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771.
东昆仑中灶火地区的石英闪长岩—花岗闪长岩—二长花岗岩具有连续的成分变化。岩石具有中等到高的Si O_2含量(58.15%~71.12%),适度的高铝和全碱含量,为中—高钾钙碱性的准铝质Ⅰ型花岗岩。岩石相对富集大离子亲石元素和轻稀土元素,并亏损高场强元素,显示出弧岩浆岩的一般地球化学特征。锆石地质年代学分析获得石英闪长岩和花岗闪长岩的锆石结晶年龄约为243Ma,表明本文研究的花岗岩类为中三叠世岩浆岩。结合地质、地球化学研究,这套花岗岩形成于陆缘弧环境,是古特提斯洋俯冲晚期的岩浆记录。其成因为俯冲动力学背景下,幔源岩浆的底侵作用导致下地壳部分熔融,随后壳源熔体与幔源熔体发生不同程度的混合形成母岩浆,又经历了较高程度的结晶分异形成石英闪长岩—花岗闪长岩—二长花岗岩序列。  相似文献   
772.
江南造山带东段新元古代弧盆构造格局   总被引:1,自引:0,他引:1  
江南造山带东段出露万年群、浦江平水群、双桥山群等一系列前寒武纪基底岩系。万年群为一套出露于赣东北地区的浅变质火山岩、陆缘碎屑岩系,其下未见底,上被震旦系漆工组不整合覆盖,沉积环境自下而上逐渐变深。本文应用LA-ICP-MS对德兴地区万年群火山岩样品进行锆石U-Pb定年,获得加权平均年龄为(843.8±5)Ma,表明万年群主体属新元古界。万年群与浦江平水群、双桥山群等属于同一时代的产物,它们形成的时限范围集中在850~820 Ma,代表了江南造山带演化的中期阶段。对万年群、浦江平水群火山岩进行全岩地球化学分析,显示这两套岩石分别为钙碱性岩石系列和低钾(拉斑)岩石系列,富集大离子亲石元素(Ba、Th、P)亏损高场强元素(Nb、Zr、Ti),表现出类似于俯冲带相关的岩浆作用特征,构造环境判别图解显示两者应形成于火山弧区域。双桥山群代表了裂陷型弧后盆地沉积,对其中发育的小型斜层理进行测量,经水平校正后其古流向指向北,物源应来自南方。万年群、浦江平水群与双桥山群在时空位置及构造属性上显示了配套的弧盆体系关系。发育于850~820 Ma期间的江南造山带应属西太平洋型陆缘造山带。  相似文献   
773.
南桥高度亏损N—MORB的发现及其地质意义   总被引:9,自引:0,他引:9       下载免费PDF全文
对赣西北九岭古岛弧西延部分的湖南浏阳南桥玄武岩进行了单颗粒锆石蒸发法2 0 7Pb/ 2 0 6Pb年龄测定 ,结果为 12 71± 2Ma。该玄武岩辉绿岩显示高度亏损的地球化学特性 :K2 O极低 ,不相容的高场强元素和稀土元素的丰度均低于 (少数接近 )N_MORB的平均丰度 ,εNd(12 71Ma)为 6 .86~ 8.98,具典型N_MORB特性 ,可能为沿古俯冲带分布的洋壳残片 ,为九岭古岛弧提供了新的证据。  相似文献   
774.
The Early Jurassic bimodal volcanic rocks in the Yeba Formation, situated between Lhasa, Dagzê and Maizhokunggar, composed of metabasalt, basaltic ignimbrite, dacite, silicic tuff and volcanic breccia, are an important volcanic suite for the study of the tectonic evolution of the Gangdise magmatic arc and the Mesozoic Tethys. Based on systematic field investigations, we carried out geochemical studies on representative rock samples. Major and trace element compositions were analyzed for these rock samples by XRF and ICP-MS respectively, and an isotope analysis of Rb-Sr and Sm-Nd was carried out by a MAT 262 mass spectrograph. The results show that the SiO2 contents in lava rocks are 41 %-50.4 % and 64 %-69 %, belonging to calc-alkaline basalt and dacite. One notable feature of the basalt is its low TiO2 content, 0.66 %-1.01 %, much lower than those of continental tholeiite. The ΣREE contents of basalt and dacite are 60.3-135 μg/g and 126.4-167.9 μg/g respectively. Both rocks have similar REE and other trace element characteristics, with enriched LREE and LILE relative to HREE and HFS, similar REE patterns without Eu anomaly. The basalts have depleted Ti, Ta and Nb and slightly negative Nb and Ta anomalies, with Nb*=0.54-1.17 averaging 0.84. The dacites have depleted P and Ti and also slightly negative Nb and Ta anomalies, with Nb*=0.74-1.06 averaging 0.86. Major and trace elemental and isotopic studies suggest that both basalt and dacite originated from the partial melting of the mantle wedge at different degrees above the subduction zone. The spinal lherzolite in the upper mantle is likely to be their source rocks, which might have been affected by the selective metasomatism of fluids with crustal geochemistry. The LILE contents of both rocks were affected by metamorphism at later stages. The Yeba bimodal volcanic rocks formed in a temporal extensional situation in a mature island arc resulting from the Indosinian Gangdise magmatic arc.  相似文献   
775.
In the Delgo basement area of northern Sudan, low to medium grade metamorphosed volcanic, sedimentary and plutonic rocks are surrounded by high grade gneisses. A NNE-SSW trending suture zone can be defined by the lithological, chemical and structural characteristics of several distinct units. The early Proterozoic gneiss terrain is overlain by metasedimentary units, the metamorphism of which has been dated by the Sm-Nd whole rock-mineral technique (702 ± 27 Ma in the west, 592 ± 16 Ma in the east). In the central part, the Abu Sari volcanic rocks show geochemical signatures of formation at an arc, with a protracted tholeiitic, calc-alkaline and shoshonitic evolution. The overlying El Hamri ophiolite contains chemical features of a back-arc tectonic environments. The ophiolite was dated by the Sm-Nd whole rock method on metagabbros at 752 ± 48 Ma. The further extension of this oceanic basin into the Jebel Rahib in the south-west was dated at 707 ± 54 Ma (Sm-Nd whole rock and minerals).Widespread suite of syn-tectonic granitoid intrusives displays subduction-related characteristics. They where emplaced between 650 to 760 Ma (Pb-zircon evaporation method). Their Nd and Sr isotopic compositions indicate a changing pattern of island arc to active continental margin character along an east-west transect and suggest a west to north-west dipping subduction zone. All units were juxtaposed at the minimum age of 600 Ma and rearranged during an extensional event, which was dated by the Rb-Sr thin slab technique (546 ± 19 Ma) on a migmatite. The Delgo suture provides evidence of a complex terrane pattern in north-east Africa and crustal growth during the Pan-African event by the addition of oceanic material to pre-existing continental crust.  相似文献   
776.
藏北高原新生代火山岩地球化学系列划分及成因分析   总被引:4,自引:0,他引:4  
根据K—Ar法和Ar-Ar法定年数据,藏北新生代火山岩从早到晚可划分为多格错仁和走构油茶错高钾钙碱性系列(40—30Ma)、巴毛穷宗和鱼鳞山白榴石碧玄岩—响岩系列(29—24Ma)以及黑石北湖钾玄岩系列(1.5Ma)。从岩石化学和同位素方面对区内新生代火山岩进行了研究,认为藏北新生代火山岩同时具有板内碱性玄武岩和岛弧玄武岩的双重地球化学特征。在成因和源区上各系列存在着差异,高钾钙碱性系列为富集地幔玄武岩底侵作用导致地壳物质部分熔融的产物,并经历了地壳的AF过程。而白榴石碧玄岩—响岩系列和钾玄岩系列来自与古俯冲有关的“古老富集地幔”,为岩浆分离结晶作用的产物。岩浆起源深度随时间变新逐渐变大。  相似文献   
777.
甘肃金塔南山斜长角闪岩的地球化学特征及其构造意义   总被引:9,自引:0,他引:9  
金塔南山岩带是华北克拉通和塔里木克拉通的分界线。岩带由前寒武纪变质岩系所组成,不同类型的变质地质体之间以逆冲型韧性剪切带接触,主要变质岩斜长角闪岩Sm-Nd等时线年龄为745±59Ma,原岩为玄武岩。Nb/Y<0.7、REE特征及AFM图解显示原岩为拉斑系列和钙碱性系列。稀土元素配分型式为平坦型到富集;相对于N-MORB,低Ti,富集LILE,亏损HFSE,Nb、Ta、Ti表现为明显的负异常(钙碱性系列)到无异常(拉斑系列),Th/Ta>3;I_(Nd)(t)=0.51193±6,~(143)Nd/~(144)Nd=0.512878,ξ_(Nd)(t)=+3.88~6.60,均值为5.05,推测斜长角闪岩原岩应为不同程度部分熔融的弧岩浆作用的产物,提示金塔南山岩带是新元古代中期华北克拉通与塔里木克拉通之间的古大洋俯冲消减的结果。  相似文献   
778.
The Naga Hills Ophiolite(NHO) represents one of the fragments of Tethyan oceanic crust in the Himalayan Orogenic system which is exposed in the Phek and Kiphire districts of Nagaland, India. The NHO is composed of partially serpentinized dunite, peridotite, gabbro, basalt, minor plagiogranite,diorite dyke and marine sediments. The basalts are mainly composed of fine grained plagioclase feldspar, clinopyroxene and orthopyroxene and show quenching and variolitic textures. The gabbros are characterized by medium to coarse grained plagioclase, orthopyroxene and clinopyroxene with ophitic to sub-ophitic textures. The ultramafic cumulates are represented by olivine, Cpx and Opx.Geochemically, the basalts and gabbros are sub-alkaline to alkaline and show tholeiitic features.The basalts are characterized by 44.1-45.6 wt.% of SiO_2 with 28-38 of Mg#, and the gabbros by38.7-43.7 wt.% of SiO_2, and 26-79 of Mg#. The ultramafic rocks are characterized by 37.4-52.2 wt.% of SiO_2, and 80-88 of Mg#. In multi-element diagrams(spidergrams) both basalts and gabbros show fractionated trends with strong negative anomalies of Zr. Nb. Sr and a gentle negative anomaly of P.However, the rare earth element(REE) plots of the basalts and gabbros show two distinct patterns. The first pattern, represented by light REE(LREE) depletion, suggests N-MORB features and can be interpreted as a signature of Paleo-Tethyan oceanic crust. The second pattern, represented by LREE enrichment with negligible negative Eu anomaly, conforms to E-MORB, and may be related to an arc tectonic setting. In V vs. Ti/1000, Cr vs. Y and AFM diagrams, the basalts and gabbros plot within Island Arc Tholeiite(IAT) and MORB fields suggesting both ridge and arc related settings. The ultramafic rocks exhibit two distinct patterns both in spidergrams and in REE plots. In the spidergram, one group displays highly enriched pattern, whereas the other group shows near flat pattern compared to primordial mantle. In the REE plot, one group displays steeper slopes [(La/Yb)N = 4.340-4.341], whereas the other displays moderate to flat slopes [(La/Yb)N = 0.97-1.67] and negative Eu-anomalies. Our study suggests that the ultramafic rocks represent two possible mantle sources(fertile and refractory).  相似文献   
779.
三江地区义敦岛弧碰撞造山过程:花岗岩记录   总被引:43,自引:5,他引:43  
义敦岛弧碰撞造山带是特提斯-喜马拉雅巨型造山带中的一个复合造山带。本文利用义敦岛弧碰撞造山带29个花岗岩体的43件同位素测年数据,结合岩石地球化学特征,建立了造山带花岗岩的时间坐标。初步识别出4套不同成因类型的花岗岩,即印支期弧花岗岩、燕山早期同碰撞花岗岩、燕山晚期A型花岗岩和喜马拉雅期花岗岩。据此,再造了造山带的形成过程与演化历史:印支期的大规模俯冲造山作用(238-210Ma),形成义敦火山岩浆弧;大约自206Ma始,发生弧-陆碰撞,伴随岛弧地壳挤压收缩和剪切变形,发育同碰撞花岗岩;进入燕山晚期(138-73Ma),岛弧碰撞造山带发生造山后伸展作用,形成A型花岗岩带;喜马拉雅期发生陆内造山作用(65-15Ma),岛弧碰撞造山带出现逆冲-推覆和大规模走滑平移,伴随喜马拉雅期花岗岩的侵位和拉分盆地的形成。  相似文献   
780.
朱拉岩体位于冈底斯带东部,主要由黑云母二长花岗岩组成,其中发育闪长质包体,二者呈渐变过渡关系。3件寄主岩石LA-ICP-MS锆石U-Pb年龄加权平均值分别为64.6Ma±0.8Ma、64.3Ma±0.8Ma和63.9Ma±0.5Ma,含776Ma的继承岩浆锆石。1件闪长质包体样品年龄加权平均值为66.1Ma±0.3Ma。闪长质包体低Si,中Mg(Mg﹟平均41.1),属铝质高钾钙碱性系列,Nb/Ta值为22,Sr/Y值为3.69,稀土元素分馏较低,LREE/HREE平均值为1.92,Eu强烈亏损,富集大离子亲石元素(Rb、K、U、Th),亏损高场强元素(Nb、Ta、Sr、Ti),暗示岩浆成分主要为幔源。寄主岩石富Si、K,贫P,属铝质—偏铝质钙碱性—高钾钙碱性系列,Nb/Ta值15.9,富集大离子亲石元素(Rb、K、Th),亏损高场强元素(Nb、Ta、Ba、P、Ti),具有活动陆缘钙碱性岩系的微量元素分布特征。寄主岩石与闪长质包体具有密切的成生联系,闪长岩形成于富集俯冲带组分的地幔熔体,在上升过程中混染了一定量的壳源物质结晶分异产物,寄主岩石则为底侵作用产生的大量壳源熔体与少量幔源熔体混合并发生一定程度分离结晶后的产物。结合前人的研究成果,认为古新世朱拉岩体与雅鲁藏布江大洋的向北消减有关。  相似文献   
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