Si O2=70.78%~76.85%)、富碱(K2O+Na2O=7.87%~9.71%)、低钛(Ti O2=0.08%~0.41%)、贫钙(Ca O=0.16%~1.42%),为准铝质至强过铝质(ACNK=0.98~1.15);稀土元素配分曲线为典型的"V"字型,具有明显的负Eu异常;微量元素特征显示富集大离子亲石元素(Rb、Th、K)及高场强元素(Zr、Hf),而强烈亏损Ba、Sr、P、Eu和Ti。以上特征表明库鲁木苏序列为A2型花岗岩,结合区域构造演化,认为库鲁木苏序列形成于后碰撞环境。  相似文献   

17.
《China Geology》2022,5(3):457-474
The A-type granites with highly positive εNd(t) values in the West Junggar, Central Asian Orogenic Belt (CAOB), have long been perceived as a group formed under the same tectonic and geodynamic setting, magmatic sourceq and petrogenetic model. Geological evidence shows that these granites occurred at two different tectonic units related to the southeastern subduction of Junggar oceanic plate: the Hongshan and Karamay granites emplaced in the southeast of West Junggar in the Baogutu continental arc; whereas the Akebasitao and Miaoergou granites formed in the accretionary prism. Here the authors present new bulk-rock geochemistry and Sr-Nd isotopes, zircon U-Pb ages and Hf-O isotopes data on these granites. The granites in the Baogutu continental arc and accretionary prism contain similar zircon εHf(t) values (+10.9 to +16.2) and bulk-rock geochemical characteristics (high SiO2 and K2O contents, enriched LILEs (except Sr), depleted Sr, Ta and Ti, and negative anomalies in Ce and Eu). The Hongshan and Karamay granites in the Baogutu continental arc have older zircon U-Pb ages (315–305 Ma) and moderate 18O enrichments (δ18Ozircon=+6.41‰–+7.96‰); whereas the Akebasitao and Miaoergou granites in the accretionary prism have younger zircon U-Pb ages (305–301 Ma) with higher 18O enrichments (δ18Ozircon=+8.72‰–+9.89‰). The authors deduce that the elevated 18O enrichments of the Akebasitao and Miaoergou granites were probably inherited from low-temperature altered oceanic crusts. The Akebasitao and Miaoergou granites were originated from partial melting of low-temperature altered oceanic crusts with juvenile oceanic sediments below the accretionary prism. The Hongshan and Karamay granites were mainly derived from partial melting of basaltic juvenile lower crust with mixtures of potentially chemical weathered ancient crustal residues and mantle basaltic melt (induced by hot intruding mantle basaltic magma at the bottom of the Baogutu continental arc). On the other hand, the Miaoergou charnockite might be sourced from a deeper partial melting reservoir under the accretionary prism, consisting of the low-temperature altered oceanic crust, juvenile oceanic sediments, and mantle basaltic melt. These granites could be related to the asthenosphere’s counterflow and upwelling, caused by the break-off and delamination of the subducted oceanic plate beneath the accretionary prism Baogutu continental arc in a post-collisional tectonic setting.©2022 China Geology Editorial Office.  相似文献   

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