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1.
根据主量元素、微量元素和Sr-Nd同位素地球化学研究结果,觉罗塔格构造带中企鹅山群火山岩企鹅山群火山岩分为拉斑玄武岩和钙碱性玄武岩,拉斑玄武岩和钙碱性玄武岩均具有高铝、低钛和相对富集轻稀土元素(LREE)、大离子亲石元素的特征,与典型的岛弧玄武岩相似。钙碱性玄武岩具有显著的Eu的负异常,其不相容元素含量显著高于拉斑玄武岩,在La/Sm-La图解中,钙碱性玄武岩为结晶分异作用的产物,拉斑玄武岩则为平衡部分熔融的产物。Sr-Nd同位素特征表明企鹅山群火山岩源自亏损地幔。在玄武岩构造环境判别图中样品均落入岛弧玄武岩范围内。通过综合该区岩石组合特征、地球化学特征、地球物理特征,认为企鹅山群为康古尔洋壳向北俯冲在大南湖岛弧南侧形成的石炭纪岛弧火山岩。  相似文献   

2.
东天山觉罗塔格构造带晚古生代火山岩地球化学特征及意义   总被引:10,自引:7,他引:10  
本文报道了觉罗塔格构造带中企鹅山群和雅满苏组火山岩的元素和Sr-Nd同位素地球化学研究结果.企鹅山群和雅满苏组火山岩分别以低钾拉斑系列和钙碱性系列为主,玄武岩和安山岩均相对于N-MORB富集轻稀土元素和Sr、Ba、Th等大离子亲石元素,而亏损Nb、Zr和Ti等高场强元素,具有较高的Th/Ta和Ta/Yb比值,表明这些火山岩形成于具有陆壳基底的岛弧环境.但是,雅满苏组比企鹅山群具有偏高的K2O、Rb、Th、U、Nb、Zr和REE等不相容元素含量和较高的K2O/Na2O比值.Sr-Nd同位素组成表明企鹅山群和雅满苏组都来自亏损的地幔源区,但后者遭受了明显的陆壳物质混染.这种地球化学组成的差异反映了陆壳基底性质和厚度的不同.结合已有的地质调查结果,我们认为康古尔断裂作为俯冲带是比较合理的,早石炭世存在康古尔洋,而且它很可能发生了南北双向俯冲作用.企鹅山群火山岩是向北侧俯冲在大南湖泥盆纪岛弧南侧增生的产物,而雅满苏组火山岩是通过向南俯冲在中天山地块北缘形成的陆缘弧火山岩.  相似文献   

3.
东天山党罗塔格构造带晚古生代火山岩地球化学特征及意义   总被引:14,自引:5,他引:14  
本文报道了觉罗塔格构造带中企鹅山群和雅满苏组火山岩的元素和Sr-Nd同位素地球化学研究结果。企鹅山群和雅满苏组火山岩分别以低钾拉斑系列和钙碱性系列为主,玄武岩和安山岩均相对于N-MORB富集轻稀土元素和Sr、Ba、Th等大离子亲石元素,而亏损Nb、Zr和Ti等高场强元素,具有较高的Th/Ta和Ta/Yb比值,表明这些火山岩形成于具有陆壳基底的岛弧环境。但是,雅满苏组比企鹅山群具有偏高的K2O、Rb、Th、U、Nb、Zr和REE等不相容元素含量和较高的K2O/Na2O比值。Sr-Nd同位素组成表明企鹅山群和雅满苏组都来自亏损的地幔源区,但后者遭受了明显的陆壳物质混染。这种地球化学组成的差异反映了陆壳基底性质和厚度的不同。结合已有的地质调查结果,我们认为康古尔断裂作为俯冲带是比较合理的,早石炭世存在康古尔洋,而且它很可能发生了南北双向俯冲作用。企鹅山群火山岩是向北侧俯冲在大南湖泥盆纪岛弧南侧增生的产物,而雅满苏组火山岩是通过向南俯冲在中天山地块北缘形成的陆缘弧火山岩。  相似文献   

4.
东天山土屋-延东斑岩铜矿围岩的同位素年代和地球化学研究   总被引:23,自引:12,他引:23  
东天山土屋-延东大型斑岩铜矿的成岩成矿时代及其构造背景还存在很大争议。本文报道了铜矿远矿围岩—企鹅山群的同位素年代和地球化学研究结果。研究表明,企鹅山群安山岩中锆石 SHRIMP U-Pb 谐和年龄值336.5±6.6Ma,玄武岩的透辉石、斜长石和全岩 Sm-Nd 内部等时线年龄值334±36Ma,两个结果一致地表明企鹅山群形成于早石炭世。元素地球化学研究表明,企鹅山群玄武岩样品属于岛弧拉斑玄武岩系列,其稀土元素配分模式显示轻稀土相对富集,重稀土相对亏损的右倾模式,与洋中脊玄武岩相比,具有大离子亲石元素相对富集、高场强元素相对亏损的特征,具有俯冲带岛弧火山岩的典型特征。构造环境判别图解也指示企鹅山群形成于俯冲带环境。本研究对土屋-延东大型斑岩铜矿的成岩成矿作用时代及其构造背景问题提供了重要制约。  相似文献   

5.
本文研究了渤海湾黄骅盆地早白垩世基性-中性-酸性火山岩和第三纪基性火山岩的元素和Sr-Nd同位素地球化学特征。早白垩世火山岩以碱性系列为主,不同基性程度的岩石具有一致的富集Sr、Ba、K、Rb等大离子亲石元素,强烈亏损Nb、Ta、Zr等高场强元素,轻重稀土强烈分异,Sr-Nd同位素组成与EM I相似,Sr同位素初始比高于方城玄武岩和汉诺坝基性麻粒岩。主量和微量元素分析表明,酸性火山岩主要来自于地壳重熔,基性火山岩具有板片流体/熔体交代富集的特征,二者的岩浆混合作用可能是中性火山岩的成因,它们共同构成了东北亚晚中生代活动大陆边缘岛弧火山岩的一部分。第三纪基性火山岩以碱性系列为主,弱富集大离子亲石元素和Ti,不亏损Nb、Ta等高场强元素,Zr呈弱亏损,Sr-Nd同位素组成显示呈亏损型,亏损程度低于碱锅玄武岩和汉诺坝玄武岩,但总体与OIB相似,表明岩浆源区为软流圈地幔,并且高热上涌的软流圈对上部带有俯冲带印记的岩石圈地幔的萃取可能是导致弱富集的原因。从早白垩世的岛弧环境到第三纪陆内裂谷盆地,其控制因素可能归咎于东北亚东侧大洋板块的俯冲和相互转换。法拉隆板块于晚中生代向东北亚俯冲,但晚白垩世时被伊佐奈崎与北新几内亚板块取代,后两者之间的洋脊俯冲引起的“板片窗”效应,导致了渤海湾地区裂谷盆地的发育和同期软流圈地幔来源的玄武质火山活动。  相似文献   

6.
尤溪梅仙峰岩铅锌银矿床位于政和-德化前寒武纪变质分布区的南端, 处于北东向丽水-海丰断裂东侧闽东火山断拗带的次级寿宁-华安基底隆起带内。峰岩矿床的含矿岩系主要为上元古界马面山群东岩组(Pt3dy)。铅锌银矿体具层控特点。岩石学及地球化学研究表明赋矿地层东岩组为以绿片岩为主的一套古火山沉积建造。绿片岩的原岩为玄武岩类, 变粒岩主要为英安岩及流纹岩。玄武岩浆的形成可能和板块俯冲相关。矿床地球化学研究表明矿床存在多次成矿作用和多种硫源。铅同位素组成与演化表明从幔源至造山带和上地壳不同的铅源均有混入, 演化趋势较明显, 并显示多次地质事件叠加特点。金属硫化物的稀土分布型式都表现为一定程度的右倾斜, 轻重稀土分异显著。微量元素相对于MORB均有不同程度的亏损和富集。高场强元素(HFSE:Nb、Ta、Zr、Hf)表现为明显的负异常, 具较强烈的亏损; 而Pb、Rb和Ba等元素相对富集。东岩组变质火山岩也表现为明显的高场强元素的亏损及低场强元素的富集, 显示出典型和俯冲有关的岛弧岩浆的特征, 表明矿床与东岩组火山岩都形成于俯冲背景下的岛弧环境。   相似文献   

7.
新巴尔虎右旗地区塔木兰沟组火山岩为玄武岩-玄武粗安岩-玄武安山岩组合。该套火山岩属高硅钙碱性系列,偏铝质,镁指数小;富集大离子亲石元素(Rb、Ba、Sr)和轻稀土元素(LREE),亏损重稀土元素和高场强元素(Nb、Ta、Ti等),稀土元素配分模式呈左高右低缓倾斜分布,轻重稀土分馏较强,弱的Eu负异常(δEu=0.73~0.83)。综合前人及笔者同位素测年结果显示,塔木兰沟组火山岩形成于中侏罗世末期—晚侏罗世,成岩年龄为166~133 Ma。塔木兰沟组火山岩岩浆来源于受俯冲流体交代的大陆岩石圈地幔熔融,与地壳物质发生混染作用。结合区域构造演化,塔木兰沟组火山岩的形成与蒙古-鄂霍茨克洋闭合造山后岩石圈伸展有关。  相似文献   

8.
东天山石炭纪企鹅山群火山岩岩石成因   总被引:13,自引:1,他引:12  
土屋矿区南北大沟企鹅山群火山岩的岩石地球化学研究表明:东天山企鹅山群火山岩主要为拉斑系列,少量为钙碱系列;岩石类型为玄武岩、玄武安山岩、英安岩和流纹岩。稀土、微量元素和Sr、Nd同位素特点揭示:该火山岩系形成于大陆裂谷环境;其源区主要为软流圈地幔,同时有岩石圈地幔源组分卷入,酸性岩浆是玄武质岩浆结晶分异的产物。  相似文献   

9.
赵芝  迟效国  刘建峰  王铁夫  胡兆初 《岩石学报》2010,26(11):3245-3258
在内蒙古牙克石地区晚古生代岩浆岩中发现了岛弧火山岩和埃达克质花岗闪长岩。火山岩由玄武岩、安山岩、英安岩及凝灰岩组成,属于钙碱性系列,它们富集大离子亲石元素(LILE)、轻稀土元素(LREE),亏损高场强元素(HFSE)。玄武岩的SHPIMP锆石U-Pb年龄表明其形成于373.2±5.3Ma。锆石εHf(t)值为+14.67~+18.67,类似大洋中脊玄武岩(MORB)和现代俯冲带玄武岩的Hf同位素特征。上述特征说明,玄武岩很可能起源于受俯冲板片流体改造的亏损地幔楔,形成于活动大陆边缘。花岗闪长岩的结晶年龄为331.2±3.7Ma。岩石高SiO2、Sr,高Sr/Y比值,富集轻稀土元素,亏损重稀土元素和Y及高场强元素,铕异常基本不明显,具备埃达克岩的地球化学特征。锆石εHf(t)值较高(+12.78~+14.54),说明源区可能为亏损地幔或新生的玄武质下地壳。根据微量元素组成认为花岗闪长岩主要起源于晚古生代底侵的岛弧玄武-安山质下地壳。弧火山岩和埃达克质花岗闪长岩的发现表明,区内晚泥盆世-早石炭世发生过大洋板片的俯冲作用,可能与额尔古纳-兴安地块与松嫩地块的碰撞拼合密切相关。  相似文献   

10.
新疆东准噶尔克拉麦里蛇绿岩地球化学:洋脊俯冲的产物   总被引:5,自引:5,他引:5  
新疆东准噶尔克拉麦里蛇绿岩中的镁铁质岩兼具有洋中脊玄武岩(MORB)和岛弧拉斑玄武岩(IAB)的特征,岩石地球化学特征表现为轻稀土(LREE)亏损、平坦或略微富集,不同程度地亏损高场强元素(HFSE)而富集大离子亲石元素(LILE),成分上非常相似于受洋脊俯冲影响的 Chile Ridge 和 Cocos Ridge 玄武岩。可以认为其可能形成于受洋脊俯冲影响的岛弧或弧前扩张环境。相对较高的ε_(Nd)(t)(7.2~9.8)、低 Nb/Zr、Ta/Yb 比值,说明在洋脊俯冲的影响下,其源区可能存在有至少三种组分:弧下地幔、来自消减板片流体和俯冲沉积物、MORB 地幔。  相似文献   

11.
The major and trace element, and Sr–Nd isotopic compositions of the Carboniferous Qi’eshan, Wutongwozi, and Yamansu volcanic rocks from the northern and southern parts of the Jueluotage Orogenic Belt in East Tianshan, China, were analysed to understand their genesis and geodynamic implications. The early Carboniferous Qi’eshan basalts are characterized by high Al2O3, with La/Sm (1.38–1.79) and Ba/La (27.06–58.76) values higher than those of typical normal mid-ocean ridge basalt. They are relatively enriched in large ion lithophile elements (LILE) and light rare earth elements (LREE), and depleted in high field strength elements. Overall, their initial Nd–Sr isotopic compositions are εNd(t) = (5.6–7.0) and Isr = 0.70397–0.70429, implying the magma originated from a mantle wedge source that was metasomatized by subduction-related fluids. In contrast, the late Carboniferous Wutongwozi basalts have lower Ba/La (4.86–12.82), La/Nb (0.87–2.45), and LILE concentrations. They have the isotopic characteristics of depleted asthenosphere, relatively high and heterogeneous εNd(t) (9.3–9.4), and high Isr (0.70471–0.70533). Thus, the late Carboniferous Wutongwozi basalts may have been derived from the partial melting of mantle sources during asthenospheric upwelling. The early Carboniferous Yamansu acid volcanic rocks are characterized by high Mg# (46–48) and Lu/Y (~0.15), and low K2O/Na2O (0.01–0.20), similar to M-type granites. However, their εNd(t) (5.0–5.5) and Isr (0.70642–0.70768) values are lower than those of depleted mantle, indicating they were contaminated by lower crustal material. The magma source originated from a mantle-derived magma that was contaminated by middle Tianshan massif in a continental margin arc setting. Based on the results and previous field-based studies, we conclude that the Carboniferous volcanics in the Jueluotage Orogenic Belt formed in a complex trench–arc–basin setting in the Kuguertage–Aqikuduke Suture Zone.  相似文献   

12.
《International Geology Review》2012,54(13):1642-1665
ABSTRACT

The mechanisms triggering the emplacement of Cretaceous magmatic rocks related to Neo-Tethyan subduction in the southern Lhasa subterrane (SLT) remain controversial because geochronological, geochemical, and isotopic data from the Cretaceous magmatic rocks in the western portion of the SLT are lacking. This paper provides the first report indicating that the Dazhuqu hornblende gabbro and Xietongmen granite porphyry were generated in the Late Cretaceous (ca. 100 Ma and ca. 68 Ma, respectively) in the western portion of the SLT. The Dazhuqu hornblende gabbro is characterized by high MgO, Na2O, Cr, Co, and Mg# values, enrichment in light rare earth elements (LREEs) and large ion lithophile elements (LILEs), and depletion in high field strength elements with no Eu anomalies. The Xietongmen granite porphyry displays high SiO2, low MgO, Mg#, Cr, Co, and Ni, enrichment in LREEs and LILEs, flat heavy rare earth element (HREE) patterns and negative Eu anomalies. Zircons from the Dazhuqu hornblende gabbro and Xietongmen granite porphyry display high positive εHf(t) ranges from 11.79 to 14.91 and from 9.05 to 12.38, respectively. The Dazhuqu hornblende gabbro was produced by the partial melting of 12–15% garnet peridotite in the depleted mantle that was metasomatized by fluids released from the dehydrating subducted Neo-Tethyan oceanic slab. This magma was then emplaced at an upper crustal depth of 5.3–7.0 km. The Xietongmen granite porphyry was generated by the partial melting of underplated basaltic crust during the subduction of the Neo-Tethyan oceanic crust and formed in the presence of pyroxene, plagioclase, and minor hornblende in its magmatic source. In combination with previously published data from Cretaceous magmatic rocks in the SLT, our data suggest that the petrogenesis of the Dazhuqu hornblende gabbro was related to flat or low-angle slab subduction of the Neo-Tethyan oceanic crust during 109–97 Ma and that the formation of the Xietongmen granite porphyry was related to lithospheric delamination in the western portion of the SLT after ca. 68 Ma.  相似文献   

13.
《International Geology Review》2012,54(15):1941-1958
The Qiarbahete complex in NW China consists of gabbroic diorite, granodiorite, and late-stage quartz diorite porphyry veins. Zircon sensitive high-resolution ion microprobe (SHRIMP) U–Pb analyses show that the gabbroic diorite and granodiorite formed at 368 ± 5.2 Ma and 354 ± 4.1 Ma, respectively, indicating that the complex was emplaced in the Late Devonian–Early Carboniferous. The gabbroic diorites, characteristic of Sanukitoids, exhibit high Mg# (62 average), MgO (6.84% average), Cr (195 ppm average), and Ni (61.4 ppm average) contents. The rocks show moderately fractionated rare earth element (REEs) patterns and weak negative Eu anomalies (δEu: 0.83–0.89), enrichment of large ion lithophile elements (LILEs), and depletion of high field strength elements (HFSEs), with low ?Nd(t) values (1.46–1.73). The gabbroic diorites originated from partial melting of a hydrous mantle wedge followed by assimilation of crust during ascent. The granodiorites show a geochemical affinity with adakitic rocks, e.g. SiO2 (64.95–67.87%) > 56%, Al2O3 (15.88–16.56%) > 15%, MgO (1.79–2.31%) < 3%, Sr (315–375 ppm) > 300 ppm, and Yb (1.84–2.06 ppm). They are enriched in light rare earth elements (LREEs) and LILEs and depleted in HFSEs, with weak negative Eu anomalies (δEu: 0.78–0.87). The granodiorites were mainly derived by the partial melting of a subducted oceanic slab, followed by subsequent melt–mantle interaction and crustal rocks contamination. All these indicate that the Qiarbahete complex was emplaced in a continental arc setting attending the southward subduction of the Junggar Ocean during the Late Devonian–early Carboniferous, generating the lateral accretion of continental crust in NW Tianshan.  相似文献   

14.
郭娜欣  刘善宝  赵正 《地球科学》2021,46(2):460-473
华南地区中生代基性岩浆岩以拉斑玄武岩系列为主,碱性系列少见.江西崇义铁木里地区发育由碱性辉绿玢岩和A型花岗岩组成的双峰式侵入岩组合,对其中的辉绿玢岩开展了矿物学、年代学和地球化学研究.辉绿玢岩的斑晶矿物以次透辉石为主,少量为透辉石和普通辉石;基质中的斜长石为中长石(Ab=39.11%~43.30%),角闪石为钛闪石.LA-ICP-MS锆石U-Pb定年结果表明辉绿玢岩的形成不早于136.6 Ma.岩石具有低SiO2(41.73%~46.68%)、TiO2(1.72%~1.94%),富TFeO(7.64%~9.24%)、Al2O3(15.70%~17.22%),全碱含量高(5.28%~6.60%)的特征,Mg#值为0.51~0.54,属于碱性玄武岩系列.轻重稀土元素之间、轻稀土元素内部分馏强((La/Yb)N=17.58~22.28,(La/Sm)N=4.72~5.18),Eu异常不明显(δEu=0.84~0.99),显著富集大离子亲石元素,轻微富集高场强元素,过渡族元素含量较原始地幔偏低.Nd同位素表现为亏损特征(εNd=+3.45),(87Sr/86Sr)i=0.707 5,(206Pb/204Pb)i=18.769 6,(207Pb/204Pb)i=15.733 7,(208Pb/204Pb)i=39.110 0,显示OIB与EMII过渡特点.矿物成分、岩石地球化学、Nd同位素特征指示铁木里辉绿玢岩源自软流圈,部分熔融发生于石榴石稳定域,是软流圈地幔减压低程度熔融的产物,碱性玄武质岩浆与陆壳物质之间的同化混染作用较弱,岩浆演化过程中发生了单斜辉石、磷灰石和铁钛氧化物的分离结晶作用.华南内陆在白垩纪处于伸展拉张的应力状态,碱性玄武质岩石形成于岩石圈拉张和超壳深大断裂联合作用形成的板内伸展裂解(类裂谷)构造环境.   相似文献   

15.
河南嵩山地区新太古代斜长角闪岩的地球化学特征与成因   总被引:5,自引:4,他引:1  
周艳艳  赵太平  薛良伟  王世炎 《岩石学报》2009,25(11):3043-3056
嵩山地区登封群是华北克拉通南部古老结晶基底的重要组成部分,由一套火山-沉积成因的表壳岩系组成,形成于新太古代.斜长角闪质岩石广泛发育于登封群表壳岩中,同时,也以包体形式普遍存在于TTG片麻岩体内部.二者主量元素差别不大,SiO_2含量为45%~63%,富Fe_2O_3、Al_2O_3、CaO,TiO_2(0.5%~1.11%)含量较低,原岩为亚碱性玄武岩、安山岩.二者的微量元素特征稍有差别,登封群斜长角闪岩REE配分形式平坦,轻重稀土基本无分异((La/Yb)_N=0.99~2.07),基本无Eu异常(δEu≈1);Ti负异常,Nb、Ta、Y负异常不明显,Ba、Sr呈现正异常,显示洋中脊和岛弧拉斑玄武岩特征;在Cr-Y、Ta/Yb-Th/Yb、Zr/Y-Nb/Y图解中位于洋中脊向岛弧玄武岩的过渡区域;ε_(Nd)(t)=4.43,显示源岩来自亏损地幔.而TTG片麻岩中斜长角闪岩包体的LREE富集,Eu负异常明显(δEu)=0.46~0.87);大离子亲石元素Rb、Cs、Ba明显高于登封群中的斜长角闪岩,除了Ti含量稍低外,Zr、Nb和Y含量范围和登封群斜长角闪岩相似,Nb、Ta和Y呈负异常,具有岛弧玄武岩特征;ε_(Nd)(t)=2.56和4.08,显示源岩来自亏损地幔,反映有地壳物质的混染.登封群斜长角闪岩及斜长角闪岩包体原岩的源区物质有所不同,在汇聚板块边缘洋壳俯冲条件下,前者是地幔楔部分熔融的产物,形成于弧后盆地环境;后者可能是随着俯冲作用的进行,小部分板片熔融开始发生,形成的熔浆混染亏损地幔部分熔融形成的熔浆.地球化学特征显示登封群形成的地球动力学背景是汇聚板块边缘洋壳的俯冲,反映当时陆壳以水平方式增生.  相似文献   

16.
张冲闪长玢岩呈不规则状侵入佛子岭岩群诸佛庵岩组和毛坦厂组中。岩体具较高的SiO_2和Al_2O_3含量,为偏碱性、准铝质、高钾钙碱性系列岩石。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)、重稀土(HREE)和Y,无明显Eu异常,Sr正异常。通过LA-ICP-MS锆石U-Pb法确定张冲闪长玢岩年龄为129±3 Ma,表明该岩体侵位于早白垩世。通过对岩石主、微量元素特征研究,认为岩浆可能来源于底侵玄武岩,并受到地壳物质的混染。岩体形成于中生代构造体制转换期,可能属于北淮阳东段中生代第一旋回侵入岩。  相似文献   

17.
The Yamansu belt,an important tectonic component of Eastern Tianshan Mountains,of the Central Asian Orogenic Belt,NW China hosts many Fe-(Cu)deposit.In this study,we present new zircon U-Pb geochronology and geochemical data of the volcanic rocks of Shaquanzi Formation and diorite intrusions in the Yamansu belt.The Shaquanzi Formation comprises mainly basalt,andesite/andesitic tuff,rhyolite and sub-volcanic diabase with local diorite intrusions.The volcanic rocks and diorites contain ca.315-305 Ma and ca.298 Ma zircons respectively.These rocks show calc-alkaline affinity with enrichment in large-ion lithophile elements(LILEs),light rare-earth elements(LREEs),and depletion in high field strength elements(HFSEs)in primitive mantle normalized multi-element diagrams,which resemble typical back-arc basin rocks.They show depleted mantle signature with ε_(Nd)(t)ranging from+3.1 to +5.6 for basalt;+2.1 to+4.7 for andesite;-0.2 to+1.5 for rhyolite and the ε_(Hf)(t)ranges from-0.1 to +13.0 for andesites;+5.8 to +10.7 for andesitic tuffs.We suggest that the Shaquanzi Formation basalt might have originated from a depleted,metasomatized lithospheric mantle source mixed with minor(3-5%)subduction-derived materials,whereas the andesite and rhyolite could be fractional crystallization products of the basaltic magma.The Shaquanzi Formation volcanic rocks could have formed in an intracontinental back-arc basin setting,probably via the southward subduction of the Kangguer Ocean beneath the Middle Tianshan Massif.The Yamansu mineralization belt might have undergone a continental arc to back-arc basin transition during the Late Carboniferous and the intra-continental back-arc basin might have closed in the Early Permian,marked by the emplacement of dioritic magma in the Shaquanzi belt.  相似文献   

18.
大黑山斑岩型钼矿花岗质岩体主要岩石类型为花岗闪长岩和花岗闪长斑岩,呈复式岩体状产出.含矿的花岗闪长斑岩体具有较高的Al2O3含量(A/CNK=1.04~1.25),较低的Mg指数(Mg#=21~44);轻重稀土分馏明显,没有或具有轻微的负铕异常(δEu=0.82~1),表明可能源区基本没有斜长石残留;富集大离子亲石元素Rb、Ba、Sr,相对亏损Nb、Ta、Y、Yb、Th、P和Ti,高Sr/Y、Sr/Yb比值,类似中国东部的“C型”埃达克岩.不含矿的花岗闪长岩A/CNK=1.01~1.03,轻稀土富集,重稀土亏损,中等的负铕异常(δEu=0.62~0.63),富集大离子亲石元素Rb、Th元素,亏损Nb、Ta、Zr等高场强元素,强烈亏损P和Ti元素相,比较低的Sr/Y、Sr/Yb比值.Hf同位素特征显示,大黑山花岗质岩体是由中-新元古代亏损地幔中增生的新生地壳,在中生代发生熔融而形成的.结合太平洋板块构造演化史以及近年获得的黑龙江杂岩碎屑锆石年龄和黑龙江群蛇绿混杂岩中蓝片岩相变质作用的年龄,表明太平洋板块晚三叠世-早侏罗世开始向西俯冲,说明大黑山花岗质岩体的形成与太平洋板块俯冲有关.  相似文献   

19.
华北板块北缘中段土牧尔台地区发育大量的酸性侵入岩,仅局部出露一些苏长辉长岩岩体.前人对该基性岩岩体的研究较少,且缺少其与周围同时代酸性侵入岩演化关系的讨论.基于年代学和地球化学方法,锆石U-Pb测年结果显示,花岗闪长岩年龄为275.3±2.6 Ma,苏长辉长岩为270.1±4.2 Ma,两者均为早二叠世产出.苏长辉长岩贫硅(SiO2=46.2%~49.8%)和高场强元素(Nb、Ti、Zr等),富Mg#(59.16~67.58)和大离子亲石元素(Cs、Ba、Sr等),具有较低的稀土总量和较平缓的配分曲线,及Eu正异常(δEu=1.02~2.41),显示幔源侵入岩的特点;花岗闪长岩SiO2含量在65.6%~67.0%之间,K2O含量为3.71%~4.15%,为准铝质系列(A/CNK=0.94~0.98),属于高钾钙碱性I型花岗岩.样品富集轻稀土、大离子亲石元素(Cs、Rb、K等),亏损重稀土元素、高场强元素(Nb、Ti、Th等),存在Eu负异常(δEu=0.61~0.69),具有大陆弧火山岩的特征,同时岩石中存在镁铁质包体,表明其岩浆来源是壳幔混源的.两者的时空关系及地球化学特征显示,基性岩浆来自于受俯冲流体交代的亏损岩石圈地幔,底侵加热地壳产生花岗质岩浆并与之发生混合作用.结合区域研究背景,表明花岗闪长岩-苏长辉长岩岩体形成于俯冲的构造背景下,且在早二叠世,古亚洲洋仍未闭合.   相似文献   

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