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1.
勐养侵入岩体位于滇西腾冲地块梁河县南勐养镇一带,主要由黑云母二长花岗岩和花岗闪长岩组成,其中发育闪长质包体。闪长岩包体与寄主岩石黑云母二长花岗岩和花岗闪长岩之间呈渐变过渡关系。锆石U-Pb LA-ICP-MS定年表明,黑云母二长花岗岩形成年龄为127.7Ma±0.7Ma,花岗闪长岩形成年龄为115.2Ma±1.1Ma。闪长岩包体形成年龄为122.6Ma±0.8 Ma。表明该花岗岩体的形成时代属于早白垩世。地球化学特征研究表明,闪长岩包体为准铝质、钙碱性系列,具有低SiO2、高MgO、高K20和Mg#的特征。Sm/Nd为0.18~0.20,ΣLREE/ΣHREE=2.91~4.64,Eu存在弱到中等程度的负异常。相对富集U,Th,Rb,Ba等大离子亲石元素(LILE),亏损Tb,Nb,Zr,Hf等高场强元素(HFSE);反映勐养闪长岩包体岩浆成分主要为幔源的特点。根据地球化学特征和微量元素构造判别图解判别结果表明,勐养早白垩世侵入岩形成于碰撞后岩浆弧环境。闪长岩包体的原生岩浆应是地幔橄榄岩部分熔融的产物。黑云二长花岗岩浆可能来源于本区中晚元古代高黎贡山群为代表的地壳物质的部分熔融。花岗闪长岩为幔源岩浆与高黎贡山群古老地壳部分熔融的岩浆混合的产物。腾冲地块早白垩世侵入岩与班公湖—怒江—泸水—瑞丽洋盆的闭合、洋壳向南西俯冲及板块间的碰撞造山作用密切相关。  相似文献   

2.
勐养侵入岩体主要由黑云母二长花岗岩(128 Ma)、花岗闪长岩(113 Ma)和辉长质(123 Ma)、闪长质包体(120Ma)组成。暗色包体主要分布在花岗闪长岩中,包体岩性主要为辉长岩包体和闪长岩包体。包体具有岩浆结构,部分包体具有塑性流变特征,有些包体具有淬冷边和反向脉,包体中可见针状磷灰石,表现出岩浆混合的岩相学特征。岩石地球化学特征研究表明,寄主岩石与暗色包体同为准铝质-过铝质、钙碱性-高钾钙碱性系列岩石。寄主岩石与暗色包体的的稀土配分曲线模式和微量元素原始地幔标准化蛛网图形态基本一致,为岩浆混合作用的结果。所有样品均富集大离子亲石元素(如Rb、Th、U和Nd)、亏损高场强元素(如Nb、Ta、Ce和Zr)。勐养早白垩世侵入岩形成于岩浆弧环境。暗色包体具有低的Si O2含量(Si O2为48.02%和59.8%)和高的Mg#值(Mg#=48.1~68.5),表明暗色包体的原生岩浆应是板块俯冲带流体交代地幔橄榄岩的部分熔融的产物,并受后期岩浆混合作用的改造。暗色包体锆石的εHf(t)为3.6~6.2,Nb/Ta值为12.1~15.4,显示岩浆源区具有亏损地幔特征。黑云二长花岗岩的Mg#=33.5,Nb/Ta值为10.9,表明岩浆主要来源于古老的地壳物质的部分熔融。花岗闪长岩锆石的Mg#=44,Nb/Ta值为12.5,岩浆主要来源于地幔和地壳,为黑云二长花岗岩与幔源岩浆混合作用的产物。腾冲地块早白垩世勐养侵入岩体及其暗色包体的的成因,是左贡—保山板块洋壳向南西俯冲在波密—腾冲地块之下,使区域地壳不断加厚并导致区域重力均衡隆升,深部地壳物质在加热后抬升减压过程中发生部分熔融,形成大量的花岗岩浆。由于俯冲洋壳板块在俯冲、碰撞过程中诱导的幔源岩浆与重熔物质发生岩浆混合作用,形成花岗闪长岩和暗色包体。  相似文献   

3.
巴颜喀拉山东段花岗岩锆石SHRIMP定年及其地球化学特征   总被引:6,自引:2,他引:6  
巴颜喀拉山东段花岗岩直接侵入到已发生褶皱的三叠纪地层中,并被侏罗系年宝组不整合覆盖,其锆石SHRIMP U-Pb年龄为218~197 Ma.岩石类型主要为花岗闪长岩、二长花岗岩和正长花岗岩,岩石具似斑状结构或斑状结构,富铝高钾,富黑云母,含石榴子石和电气石等富铝矿物及暗色微细粒闪长质包体的发育为特征,铝饱和指数A/CNK=1.00~1.22,属巴尔巴林划分的CPG型花岗岩类.形成于巴颜喀拉山造山带陆内碰撞造山阶段的晚期.  相似文献   

4.
辽宁兴城新立屯地区岩浆杂岩主要由4种不同的岩石单元组成,分别为似斑状黑云母二长花岗岩,中细粒石英闪长岩,花岗细晶岩和花岗伟晶岩,前两者分布广泛且为研究区的主要岩石单元,后两者则呈脉状侵入到前两者中。应用LA-ICP-MS锆石U-Pb定年方法,测得似斑状黑云母二长花岗岩,中细粒石英闪长岩及花岗细晶岩的年龄分别为2 496±18 Ma,2 490±19 Ma,2 479±29 Ma,形成于古元古代早期。结合野外地质特征,侵位顺序由早到晚依次为:似斑状黑云母二长花岗岩,中细粒石英闪长岩,花岗细晶岩,花岗伟晶岩。岩石地球化学特征显示,新立屯地区岩浆杂岩主量元素方面具高硅(SiO2=61.38%~74.99%),富碱(Na2O+K2O=6.86%~9.41%),富Mg#(56~70)特征;A/CNK=0.91~1.18,属准铝质-过铝质岩石;微量元素方面,相对富集轻稀土元素,亏损重稀土元素,具有Eu异常(δEu=0.50~0.96);富集大离子亲石元素,亏损高场强元素;锆石Lu-Hf同位素特征εHf(t)值为-1.12~+6.13;TDM2(Hf)介于2 594~2 937 Ma,显示该套岩浆杂岩可能为地幔物质加入新生地壳再造的产物。  相似文献   

5.
任永健 《地质学报》2019,93(11):2813-2831
近年来对张广才岭南部中生代花岗岩成因和演化等问题的研究较少,对其进行系统的同位素年代学和岩石地球化学研究有助于加深对张广才岭南部早—中侏罗世构造岩浆演化及地球动力学背景的认识。张广才岭南部早侏罗世花岗岩主要由黑云母石英闪长岩、黑云母花岗闪长岩和黑云母二长花岗岩组成,3件样品的LA- ICP- MS锆石U- Pb年龄为172. 7~182. 4Ma,属于早侏罗世。黑云母石英闪长岩和花岗闪长岩以含有大量暗色微粒包体为特点,具有钙碱性、A/CNK值小于1. 1、Eu具弱负异常(δEu=0. 55~1. 03)等地球化学特征,属于I型花岗岩,具有壳幔混合成因机制;黑云母二长花岗岩为过铝质高钾钙碱性岩石,具有S型花岗岩特征;中侏罗世黑云英云闪长岩富含暗色微粒包体,其A/CNK值小于1. 1(0. 88~0. 93),为钙碱性I型花岗岩;正长花岗岩和碱长花岗岩具有高硅(SiO2=76. 89%~77. 82%)、富碱(K2O+Na2O=6. 36%~8. 5%)、富铁贫镁(FeOT/MgO=6. 2~20. 6)的特征,并且稀土总量高、Eu负异常明显(δEu=0. 01~0. 74)、轻稀土富集、重稀土亏损,属于A2型花岗岩。对张广才岭南部早—中侏罗世花岗岩的研究表明,早侏罗世早期(172. 7~182. 4Ma),由于古太平洋板块的俯冲及后续的岩石圈拆沉效应, 导致地幔上隆及幔源岩浆的板底垫托造成古老地壳和新生地壳的部分熔融,由此形成具壳幔混合成因的花岗岩体;早侏罗世晚期(172. 7Ma),东侧佳木斯板块与张广才岭地块碰撞造山作用形成黑云母二长花岗岩体;中侏罗世早期(168. 1Ma),东侧大洋板块的俯冲作用持续,形成具壳幔混合成因的黑云英云闪长岩;中侏罗世晚期(166Ma),构造环境逐渐由挤压造山向造山后伸展环境转变。  相似文献   

6.
慕士塔格岩体是西昆仑造山带出露面积最大的侵入体,主要由黑云母二长花岗岩、似斑状黑云母二长花岗岩和花岗闪长岩组成,其中发育大量的暗色微细粒包体和基性岩浆条带。根据锆石的阴极发光图像以及Th、U、REE元素等特征,所测试的锆石均为典型的岩浆结晶锆石,利用LA-ICP-MS锆石U-Pb定年,测得岩体东西部分的加权平均206Pb/238U年龄分别为229.6±0.8Ma(MSWD=0.44)、232.8±1.5Ma(MSWD=0.21),两者在误差范围内一致,综合获得该岩体年龄为231.4±0.7Ma(MSWD=1.5),属于中三叠世晚期。根据岩石学、锆石内部结构及其REE元素特征,结合前人地球化学资料,该岩体应为壳幔岩浆混合成因。结合区域地质资料,慕士塔格岩体应是从挤压的主碰撞期向伸展后碰撞期转换的产物,表明古特提斯主碰撞作用发生在中三叠世晚期之前,之后开始进入古特提斯后碰撞阶段。  相似文献   

7.
通过对内蒙古苏尼特左旗阿尔善布拉格一带出露的黑云母二长花岗岩调查及LA-ICP-MS锆石U-Pb年龄测试分析,获得三个样品的锆石U-Pb年龄介于308.0±1.2 Ma~311.8±1.2 Ma,属于晚石炭世。地球化学分析结果显示:该岩石的SiO_2含量为65.22%~73.10%,富碱(K_2O+Na_2O=5.43%~7.71%),A/CNK值0.88~1.03,属准铝质钙碱性-高钾钙碱性系列;轻重稀土之间分馏较明显,轻稀土相对富集,重稀土元素亏损,配分图整体呈现出右倾特征,δEu为0.79~1.05,未见明显负铕异常;微量元素显示大离子亲石元素Rb、Ba、Th、U相对富集,Nb、Ta、P、Ti具有明显亏损。综合最新区域资料及本文研究成果,笔者认为阿尔善黑云二长花岗岩产生于碰撞挤压隆起向后碰撞伸展阶段转换的构造环境,是贺根山洋盆闭合后的后碰撞伸展阶段早期的产物。  相似文献   

8.
西昆仑造山带南侧的麻扎-康西瓦缝合带,是古特提斯洋闭合的位置。慕士塔格-公格尔作为昆仑山的主峰,紧邻该缝合带的东北侧分布,主要岩性为花岗闪长岩和黑云母二长花岗岩。作者系统研究了两种岩性的地球化学及年代学特征,探讨了岩石成因,反演了古特提斯洋的构造演化历史。岩体岩浆锆石LA-ICP-MS U-Pb测年结果显示,花岗闪长岩和黑云母二长花岗岩的成岩年龄分别为(213.0±0.5)~(215.4±0.9)Ma和(220.6±0.5)~(222.1±0.4)Ma,是晚三叠世岩浆活动的产物。两种岩性均为高硅(w(SiO2)65%)、富碱(w(K2O+Na2O)6%)、钙碱性-高钾钙碱性、准铝质(A/CNK1),富集大离子亲石元素(LILE)和轻稀土元素(LREE),亏损高场强元素(HFSE)和重稀土(HREE)。微量元素组成特征、低锆石饱和温度及高分异指数显示慕士塔格-公格尔花岗岩体为高分异I型花岗岩。岩体锆石的εHf(t)值变化范围较小,为-4.46~-0.17,指示岩浆以壳源为主。综合研究表明,慕士塔格-公格尔花岗岩体可能是同碰撞造山环境下,老的下地壳受地幔热源影响部分熔融,形成的长英质壳源岩浆侵入地壳内部而冷却结晶形成。  相似文献   

9.
北山南带沙枣园复式岩体由中细粒黑云母花岗闪长岩、细粒黑云母石英闪长岩、中粒黑云母二长花岗岩和中粗粒黑云母正长花岗岩4个岩相单元组成。LA-ICP-MS锆石U-Pb定年结果表明,中细粒黑云母花岗闪长岩、细粒黑云母石英闪长岩和中粒黑云母二长花岗岩侵位于晚二叠世(252.1±1.9Ma、252.2±2.1Ma和248.8±3.5Ma),为海西晚期的产物;而中粗粒黑云母正长花岗岩侵位于早三叠世(246.4±2.0Ma),为印支早期的产物。该花岗质岩石均具有稀土元素的球粒陨石标准化配分曲线呈右倾型,轻重稀土分馏大,轻稀土富集且分异明显,而重稀土亏损且分异不显著特征。中细粒黑云母花岗闪长岩和细粒黑云母石英闪长岩具有较高的SiO_2、Al_2O_3和Na_2O含量,以及较低的MgO含量,强烈富集Sr而亏损Yb和Y,具轻微的铕异常(δEu=0.75~1.16),表现出典型的埃达克岩特征;中粒黑云母二长花岗岩和中粗粒黑云母正长花岗岩总体富硅(SiO_2)、富钾(K_2O)、富碱(K_2O+Na_2O),Al_2O_3含量中等,铕分别呈现负异常(δEu=0.45~0.73)和强负异常(δEu=0.02~0.08)。年代学及地球化学特征研究表明:①中细粒黑云母花岗闪长岩和细粒黑云母石英闪长岩属准铝质-弱过铝质的钙碱性Ⅰ型花岗岩,并具有典型的埃达克岩特征,中粒黑云母二长花岗岩属弱过铝质的高钾钙碱性Ⅰ型花岗岩,中粗粒黑云母正长花岗岩属弱过铝质的高钾钙碱性A2型花岗岩;②中细粒黑云母花岗闪长岩、细粒黑云母石英闪长岩和中粒黑云母二长花岗岩的岩浆来源于下地壳玄武质岩石部分熔融源区,并在上升过程中混染了下地壳物质,而中粗粒黑云母正长花岗岩的岩浆来源于年轻地壳中富含黑云母的变质泥岩部分熔融源区;③中细粒黑云母花岗闪长岩、细粒黑云母石英闪长岩和中粒黑云母二长花岗岩是俯冲-碰撞构造背景条件下的岩浆产物,而中粗粒黑云母正长花岗岩是同碰撞-碰撞后构造背景条件下的岩浆产物。  相似文献   

10.
沙乐花岗岩位于滇西思茅地块南涧县南西沙乐乡一带,主要由黑云母二长花岗岩和花岗闪长岩组成,被少量正长斑岩侵入。LA-ICP-MS锆石U-Pb测年得出黑云母二长花岗岩的形成年龄为246.4±2.6Ma,花岗闪长岩的形成年龄为245.7±3.6Ma,表明该花岗岩体的形成时代属于早三叠世。岩石Si O2含量71.44%~76.39%,Al2O3含量12.72%~16.15%,K2O/Na2O=0.1~1.30,均属高钾钙碱性过铝-强过铝花岗岩。根据地球化学特征和微量元素构造判别图解,样品点主要落入"火山弧花岗岩"、"板内花岗岩"区域,少量落入"碰撞花岗岩"区域,表明其形成于俯冲-碰撞岩浆弧转换环境。在Sr-Yb花岗岩分类图解中,主要属常见的低Sr高Yb花岗岩,少数样品属低Sr低Yb花岗岩,其物质来源为含砂质的变质泥质岩。结合锆石定年结果及岩体产出的区域地质背景,认为沙乐花岗岩形成于缅泰马陆块与思茅地块大陆碰撞造山过程的初始阶段,同时表明昌宁-孟连洋碰撞最早时限为早三叠世。  相似文献   

11.
ABSTRACT

The magmatic generation for the Late Triassic–Early Jurassic (~215–200 Ma) and Early Cretaceous–Late Cretaceous (~108–79 Ma) post-collisional granites in the Sanjiang Tethys orogeny remain enigmatic. The Xiuwacu complex, located in the southern Yidun Terrane, consists of biotite granite with a weight mean 206Pb/238U age of 199.8 ± 2.5 Ma, aplite granite of 108.2 ± 2.3 Ma, monzogranite porphyry of 80.8 ± 1.0 Ma, and diorite enclaves of 79.2 ± 0.9 Ma and 77.9 ± 0.8 Ma. The Late Triassic biotite granites show I-type granite affinities, with high SiO2 contents, high Mg# values, high zircon δ18O values, and negative whole-rock ?Nd(t) values, indicating a predominant ancient crustal source with the input of juvenile materials. Their fractionated REE patterns and concave-upward middle-to-heavy REE patterns require garnet-bearing amphibolite as the melt source. The Cretaceous highly fractionated aplite granites and monzogranite porphyries have relatively high SiO2 contents, high (Na2O + K2O)/CaO ratios, high zircon δ18O values, and enriched whole-rock Sr–Nd isotopic signatures, suggesting that their parent magmas were likely originated from the ancient middle- to lower crust. Their significant negative Eu anomalies and obvious depletions in Nb, Sr, and Ti demonstrate that the Cretaceous granitic magmas had experienced more fractionation than the Late Triassic felsic magmas. The Late Cretaceous diorite enclaves show low SiO2 contents, high Mg# values, and high zircon δ18O values, suggesting that they were probably derived from the partial melting of subcontinental lithospheric mantle enriched by the Late Triassic subduction. The Late Triassic–Early Jurassic and Early Cretaceous–Late Cretaceous magmatism witnessed the post-collisional setting and intraplate extensional setting in response to the slab break-off and lithospheric-scale transtensional faulting, respectively. The partial melting of subduction-modified lithospheric mantle or/and residual sulphide cumulates within the lower crust during the origination of Late Cretaceous magmas could have provided metals for the formation of Xiuwacu deposit.  相似文献   

12.
李斌  陈井胜  刘淼  杨帆  李伟  吴振  陈敏华  武昌胜 《地质通报》2018,37(9):1671-1681
以赤峰地区铭山复式岩体、尖山子岩体为研究对象,通过锆石U-Pb年龄、地球化学研究,确定了其形成时代,探讨了岩石成因和岩浆源区性质及其形成的构造背景。LA-ICP-MS锆石~(206)Pb/~(238)U测年结果表明,铭山复式岩体中灰白色斑状黑云二长花岗岩、尖山子岩体中浅肉红色细粒正长花岗岩分别形成于284.4±7.9Ma、294.7±8.5Ma,为早二叠世。根据地质体间接触关系可知,铭山复式岩体中的二长花岗岩岩体和尖山子岩体均为复式岩体,有待进一步解体。斑状黑云二长花岗岩SiO_2含量较高,K_2O+Na_2O含量较高,A/CNK1,属于高钾钙碱性I型花岗岩。细粒正长花岗岩Al_2O_3含量为14.32%~15.14%,Na_2O/K_2O=0.71~0.99,A/CNK=1.17~1.20,在标准矿物中出现刚玉分子。二者微量元素特征相似,富集大离子亲石元素,亏损高场强元素Nb、Ta,具Sr、P、Ti的负异常,表现出岛弧岩浆岩类特征。结合岩石地球化学、区域地质特征,认为赤峰地区早二叠世岩体形成于岛弧/活动大陆边缘构造背景,其形成与古亚洲洋向南俯冲有关。  相似文献   

13.
The Jigongshan and Qijianfeng batholiths in the Tongbai orogen consist mainly of porphyritic hornblende-biotite monzogranite, biotite monzogranite, and biotite syenogranite, which are variably intruded by lamprophyre, diorite, and syenogranite dykes. Mafic microgranular enclaves commonly occur in the hornblende-biotite monzogranite, whereas surmicaceous enclaves are found in the biotite monzogranite. Both batholiths have zircon U–Pb ages ranging from ca. 139 to 120 Ma, indicating their emplacement in the Early Cretaceous. The hornblende-biotite monzogranite has an adakitic affinity marked by relatively high Sr/Y and (La/Yb) N ratios, lack of Eu anomalies, low MgO and Ni contents, and Na2O > K2O. Its chemical compositions, combined with enriched Sr–Nd isotopic signatures, suggest formation by dehydration melting of mafic rocks in a thickened lower crust. This thickened crust resulted from the Permo-Triassic subduction-collision between the North China and South China blocks and persisted until the Early Cretaceous. The biotite monzogranite and biotite syenogranite have low Al2O3, CaO, and Sr contents, low Rb/Sr, FeOt/MgO, and (Na2O + K2O)/CaO ratios, and flat HREE patterns with moderate to weak Eu anomalies. They were produced by partial melting of crustal materials under relatively low pressure. Partial melting at different crustal levels could have significantly contributed to mechanical weakening of the crust. The diorite and lamprophyre dykes show linear trends between SiO2 and major or trace elements on Harker diagrams, with two lamprophyre samples containing normative nepheline and olivine. These rocks have high La/Yb and Dy/Yb ratios, both displaying co-variation with contents of Yb. They were originated from relatively deep lithospheric mantle followed by fractionation of olivine + clinopyroxene + apatite + Fe–Ti oxides. Extensive partial melting in the lithospheric mantle indicates relatively high temperatures at this level. We suggest that the presence of adakitic magmas, thickened but weakened crust and high temperatures in the lithosphere mantle point to lower crustal delamination in the Early Cretaceous in the Tongbai orogen.  相似文献   

14.
内蒙古艾勒格庙二长花岗岩岩体分布在锡林浩特-艾勒格庙前寒武纪微陆块的西部,利用LA-MC-ICP-MS锆石UPb法测得其形成年龄为418.5±1.1Ma,侵入时代为晚志留世末期。岩石地球化学特征显示高硅(SiO_2 74.22%~75.51%),富钾(K_2O 5.41%~5.78%),铝饱和指数A/CNK在1.17~1.21之间,属于高钾钙碱性强过铝质花岗岩类。微量元素特征为富集Rb、Th、U、Pb、K和重稀土元素(Yb 3.74×10~(-6)~9.65×10~(-6)),强烈亏损Nb、Ta、P、Ti等元素。该岩体形成于后碰撞构造环境,是地壳增厚后折返减压部分熔融的产物。它的存在揭示,艾勒格庙苏左旗北部造山带在晚志留世之前已经发生弧陆碰撞,之后的顶志留世—中泥盆世为后碰撞-后造山的伸展背景。  相似文献   

15.
车路沟岩体位于北祁连造山带最西端,岩石类型以英云闪长玢岩和闪长玢岩为主。本次对英云闪长玢岩进行U-Pb年代学研究,获得加权平均年龄为(462.1±3.8)Ma,表明岩体形成于中奥陶世。岩石地球化学分析结果显示,英云闪长玢岩中SiO_2含量60.37%~66.73%,Al_2O_3含量15.65%~16.45%,Na_2O/K_2O值7.47~9.96,A/CNK为0.90~1.00,属中酸性岩系列,显示相对富钠、低钾的特征, A/CNK=0.90~1.00,属于准铝质低钾钙碱性系列;稀土总量较低(33.40×10~(-6)~39.27×10~(-6)),LREE/HREE值为3.95~6.51,在稀土元素配分图解上呈现出右倾特征;δEu值1.23~1.49之间,呈现Eu呈正异常特征;在微量元素原始地幔标准化图解上,显示富集Ba、Sr,亏损Nb、Ti、Yb高场强元素的特征。对车路沟岩体地质、地球化学特征与产出背景的全面分析,认为其为奥陶纪祁连洋持续向华北板块俯冲,诱使俯冲洋壳部分熔融形成的埃达克岩。  相似文献   

16.
辽东黄花甸地区古元古代花岗质岩浆作用及其地质意义   总被引:5,自引:4,他引:1  
胶-辽-吉古元古代造山/活动带的辽东黄花甸地区出露大量古元古代花岗质岩石,前人将该区的花岗质岩石统称为花岗质混杂岩。本文通过详细的野外地质调查和室内综合研究,将该套花岗质混杂岩解体为时代及性质完全不同的两类花岗岩——黑云母二长花岗岩和花岗闪长岩。其中黑云母二长花岗岩具有块状、条痕状、片麻状的不同构造类型,均显示富SiO_2(72.37%~77.44%)、贫Al_2O_3(11.69%~13.21%)、富K_2O(3.97%~5.11%)的特征,Na_2O/K_2O=0.64~1.08,TiO_2含量在0.18%~0.34%之间,MnO、MgO和P_2O_5的含量较低,分别为0.01%~0.07%、0.12%~0.32%和0.01%~0.06%,铝饱和指数A/CNK集中分布在1.33~1.45之间,A/NK在1.49~2.60之间,属于过铝质高钾钙碱性系列;微量元素Sr、Ba、Ti、P强烈亏损,具有明显的Eu负异常,具有A型花岗岩的特征。黑云母二长花岗岩的锆石大部分为具有清晰震荡环带结构的岩浆锆石,从3个样品获得LA-ICP-MS锆石U-Pb谐和年龄分别为2185±29Ma、2183±13Ma、2166±10Ma,据目前所获得南辽河群碎屑锆石年龄(1.95~2.15Ga),本文认为黑云母二长花岗岩的侵位时代要早于南辽河群地层沉积的时间,构成了南辽河群地层沉积的基底。花岗闪长岩呈岩枝状侵入黑云母二长花岗岩和里尔峪组地层中,富SiO_2(72.54%~74.31%)、Al_2O_3(15.01%~16.17%),全碱(K_2O+Na_2O)平均7.77%,相对富钠(Na_2O/K_2O=1.27~2.82),贫钙、镁,MgO平均为0.26%,CaO平均为1.59%,Mg#值平均为54.0,铝饱和指数A/CNK集中分布在1.61~1.78之间,A/NK在1.49~2.60之间,属于过铝质钙碱性系列,具明显的Eu正异常,Y/Yb低,Sr/Y高,而且强烈亏损Th、Ta、Nb、Ti等高场强元素,富集Ba、K、Rb、Sr等低场强元素,具有埃达克质花岗岩的特征。花岗闪长岩的锆石大部分为具有清晰震荡环带结构的岩浆锆石,从2个样品获得LAICP-MS锆石U-Pb年龄分别为1995±18Ma、1995±13Ma。可以推断花岗闪长岩的侵位时代为2.0Ga左右。本文认为具有A型特征的黑云二长花岗岩是陆块内部拉伸减薄-裂解过程中下部地壳部分熔融的产物,具有埃达克质特征的花岗闪长岩是俯冲过程中所形成火山弧或活动大陆边缘岩浆活动的产物。以上研究表明胶-辽-吉古元古代造山/活动带可能经历了在2.2~2.15Ga左右的拉伸裂解过程和2.0Ga左右俯冲挤压的构造演化过程。  相似文献   

17.
The Sichevita and Poniasca plutons belong to an alignment of granites cutting across the metamorphic basement of the Getic Nappe in the South Carpathians. The present work provides SHRIMP age data for the zircon population from a Poniasca biotite diorite and geochemical analyses (major and trace elements, Sr–Nd isotopes) of representative rock types from the two intrusions grading from biotite diorite to biotite K-feldspar porphyritic monzogranite. U–Pb zircon data yielded 311 ± 2 Ma for the intrusion of the biotite diorite. Granites are mostly high-K leucogranites, and biotite diorites are magnesian, and calcic to calc-alkaline. Sr, and Nd isotope and trace element data (REE, Th, Ta, Cr, Ba and Rb) permit distinguishing five different groups of rocks corresponding to several magma batches: the Poniasca biotite diorite (P1) shows a clear crustal character while the Poniasca granite (P2) is more juvenile. Conversely, Sichevita biotite diorite (S1), and a granite (S2*) are more juvenile than the other Sichevita granites (S2). Geochemical modelling of major elements and REE suggests that fractional crystallization can account for variations within P1 and S1 groups. Dehydration melting of a number of protoliths may be the source of these magma batches. The Variscan basement, a subduction accretion wedge, could correspond to such a heterogeneous source. The intrusion of the Sichevita–Poniasca plutons took place in the final stages of the Variscan orogeny, as is the case for a series of European granites around 310 Ma ago, especially in Bulgaria and in Iberia, no Alleghenian granitoids (late Carboniferous—early Permian times) being known in the Getic nappe. The geodynamical environment of Sichevita–Poniasca was typically post-collisional of the Variscan orogenic phase.  相似文献   

18.
The post-collisional Yangba granodiorite intruded into the Bikou metasedimentary-volcanic group, southern Mianlue Suture, central China. The host granodiorites contain many mafic microgranular enclaves which have acicular apatite, phenocrysts of host granodiorites, implying that the enclaves have been incorporated as magma globules into host granodioritic magma and undergone rapid cooling. The variation trends of major and trace elements between enclaves and host rocks suggest a mixing and mingling process with respect to their petrogenesis. The mafic microgranular enclaves are characterized by shoshonite with SiO2≤〈63%, σ (4.54-6.18)〉3.3, high K2O content (4.22%-6.04%), K2O/Na2O〉1; in the K2O-SiO2 diagram, all the samples plot in the shoshonite field, which are enriched in LILE and LREE, with obvious Nb, Ta negative anomalies, indicating a subducting fluid-metasomatised mantle source. Zircon LA-ICP-MS dating of the granodiorites yielded an age of 215.4±8.3 Ma, indicating they were formed during the late-orogenic or post-collisional stage (≤242±21 Ma) of the South Qinling Mountain Belt. The host granodiorites have many close compositional similarities to high-silica adakites from supra-subduction zone setting, but tend to have a higher concentration of K2O (3.22%-3.84%) and Mg^#. Chondrite-normalized rare-earth element patterns are characterized by high ratios of (La/Yb)N, the extreme HREE depletion and a lack of significant Eu anomalies. In conjunction with the high abundances of Ba and Sr as well as the low abundances of Y and HREE, these patterns suggest a feldspar-poor, garnet ± amphibole-rich fractionation mineral assemblage. High Mg^# values demonstrate that the host granodiorites were contaminated by enclave magma. On a whole, integrated geological and geochemical studies suggested the Yangba granodiorites and their mafic microgranular enclaves resulted from mixing of enriched mantle-derived shoshonitic magma and thickened lower crust-derived felsic magma. In combination w  相似文献   

19.
Diorite plutons at Al Hadah Saudi Arabia, which constitute part of the pan-African magmatic sequence (ca. 600 Ma), exhibit extensive development of epidote. The epidote alteration is concentrated along veins and dyke margins, and is characterised by transformation of plagioclase (Ab 67)+hornblende+biotite+quartz to epidote+hornblende+tremolite−actinolite+plagioclase (Ab 99)±quartz. The reactions involve addition of CaO and total Fe2O3, depletion of MgO, Na2O and K2O, with variable gains or losses of SiO2. Epidotised alteration products are hydrated and oxidised relative to the diorite precursor. The whole rock δ18O of fresh diorite is + 8.2‰ to + 8.8‰, whereas epidote domains have δ18O whole rock of +9.8‰ to +10.48‰ and negative Δ18Oquartz-plagioclase, implying oxygen isotope exchange with fluids at low temperatures. Epidotisation is considered to have accompanied influx of fluids into plutons during cooling and contraction. The fluids were probably deep formation waters with relatively high Ca2+/Na+ ratios, moving up thermal gradient.  相似文献   

20.
为确定罕庙地区石英二长闪长岩的形成时代、成因及地质意义,对罕庙地区石英二长闪长岩体进行了岩相学、LA-MC-ICP-MS锆石U-Pb年龄及地球化学研究。结果表明,石英二长闪长岩中的锆石为岩浆成因,~(206)Pb/~(238)U年龄加权平均值为134±1Ma,侵入时代属于早白垩世晚期。石英二长闪长岩中SiO_2含量为63.44%~68.96%,K_2O含量为2.04%~3.84%,Na_2O/K_2O值介于0.47~1.17之间,铝饱和指数A/CNK介于2.12~2.55之间,属于钙碱性-高钾钙碱性过铝质花岗岩类。微量元素特征为富集大离子亲石元素(如Rb、K)和活泼不相容元素(如Th、U),强烈亏损高场强元素(如Nb、Ta、P、Ti)。结合区域构造演化背景,该岩体受俯冲流体改造,与早白垩世晚期古太平洋板块斜向俯冲于欧亚大陆之下的弧后伸展减薄等综合作用有关。  相似文献   

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