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1.
福建早侏罗世火山岩岩石地球化学特征及岩石成因研究   总被引:1,自引:0,他引:1  
选择较有代表性的永定、平和、长泰—同安、闽清—永泰等地早侏罗世火山岩岩石主量、微量和Sr、Nd同位素分析测试成果,开展岩石地球化学特征对比研究,探讨岩浆起源、演化和不同类别的岩石成因。研究认为,早侏罗世火山岩主要属亚碱性钾质-普通系列,玄武岩属亚碱性高铁拉斑玄武岩系列。玄武岩稀土含量较高,配分曲线与典型OIB玄武岩变化趋势一致;高场强元素(HFSE)除Nb略亏损外,Ti、Zr、Nd具有明显正异常,Ta具有弱正异常;原始地幔标准化曲线位于典型大陆弧玄武岩之上。流纹岩稀土含量高,轻稀土富集,Eu负异常明显,高场强元素Nb、Zr等具有清晰正异常,Ti、P负异常明显。岩石地球化学特征研究表明早侏罗世火山岩岩石成因与地幔岩浆作用有关:基性单元——玄武质岩石岩浆主要来自于软流圈,亏损的地幔源区可能有早期富集岩石圈物质加入或是由于软流圈地幔上涌萃取了岩石圈地幔富集组分。酸性单元——流纹质岩石主要形成于上地壳,但不排除有幔源物质的混合。安山岩-英安岩是底侵的镁铁质岩浆与下地壳部分熔融岩浆混合均一化形成典型的MASH岩浆。早中生代处于印支运动后造山大陆裂解的地球动力学背景,后造山岩石圈伸展拉张致使软流圈减压上涌和部分熔融,所产生的岩浆沿北东向展布的裂解区域喷出地表形成火山岩带。  相似文献   

2.
鲁西邹平盆地中生代火山岩的演化:对地幔源区的约束   总被引:2,自引:1,他引:1  
邹平盆地中生代火山岩可分为三个亚组:中、下亚组具有相似的岩石组合,岩性主要为玄武岩-粗面玄武岩-玄武质粗面安山岩-粗面安山岩;上亚组岩性主要为粗面安山岩。火山岩由早期基性向晚期中偏碱性方向演化,与正常岩浆房酸度增高的岩浆分异趋势相同。具有Rb、Ba、Sr等大离子亲石元素(LILE)和轻稀土元素(LREE)富集,Nb、Ta、Ti等高场强元素(HFSE)相对亏损,类似于岛弧火山岩的地球化学特征。Nb/La、Hf/Sm比值随MgO的降低而升高或基本不变,说明高场强元素亏损是岩浆的原始特征。各亚组火山岩相似的稀土配分模式和微量元素蛛网图,表明它们具有共同的岩浆源区和密切的成因联系,分离结晶起了关键性作用。La/Nb、La/Ta、Ba/Nb比值较高,说明成岩物质可能主要来自岩石圈地幔。拆沉的大陆中、下地壳部分熔融形成的熔体与古生代岩石圈地幔(亏损的地幔橄榄岩)的相互作用是岩石圈地幔富集的重要方式,随之该富集地幔在陆内岩石圈伸展和区域热异常的双重作用下发生减压部分熔融而形成具有岛弧特征的邹平盆地火山岩。  相似文献   

3.
湘东南玄武质岩石地球化学特征及构造环境   总被引:7,自引:0,他引:7  
湖南东南部是我国大规模钨,锡,锑及铅锌,稀有,稀土元素矿床集中区,其控矿构造环境倍受人们关注。幔源暗色岩系是深构造环境的产物,其地球化学特征是了解构造环境的有效途径。湘东南玄武质岩石包括碱性玄武岩和拉斑玄武岩两个系列,以碱性玄武岩系列为主。玄武质岩石稀土元素总量较高,无负铕异常,为轻稀土富集的右倾型。稀土元素反映岩浆形成主要受部分熔融作用控制。岩石形成于大陆拉张构造环境。微量元素具有明显OIB型分布特征,地壳混染程度很低,具有富集地幔特征。岩石地球化学,同位素地球化学和地球物理研究表明,软流圈地幔上涌并交代岩石圈地幔,形成以宁远-道县为中心的热地幔柱构造。该热幔柱构造控制该区的成岩,成矿作用。  相似文献   

4.
唐杰  许文良  李宇  孙晨阳 《地球科学》2019,44(4):1096-1112
近年来,东北地区地幔热演化过程的相关研究相对较少,而揭示东北地区地幔热演化过程的有效手段就是研究东北地区玄武岩的成分变异特征.系统总结并对比了大兴安岭北段早白垩世玄武质岩石和新生代玄武质岩石的化学成分变异,以便揭示研究区中生代晚期-新生代的地幔热演化过程.大兴安岭北段早白垩世玄武岩在化学上属于拉斑玄武岩系列,以亏损Nb、Ta、Ti等高场强元素为特征,它们的La/Nb和La/Ta比值分别介于1.8~5.6和30~87,暗示岩浆起源于岩石圈地幔;它们的初始87Sr/86Sr值、εNd(t)和εHf(t)值分别介于0.704 5~0.706 9、-1.52~+3.60和+1.74~+7.77,表明岩浆源区属于弱亏损-弱富集的岩石圈地幔;早白垩世玄武质岩石的Sr-Nd-Pb同位素成分指示岩浆源区是由DM和EMⅡ型地幔端元混合而成,并经历了俯冲流体的交代.表明大兴安岭北段早白垩世玄武质岩浆源区为受早期俯冲流体交代的岩石圈地幔.新生代超钾质和钾质玄武岩具有Nb-Ta的弱负异常,87Sr/86Sr值为0.704 7~0.705 7、εNd(t)值为-6.3~-0.8,而地幔捕掳体具有Sr-Nd同位素亏损特征;钠质玄武岩具有Nb-Ta的正异常,较超钾质和钾质玄武岩具有低的87Sr/86Sr(0.703 5~0.704 2)以及高的εNd(t)值(+3.4~+6.6),类似MORB的同位素组成,这些特征说明大兴安岭北段新生代玄武质岩石起源于软流圈地幔.综上所述,大兴安岭北段早白垩世和新生代玄武质岩石成分的差异不仅指示其岩浆源区从岩石圈地幔转变为软流圈地幔,更为重要的是它揭示了研究区地幔的热演化过程——从早白垩世高的地温梯度到新生代低的地温梯度的转变.这一过程也是岩石圈从中生代晚期到新生代逐渐增厚的过程.结合区域构造演化,可以得出大兴安岭北段早白垩世的玄武质岩浆作用与岩石圈伸展、减薄形成的裂陷作用相关,而新生代玄武质岩浆作用则与陆内裂谷作用相关.   相似文献   

5.
西昆仑东段阿羌火山岩成因及其构造意义   总被引:1,自引:0,他引:1  
对西昆仑造山带东段阿羌火山岩进行了岩石学和地球化学研究,结果显示下段玄武岩属于低钾拉斑系列,Nb-Ta不亏损,具有较高的Nb/La比值(0.49~1.46,平均=0.98),LREE富集的右倾稀土元素配分模式,HREE内部分异较弱,不相容元素组成相似于大洋高原玄武岩,显示源区除软流圈成分外,还有EMII组分的加入;上段玄武–安山岩组合为具有类似岛弧玄武岩地球化学特征的拉斑系列岩石,富集LREE、LILE,亏损Nb-Ta、Ti等,来源于早期板块俯冲作用改造的大陆岩石圈地幔,主要结晶分异相为橄榄石?单斜辉石?斜长石。西昆仑东段二叠纪拉斑质玄武岩研究表明,区域上整体处于陆缘裂谷或弧后盆地大地构造环境,地幔源区具有多样性。  相似文献   

6.
庐枞盆地是长江中下游成矿带重要的矿集区之一,枞阳地区玄武质火山岩位于庐枞盆地中部。通过对枞阳地区玄武质火山岩进行岩石地球化学特征研究,探讨其源区性质及玄武质岩浆的演化过程。该区玄武质火山岩贫硅、富碱、低钛、低Mg#值,属于钾玄质系列岩石; 稀土元素总量较高,具有LREE富集的右倾型稀土元素配分模式,有较弱的负Eu异常; 岩石富集Rb、K、Sr等大离子亲石元素,亏损Nb、Ta、Zr、Hf等高场强元素,Nb、Ta负异常。在岩石圈拉张作用下,枞阳地区富集岩石圈地幔发生部分熔融,形成的玄武质原始岩浆经历了地壳混染和分离结晶作用,沿区域深大断裂上侵,快速上升至地表,形成玄武质火山岩。  相似文献   

7.
大别造山带构造归属:海西期以来地幔化学成分特征证据   总被引:1,自引:0,他引:1  
通过对海西湘以来幔源岩石化学成分(特别是高度不相容元素对比值和具有相似性质的元素对比值)研究并与相邻构造单元(扬子板块北缘,华北板块南缘,北秦岭带,南秦岭带)地幔特征对比表明,大别造山带中海西期春秋庙-王母观辉长岩,碰撞后晚燕山早期镁铁-超镁铁质岩体(包括南,北大别造山带)以及产于大别造山带南部和扬子地块北缘的晚燕山晚期碱性玄武岩源区地,均具有富Sc,Cu,贫MgO,低Zr/Hf和高Rb/Sr,Ba/Sr,Ba/La,Nb/Ta,Yb/Hf等特征,源区地幔的这些特点与元古宙以来扬子地幔特征相似,而与华北地幔特征存在显著区别,反映大别造山带发育在扬子地幔上,根据大量的地质学,构造地质学,岩石学,地球物理及地球化学等研究结果,指出桐柏-商城-磨子潭-晓天断裂带是秦岭造山带中商丹断裂带的东延,综合研究证实大别造山带主体属南秦岭的组成部分。  相似文献   

8.
峨眉大火成岩省的岩石地球化学特征及时限   总被引:47,自引:5,他引:47  
本文根据盐源-丽江岩区和攀西岩区峨眉山玄武岩的地球化学组成,包括各种氧化物之间的关系、微量元素标准化曲线、Th/Yb与Ta/Yb、Ce/Nb与Th/Nb,以及^87Sr/^86Sr与^143Nd/^144Nd值的相互关系,重点对峨眉山玄武岩地幔源的地球化学特点、上扬子地区岩石圈地幔的地球化学特征及成因、地幔热柱与岩石圈地幔的相互作用,以及峨眉山玄武岩的喷发时限进行了初步探讨。  相似文献   

9.
白石泉含Cu-Ni硫化物镁铁-超镁铁侵入体位于中天山地块,其主要岩石类型有辉石橄榄岩、橄榄辉石岩、橄长岩、辉长岩及角闪辉长岩等,具有明显的堆晶结构.对岩体的主要、微量及稀土元素地球化学特征研究表明,岩体属铁质镁铁-超镁铁岩,具有拉斑玄武质岩浆的分异趋势;并相对富集大离子亲石元素(Rb、Ba、Sr等)、亏损高场强元素(Nb、Ta、Zr、Hf),以及具有LREE富集((La/Yb)n=1.27~9.95)的右倾型稀土元素分布模式.Pb同位特征表明母岩浆与软流圈地幔和EM Ⅱ地幔物质有关.综合地球化学特征表明,母岩浆为来源于受早期俯冲物质混染的软流圈地幔的高镟拉斑玄武岩浆.岩浆在上升过程中,没有受到上地壳及围岩的混染.原生岩浆形成后,经过了橄榄石、辉石、斜长石及铬铁矿的分离结晶作用和硫化物的熔离作用.目前出露的岩体为富含橄榄石及硫化物的“晶粥“在高位岩浆房中演化的产物.  相似文献   

10.
《四川地质学报》2022,(Z1):12-19
遮拉组OIB型玄武岩分布于特提斯喜马拉雅北带中段,围岩为泥质粉砂岩、粉砂质泥岩。地球化学特征表明,岩石具有较明显的低K_2O、中MgO和高TiO_2、P_2O_5、TFeO特征,(La/Yb)_N值为3.79~12.50,δEu=0.92~1.12,其稀土配分曲线呈略右倾的轻稀土富集模式,在原始地幔标准化蛛网图上,富集Rb、Ba、Th等大离子亲石元素及Nb、Ta、Zr、Hf、Ti等高场强元素,为大陆边缘裂谷背景的具有OIB型地球化学特征的碱性玄武岩。遮拉组OIB型玄武岩与含石榴石、尖晶石二辉橄榄岩部分熔融(Gt> Sp)有关,显示出岩石圈地幔物质的印记。玄武岩中捕获锆石年龄可能说明其源区存在古老的大陆碎块。岩石成因模式可以解释为正在孕育的地幔柱诱导的上涌软流圈物质与岩石圈地幔物质混合后在拉张背景下发生减压熔融的产物,这种地幔热柱或热点可能与Kerguelen热点的早期活动有联系,岩浆演化过程中发生了橄榄石和单斜辉石的分离结晶作用。  相似文献   

11.
汪方跃  高山  牛宝贵  张宏 《地学前缘》2007,14(2):98-108
华北克拉通罕见年龄界于120~100Ma的火山岩。承德盆地大北沟组火山岩下部主要由柱状节理橄榄玄武岩组成,中上部主要由安山岩组成。对紧邻玄武岩的上覆安山岩的火山锆石U-PbLA-ICPMS定年结果表明,形成年龄为(113.6±0.87)Ma,代表了该套火山岩的喷发年龄,表明它们形成于早白垩世晚期。对3件玄武岩样品的分析结果表明,它们亏损高场强元素(Nb、Ta、Zr、Hf),初始87Sr/86Sr同位素比值为0.7059,εNd(114Ma)为-11.04,具有富集型岩石圈地幔的特征。但该套玄武岩的主量和微量元素特征则介于华北克拉通中生代年龄>120Ma具古老富集型地幔特征的玄武岩和年龄<100Ma具亏损软流圈性质的玄武岩之间,表明113.6Ma时华北克拉通岩石圈地幔在元素组成方面已具有由富集地幔向亏损型软流圈地幔转变的特征。大北沟组玄武岩的地球化学特征表明,114Ma时华北克拉通岩石圈地幔已减薄。  相似文献   

12.
榆树沟变质基性-超基性岩带出露于塔里木板块与哈萨克斯坦板块之间的南天山北缘,主要由变质橄榄岩和变质基性岩组成。变质橄榄岩富相容元素Cr、Co和Ni,贫不相容元素,太离子亲石元素Ba、Rb和Sr含量较低,与世界典型蛇绿岩相似,代表了地幔残留物特征。REE分布模式为LREE亏损型,REE含量小于或等于2.5倍球粒陨石,类似于阿尔卑斯型变质橄榄岩,显示榆树沟的变质橄榄岩是原始地幔岩部分熔融萃取出玄武岩后的残留物。变质基性岩绝大部分为LREE亏损型,类似于N-MORB。所有样品均以富集Nb和Ta、高场强元素不分异,以及微量元素含量低为特征,批示岩浆源区总体上类似于MORB,Nb、Ta富集可能与OIB型源区有关,Nd、Sr同位素特征也显示其具有OIB型源区特征。综合分析认为,榆对沟变质基性岩石的岩浆可能经历了两个阶段的演化过程,即上地幔底部或下地幔顶部的OIB型原始岩浆形成阶段和软流圈地幔亏损阶段。  相似文献   

13.
http://www.sciencedirect.com/science/article/pii/S1674987111001125   总被引:1,自引:1,他引:0  
<正>Greenstone belts of the eastern Dharwar Craton,India are reinterpreted as composite tectonostratigraphic terranes of accreted plume-derived and convergent margin-derived magmatic sequences based on new high-precision elemental data.The former are dominated by a komatiile plus Mg-tholeiitic basalt volcanic association,with deep water siliciclastic and banded iron formation(BIF) sedimentary rocks.Plumes melted at90 km under thin rifted continental lithosphere to preserve inlraoceanic and continental margin aspects.Associated alkaline basalts record subduction-recycling of Mesoarchean oceanic crust,incubated in the asthenosphere.and erupted coevally with Mg basalts from a heterogeneous mantle plume.Together.komaliites-Mg basalts-alkaline basalts plot along the Phanerozoic mantle array in Th/Yb versus Nb/Yb coordinate space,representing zoned plumes,establishing that these reservoirs were present in the Neoarchean mantle. Convergent margin magmatic associations are dominated by tholeiitic to calc-alkaline basalts eompositionally similar to recent intraoceanic arcs.As well,boninitic flows sourced in extremely depleted mantle are present,and the association of arc basalts with Mg-andesites-Nb enriched basalts-adakites documented from Cenozoic arcs characterized by subduction of young(20 Ma),hot,oceanic lithosphere. Consequently.Cenozoic style "hot" subduction was operating in the Neoarchean.These diverse volcanic associations were assembled to give composite terranes in a subduction-accretion orogen at~2.1 Ga,coevally with a global accretionary orogen at ~2.7 Ga,and associated orogenic gold mineralization. Archean lithospheric mantle,distinctive in being thick,refractory,and buoyant,formed complementary to the accreted plume and convergent margin terranes.as migrating arcs captured thick plumeplateaus. and the refractory,low density.residue of plume melting coupled with accreted imbricated plume-arc crust.  相似文献   

14.
东南沿海地区古近纪大陆岩石圈地幔特征及成因   总被引:3,自引:0,他引:3  
东南沿海地区新生代玄武岩中的橄榄岩包体来自岩石圈地幔 ,上地幔橄榄岩包体的岩石学及地球化学特征都记录了地幔演化的历史。普宁橄榄岩包体斜方辉石含量与太古宙克拉通地幔类似 ,但在矿物学、REE、痕量元素和Sr Nd同位素上又与太古宙岩石圈地幔不同。橄榄岩包体的岩相学、矿物学、REE、痕量元素特征都提供了含H2 O富Si流体交代橄榄岩的证据 ,这种流体可能主要是洋壳物质局部熔融而成。流体交代使橄榄岩富Si,同时富Sr、Pb和强不相容元素等大洋岩石圈物质。这表明普宁大陆岩石圈地幔既保留太古宙岩石圈地幔的特征 ,又具有大洋俯冲地幔的特征 ,它是古老岩石圈地幔向大洋岩石圈地幔转换的一部分 ,这种转换可能是大洋岩石圈与大陆岩石圈地幔相互作用的结果。  相似文献   

15.
The Emeishan continental flood basalt (ECFB) sequence in Dongchuan, SW China comprises a basal tephrite unit overlain by an upper tholeiitic basalt unit. The upper basalts have high TiO2 contents (3.2–5.2 wt.%), relatively high rare-earth element (REE) concentrations (40 to 60 ppm La, 12.5 to 16.5 ppm Sm, and 3 to 4 ppm Yb), moderate Zr/Nb and Nb/La ratios (9.3–10.2 and 0.6–0.9, respectively) and relatively high Nd (t) values, ranging from − 0.94 to 2.3, and are comparable to the high-Ti ECFB elsewhere. The tephrites have relatively high P2O5 (1.3–2.0 wt.%), low REE concentrations (e.g., 17 to 23 ppm La, 4 to 5.3 ppm Sm, and 2 to 3 ppm Yb), high Nb/La (2.0–3.9) ratios, low Zr/Nb ratios (2.3–4.2), and extremely low Nd (t) values (mostly ranging from − 10.6 to − 11.1). The distinct compositional differences between the tephrites and the overlying tholeiitic basalts cannot be explained by either fractional crystallization or crustal contamination of a common parental magma. The tholeiitic basalts formed by partial melting of the Emeishan plume head at a depth where garnet was stable, perhaps > 80 km. We propose that the tephrites were derived from magmas formed when the base of the previously metasomatized, volatile-mineral bearing subcontinental lithospheric mantle was heated by the upwelling mantle plume.  相似文献   

16.
Cenozoic basaltic volcanism in southeastern China was related to the lithospheric extension and asthenospheric upwelling at the eastern Eurasian continental margin. The cenozoic basaltic rocks from this region can be grouped into three different series: tholeiitic basalts, alkali basalts, and picritic-nephelinitic basalts. Each basalt series has distinctive geochemical features and is not derived from a common source rock by different degrees of partial melting or from a common parental magma by fractional crystallization. The mineralogy, petrography, and major and trace-element geochemistry of the tholeiites are similar to oceanic island basalts, implying that the mantle source for these Chinese continental tholeiites was similar to that of the oceanic island basalts—an asthenospheric mantle. The alkali basalts and picritic-nephelinitic basalts are enriched in incompatible trace elements, and their geochemical features can be interpreted as a result of partial melting of an enriched lithospheric mantle, or the mixing products of an asthenospheric magma with a component derived from an enriched lithospheric mantle through thermal erosion at the base of the lithosphere. But the lack of a transitional rock type and continuous variational trends among these basalts suggests that the mixing between asthenospheric magmas and lithospheric magmas probably was not significant in the petrogenesis of the basalts from SE China. Low-degree partial melting of enriched lithospheric mantle alone can account for the observed geochemical data from these basalts.  相似文献   

17.
本文对在峨眉山玄武岩省中新发现的苦橄质岩石及其共生玄武岩的地球化学特征进行了研究,结果表明,除苦橄质岩石外,与其共生的玄武质岩石均属高Ti玄武岩。其主要元素特征与大多数大陆溢流玄武岩省相似,表现为高Fe_8、(CaO/Al_2O_3)_8和低Na_8,指示其形成压力高;其稀土和微量元素配分曲线相似,表现为轻稀土富集、高场强元素(HFSE)相对亏损,并且不存在Nb、Ta的负异常,而存在P和K的相对亏损。一些反映源区特征的比值,如La/Ta、La/Sm、(La/Nb)_(PM)、(Th/Ta)_(PM),Ta/Hf,Nb/Zr等,变化范围小,均指示了其地幔柱成因,且上升过程中很少或没有受到岩石圈地幔或地壳物质的混染,是石榴子石二辉橄榄岩在>75km时经大约7%的部分熔融的产物。而地幔柱的轴部位置可能位于现今云南丽江县城一带。  相似文献   

18.
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   

19.
The Rajahmundry Trap Basalts(RTB) are erupted through fault-controlled fissures in the Krishna-Godavari Basin(K-G Basin) of Godavari Triple Junction,occurring as a unique outcrop sandwiched between Cretaceous and Tertiary sediments along the east coast of India.Detailed geochemical studies have revealed that RTB are mid-Ti(1.74-1.92) to high-Ti(2.04-2.81) basalts with a distinct quartz tholeiitic parentage.MgO(6.2-13.12 wt.%),Mg#(29-50) and Zr(109-202 ppm) suggest that these basalts evolved by fractional crystallization during the ascent of the parent magma along deep-seated fractures.Moderate to high fractionation of HREE,as indicated by(Gd/Yb)N ratios(1.71-2.31) of RTB,suggest their generation through 3-5%melting of a Fe-rich mantle corresponding to the stability fields of spinel and garnet peridotite at depths of 60-100 km.Low K2O/P2O5(0.26-1.26),high TiO2/P2O5(6.74-16.79),La/Nb(0.89-1.45),Nb/Th > 8(8.35-13),negative anomalies at Rb reflect minimum contamination by granitic continental crust.(Nb/La)PM ratios(0.66-1.1) of RTB are attributed to endogenic contamination resulted through recycling of subducted oceanic slab into the mantle.Pronounced Ba enrichment with relative depletion in Rb indicates assimilation of Infra- and Inter-trappean sediments of estuarine to shallow marine character.Geochemical compositions such as Al2O3/TiO2(3.88-6.83),medium to high TiO2(1.74-2.81 wt.%).positive Nb anomalies and LREE enrichment of these RTB attest to their mantle plume origin and indicate the generation of parent magma from a plume-related enriched mantle source with EM 1signature.Ba/Th(46-247),Ba/La(3.96-28.51) and Th/Nb(0.08-0.13) ratios suggest that the source enrichment process was marked by recycling of subduction-processed oceanic crust and lithospheric components into the mantle.Zr/Hf(37-41) and Zr/Ba(0.51-3.24) indicate involvement of an asthenospheric mantle source.The Rajahmundry basalts show affinity towards FOZO(focal zone mantle) and PSCL(post-Archaean subcontinental lithosphere) which reflect mixing between asthenospheric and lithospheric mantle components in their source.Origin of RTB magma is attributed to plume-lithosphere interaction and the upward movement of melt is facilitated by intrabasinal deep-seated faults in the K-G Basin.  相似文献   

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