首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 140 毫秒
1.
东昆仑造山带中灶火地区镁铁质岩墙群以闪长玢岩为主,含少量闪斜煌斑岩、辉绿玢岩及辉绿岩,LA-ICPMS锆石U-Pb年代学指示该套岩墙群结晶侵位年龄为(249±1)Ma。稀土元素含量整体较高,富集轻稀土元素(∑REE=99.9×10-6~173.9×10-6,(La/Yb)N=3.5~9.3);微量元素表现出富集大离子亲石元素(LILE),亏损高场强元素(HFSE)的特征;源区分析表明,镁铁质岩浆为俯冲洋壳析出的流体交代富集地幔的结果,且在岩石成因中部分熔融起到主导作用,地壳混染和分离结晶作用对岩浆成分分异起到的作用有限。构造环境分析表明,岩石的形成与俯冲作用有关,结合区域构造演化认为镁铁质岩墙群的成因为:早三叠世,在古特提斯洋向北俯冲的环境下,俯冲板片释放的流体交代富集地幔,诱发地幔部分熔融形成镁铁质岩浆,受弧后伸展的动力学背景影响,岩浆最终上升侵位形成镁铁质岩墙群。  相似文献   

2.
分布于攀西及邻近地区的煌斑岩主要为云辉正煌岩-黑云正煌岩、白榴橄榄云辉岩、透辉云煌岩,常量元素特征表明岩石属于碱性系列、钾质钙碱性煌斑岩;过渡元素分配模式为幔源岩石的"W"型、不相容元素分配模式为大离子亲石元素和高场强元素富集的"驼峰"型、稀土元素分配模式为"右倾"的轻稀土富集型,表明该区煌斑岩为交代富集地幔部分熔融的产物.Ta-Nb-Ti负异常分配模式说明源区煌斑岩具有的交代富集地幔可能和板块俯冲有关.源区大地构造环境为活动大陆边缘的陆缘岛弧或陆缘火山弧区.  相似文献   

3.
云南老王寨金矿区煌斑岩的成因:稀土元素研究   总被引:6,自引:0,他引:6  
云南老王寨金矿区煌斑岩与金矿化在时间上、空间上密切共生。主要元素分析表明,本区煌斑岩属钾质-富钾质钙碱性煌斑岩;与原始地幔和大洋中脊玄武岩相比,岩石相对富集稀土元素;模拟计算表明,岩石来源于稀土元素相对富集的交代富集地幔;地质发展史、不相容元素分配型式、Sr、Nd同位素组成及有关模拟计算表明,俯冲进入地幔楔的地壳物质脱水 流体是引起该区地幔交代作用的主要因素。  相似文献   

4.
湖南煌斑岩以富集大离子亲石元素和轻稀土元素,而亏损高强场元素(Nb-Ta-Ti)为特征,同位素以高^87Sr/^86Sr、低^143Nd/^144Nd为特征。源区可能为早期俯冲交代的古老岩石圈富集地幔。煌斑岩的侵入是软流圈上涌的结果,表明湖南地区于晚三叠世已从岩石圈的挤压阶段开始向岩石圈伸展-减薄阶段转换。  相似文献   

5.
贺娟  王启宇  闫国川 《地球科学》2018,43(8):2586-2599
前人对金沙江-红河构造带上的煌斑岩研究工作主要集中在南段哀牢山地区.对构造带中段鲁甸地区新发现的煌斑岩脉进行了锆石U-Pb年代学和全岩地球化学研究.结果表明,煌斑岩形成时代为始新世末期,与滇西新生代富碱斑岩高峰期一致.鲁甸煌斑岩具有高钾、富碱、高Mg#,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,尤其是Ta-Nb-Ti)的特征.其岩浆源区为受俯冲流体和熔体交代的岩石圈地幔,源区组分为含金云母的尖晶石相方辉橄榄岩.结合同期的镁铁质火山岩和富碱斑岩研究成果,滇西区域的岩石圈地幔富集过程可能为元古宙时期与罗迪尼亚超大陆聚合相关的俯冲作用.始新世时期,在印度和亚洲大陆碰撞过程中,金沙江-红河构造带的富集岩石圈地幔发生拆沉或对流减薄,软流圈物质上涌,引发富集的岩石圈地幔部分熔融,形成本期煌斑岩岩浆作用.   相似文献   

6.
鹿坤 《地质与勘探》2009,45(2):8-13
桂东北煌斑岩SiO2含量主要在33.74%~48.14%之间,属基性-超基性范围,为钙碱性岩系、钾质-超钾质煌斑岩;地球化学表明,桂东北煌斑岩以富集大离子亲石元素和轻稀土元素,而亏损高场强元素(Ta-Nb-Ti)为特征,轻、重稀土具有较好的分馏.结合元素地球化学和地质发展史研究表明,桂东北煌斑岩为富含稀土元素的俯冲带流体交代过的富集地幔部分熔融所产生的岩浆.在上升过程中受到部分地壳混染的产物.  相似文献   

7.
云南老王寨金矿区煌斑岩岩石学研究   总被引:8,自引:0,他引:8       下载免费PDF全文
在研究云南老王寨金矿区与金矿化时间上、空间上密切共生的煌斑岩岩相学、矿物学以及主要元素、微量元素和同位素地球化学的基础上,总结出该区煌斑岩的岩石类型主要为云煌岩,其次为云斜煌岩,两种岩石均属碱性系列、钾质-富钾质钙碱性煌斑岩为交代富集地幔部分熔融的产物。板块俯冲进人地幔楔的地壳物质脱水形成的流体可能是引起该区地幔交代作用的主要因素。  相似文献   

8.
柳泉地区是苏北地区煌斑岩的集中分布区,与之相伴的还有金伯利岩和橄榄玄武玢岩。通过研究该区煌斑岩的岩石学及岩石地球化学特征,进一步探讨其岩石成因及构造环境。研究表明:柳泉地区煌斑岩为同源岩浆演化的产物,整体属于钾质碱性煌斑岩,具有低硅、富铁镁钛的特点,大离子亲石元素和轻稀土元素相对富集,高场强元素和重稀土元素相对亏损。柳泉地区煌斑岩形成于中—新生代太平洋板块俯冲、岩石圈减薄的构造背景下,起源于深75~100 km、受俯冲沉积物改造形成的富集岩石圈地幔源区,经含角闪石石榴石二辉橄榄岩部分熔融,并沿构造薄弱带上侵至地壳浅部形成的。  相似文献   

9.
云南老王寨金矿区煌斑岩岩石学研究   总被引:4,自引:0,他引:4       下载免费PDF全文
 在研究云南老王寨金矿区与金矿化时间上、空间上密切共生的煌斑岩岩相学、矿物学以及主要元素、微量元素和同位素地球化学的基础上,总结出该区煌斑岩的岩石类型主要为云煌岩,其次为云斜煌岩,两种岩石均属碱性系列、钾质-富钾质钙碱性煌斑岩为交代富集地幔部分熔融的产物。板块俯冲进人地幔楔的地壳物质脱水形成的流体可能是引起该区地幔交代作用的主要因素。  相似文献   

10.
西昆仑库地煌斑岩的年代学及地球化学特征   总被引:14,自引:3,他引:11  
周辉  李继亮 《岩石学报》2000,16(3):380-384
在西昆仑库地发现的煌斑岩脉为钙碱性、钾质闪煌岩,侵位在加里东期的变质增生楔杂岩中,采用角闪石单矿物^40Ar/^39Ar同位素年代学方法确定粕斑岩的侵位年龄为404Ma。煌斑岩的稀土元素总量较高,配分图呈轻稀土富集的右倾型式;微量元素以相对富含固离子亲石元素、亏损高场强元素为特征;结合地球化学、同位素特征和大地构造背景分析,煌斑岩来源于受原特提斯俯冲组分释放富含大离子不相容元素流体交代过的亏损地幔  相似文献   

11.
对南秦岭北大巴山地区广泛分布的一套基性岩墙群中的辉绿岩进行采样,并进行了锆石U-Pb年代学、全岩地球化学分析。结果显示,岩石形成年龄为435~433 Ma,为早志留世晚期岩浆活动产物。这些辉绿岩具低硅、高碱、高钛的碱性岩特征。岩石微量及稀土元素具板内玄武岩特征,轻稀土元素相对富集,轻重稀土元素分异明显,富集不相容元素Ba、Nb、Ta,而K、Y、Yb相对亏损;K及Rb的负异常表明岩石源区残留角闪石或金云母,部分熔融模拟结果显示岩石起源于尖晶石角闪石岩高程度部分熔融。综合地球化学特征及前人研究结果,认为北大巴山地区在早古生代处于大规模伸展裂陷背景下,岩石圈的拉张诱发了低熔点的交代岩石圈地幔熔融,进而形成了这条碱性岩浆带。  相似文献   

12.
本文对嫩江地区中生代双峰式火山岩进行了锆石LA-ICP-MSU-Pb年代学和岩石地球化学研究。测年结果显示嫩江地区中生代双峰式火山岩形成于127.5Ma的早白垩世晚期。岩石地球化学研究表明,早白垩世晚期火山岩具有双峰式组合特点,基性端员富碱,富含轻稀土元素和大离子亲石元素,亏损重稀土元素和高场强元素(Nb、Ta、Ti、Y),形成于富集的岩石圈地幔的部分熔融和分离结晶作用,形成的过程可能含有少量的陆壳混染。酸性端员显示A型流纹岩的特征,为幔源岩浆底侵,使中下地壳岩石发生部分熔融的成因。双峰式火山岩组合的存在暗示其形成于陆内拉张的构造环境。结合区域上中生代火山岩的空间展布特征,嫩江地区早白垩世晚期双峰式火山岩的形成应与太平洋板块向欧亚大陆的俯冲作用有关。  相似文献   

13.
The Eocene dyke swarm with east-west general trend intrudes the Cretaceous sedimentary rocks in ~25 km north of the Khur city (Central Iran). Some of the studied dykes can be followed for over 7 km, but the majority of exposures in the area are less than 5 km long. The dykes commonly exhibit a chilled contact with the wall rocks. These dykes are trachybasalt and basalt in composition. The trachybasalt dykes are much more abundant. The basaltic dykes cross cut the trachybasalt dykes in some locations, indicating that trachybasalt dykes are older than the basaltic ones. Primary igneous minerals of the basaltic dykes are olivine (chrysolite), clinopyroxene (diopside, augite), plagioclase (labradorite), sanidine, magnetite, orthopyroxene (enstatite), spinel and phlogopite, and secondary minerals are zeolite (natrolite and mesolite), chlorite (diabantite), calcite and serpentine. The trachybasalt dykes are composed of clinopyroxene (diopside), plagioclase (labradorite), sanidine, mica (biotite and phlogopite), amphibole (magnesio-hastingsite) and magnetite as primary minerals, and chlorite and calcite as secondary ones. Whole rocks geochemical data of the studied dykes indicate their basic and calc-alkaline nature and suggest that these two set of dykes were derived from the same parental magma. The chondrite-normalized REE patterns and the primitive mantle-normalized multi-elemental diagram of the Khur dykes show enrichment of light rare earth elements (LREE) relative to heavy rare earth elements (HREE), and negative anomalies of high field strength elements (HFSE) (e.g. Ti, Nb and Ta). These rocks show enrichment of the large ion lithophile elements (LILE) (e.g. Cs, Ba, Th and U) and depletion of the HREE and Y relative to MREE, Zr and Hf. In the chondrite-normalized REE diagram, the basalts show elevated REE abundances relative to the trachybasalt samples. Geochemical analyses of the studied samples suggest a spinel lherzolite from the mantle as the source rock and confirm the role of subduction in their generation. The chemical characteristics of the Khur dykes resemble those of continental arc rocks, and they were possibly formed by subduction of the Central-East Iranian microcontinent (CEIM) confining oceanic crust and decompression melting of a lithospheric subcontinental mantle spinel lherzolite enriched by subduction.  相似文献   

14.
青海南部治多县莫云一带的那底岗日组火山岩主要为碱性玄武岩和玄武安山岩。低Ti、高Al,轻稀土元素富集,轻重稀土呈现较强的分馏并具有轻微的负铕异常;富集大离子亲石元素,亏损高场强元素;(87Sr/86Sr)i值为0.70774~0.70801,eNd(t)值为-3.3~-4.5,反映了岛弧构造环境。那底岗日组火山岩为拉竹龙-金沙江洋(或甘孜-理塘洋)洋壳向南消减形成的岩浆弧。  相似文献   

15.
通过对东昆仑造山带晚三叠世岩浆岩的岩石类型、形成时代、岩石地球化学和同位素地球化学资料综合分析,对岩浆岩的岩石组合、分布特征和岩石成因进行研究,探讨东昆仑造山带晚三叠世构造演化的地球动力学背景。东昆仑造山带晚三叠世是古特提斯演化过程中重要的构造转换期,岩浆岩岩石类型多样,主要包括辉长岩、花岗闪长岩、二长花岗岩和正长花岗岩,并且广泛出露具埃达克质特征的岩浆岩和A型花岗岩。晚三叠世岩浆岩的出露规模与俯冲阶段相比,规模较小,一般以小岩体、岩株和岩脉侵入于早期岩体和地层中。东昆仑晚三叠世岩浆岩主体为准铝-弱过铝质高钾钙碱性-钾玄岩系列,轻重稀土元素具有一定分异,富集大离子亲石元素,亏损高场强元素,岩石类型不同时分异程度、富集和亏损程度有一定差异。大部分晚三叠世花岗质岩浆岩的同位素特征与晚二叠世-三叠纪镁铁质岩浆岩近似,部分具有更高的εNd(t)和εHf(t)值。镁铁质岩浆岩、普通花岗岩、埃达克质岩浆岩在东昆仑各个构造带皆有分布,A型花岗岩主要分布在祁漫塔格构造带(东昆北)的阿牙克库木湖-香日德断裂附近。东昆仑晚三叠世镁铁质岩浆岩具有弧岩浆岩特征,为俯冲流体交代的地幔楔部分熔融产物。普通花岗岩和埃达克质岩浆岩多为新生下地壳部分熔融产物,少量埃达克质岩浆岩由于与地幔的交代作用,具有幔源特征。A型花岗岩为残留下地壳部分熔融的产物。部分普通花岗岩、埃达克质岩浆岩和A型花岗岩由于岩浆混合作用,具幔源特征。构造环境研究表明,东昆仑在晚三叠世进入古特提斯演化的后碰撞阶段。巴颜喀拉地块同东昆仑地块的持续碰撞导致地壳加厚,密度增大,使岩石圈重力不稳定发生拆沉作用,引发岩石圈地幔减压熔融,产生大量的镁铁质岩浆岩;镁铁质岩浆底侵不同类型地壳熔融及拆沉地壳部分熔融而形成的岩浆交代地幔,以及岩浆混合和岩浆后期演化,形成了东昆仑造山带晚三叠世丰富多样的岩浆岩。  相似文献   

16.
牛毛泉基性杂岩体位于准噶尔古板块博格达-哈尔里克晚古生代岛弧东段,赋存磁铁矿。研究表明,该岩体具有明显成层性和韵律构造特征,主要岩石类型有橄榄辉长岩、含橄榄辉长岩、辉长岩和角闪辉长岩。岩石地球化学特征表明,该套岩石属拉斑玄武岩系列,m/f值介于0.65~1.44之间,属铁质基性-超基性岩。岩石稀土元素总量相对较低,稀土元素配分曲线为轻稀土元素略富集的右倾型;岩石富集大离子亲石元素(Rb、Ba、Sr、U),相对亏损高场强元素(Zr、Hf),具有明显的Nb、Ta负异常和弱的Ti正异常。岩石εNd(t)=-3.4~-0.50,εSr(t)=-3.4~8.5,具有向EMⅠ方向演化的趋势,表明岩浆源区可能为受俯冲流体交代改造的富集岩石圈地幔,是新疆北部早二叠世时期后碰撞伸展阶段的产物,由拆沉的富集岩石圈地幔被软流圈加热后发生部分熔融并上侵形成。  相似文献   

17.
在野外调查的基础上,对东昆仑战红山地区花岗斑岩通过锆石U-Pb测年和地球化学研究,获得花岗斑岩成岩年龄为(243.4士1.5)Ma(MSWD=0.99),属中三叠世.岩石地球化学特征显示岩石 SiO2为73.82%~75.65%,K2 O/Na2 O=0.61~0.95,相对富钠,贫 MnO(0.05%~0.06%)、...  相似文献   

18.
With aim of providing constraints on the Late Paleozoic tectonic evolution of the southern Central Asian Orogenic Belt(CAOB),an integrated study was conducted on the geochronological and geochemical data for dioritic,granitic and diabase dykes from the Aqishan-Yamansu belt in the eastern Tianshan,NW China.Zircon U-Pb dating indicates that the dioritic and granitic dykes were both emplaced in the Late Carboniferous(~311 Ma and^315 Ma).The dioritic dykes show adakitic characteristics and have high Na2 O and positiveεHf(t)values(+12 to+17),which suggest an origin from partial melts of a subducted oceanic slab.The granitic dykes have high SiO2 and K2 O contents and are characterized by en riched light rare earth elements(LREE)and slightly flat heavy rare earth elements(HREE),with negative Eu and Nb-Ta-Ti anomalies.These dykes are alkali-calcic and show geochemical features of highly fractionated Itype granites.Their positiveεHf(t)values(+16 to+17)suggest that they were derived from a juvenile accreted oceanic crustal sou rce.The coeval diabase dykes have low SiO2 and K2 O contents but high TiO2,MgO and Mg#(54-59).They are enriched in LREE and show characteristics of enriched mid-ocean ridge basalts(E-MORB).The relatively high Ba/Th,slightly low Th/Ta ratios,and negative Nb-Ta anomalies imply a mantle source metasomatised by slab-derived fluids.Thus,these basic dykes were generated likely by partial melting of the upwelling asthenosphere mantle with a slight influence of slab-derived fluids.Therefore,we suggest that the formation of these Late Carboniferous dykes were triggered by a post-collisional slab breakoff and the Aqishan-Yamansu belt was a continental arc formed by southdipping subduction of the Kangguer oceanic plate.  相似文献   

19.
The Liuyuan mafic and ultramafic rocks are exposed in Southern Beishan, which is along the southern branch of the Central Asian Orogenic Belt (CAOB). Zircon SHRIMP U–Pb dating showed that Liuyuan gabbros intruded during the early Permian (~ 270–295 Ma) coeval with the basalts and the ultramafic rocks were emplaced at about 250 Ma. The basalts are within–plate tholeiites with slight enrichment in light rare earth elements (LREE) relative to heavy rare earths (HREE) and small negative anomalies of Nb and Ta. Gabbros including olivine gabbros, olivine gabbronorites and troctolites are grouped into two: the cumulate gabbros are depleted in LREE and show small negative Nb and Ta anomalies but distinct positive Sr and Eu anomalies; non–cumulate gabbros resemble tholeiitic basalts. Lamprophyres and cumulate ultramafic rocks are characterized by large enrichment of LREE relative to HREE with depletion in Nb and Ta. The enriched Sr–Nd isotopic trend from DM towards the EM II end member component implies that the lithospheric mantle was progressively enriched with depth by the involvement of subducted crustal material due to the delamination of thickened mantle lithosphere after collision. The digestion of subducted crustal material into the mantle resulting in the metasomatized and enriched mantle is inferred to be an important process during crust–mantle interaction.  相似文献   

20.
The Weiya gabbro in eastern Tianshan was formed during the early Indosinian. This rock, with low ratios of Ce/Pb (5.74-10.16), is notably characterized by enrichment in large ion lithophile elements (LILE), such as Rb, K, Ba and Pb, and in high field strength elements (HSFE), such as U and Th, but depletion in Nb and Ta. All samples of the Weiya gabbro display similar chondrite-normalized patterns with moderate enrichment in LREE (72.58-135.61ppm), moderate depletion in HREE (15.26-25.31ppm) and mild fractionation between LREE and HREE (L/ H=4.09-5.98). The average initial Sr value of the rock is 0.7069, and δ18O values of the rock range from 5.67‰-8.04‰. In terms of Nd isotope ratios, the Weiya gabbro is characterized by positive eNd(t) values (0.52-0.76). All these characteristics indicate that the source region of the Weiya gabbro was metasomatized by fluids released from subducted young continental crust, with limited crustal contamination during magma ascent and emplacement. Continental (A-type) subduction was induced by northward subduction of the Paleo-Tethyan oceanic plate during the latest Permian to Triassic. From this point of view, it is supposed that tectonic conversion from the Paleo-Asian to the Paleo-Tethys regime occurred during the latest Permian or earliest Triassic.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号