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1.
马里亚纳海槽作为正在活动的典型弧后盆地,是研究俯冲作用对岩浆作用和壳幔动力学影响的理想场所。通过对采自该海槽中南部的样品进行系统的岩石地球化学特征对比与研究,并结合前人已发表的岩石地球化学数据,探讨了马里亚纳海槽中南部的地幔富集(亏损)程度、地幔熔融程度、地幔熔融深度以及俯冲物质的加入程度。结果表明:(1)马里亚纳海槽中南部主要发育一套中低钾钙碱性系列玄武岩、玄武质安山岩;(2)海底岩石富集了大离子亲石元素、轻稀土元素,亏损高场强元素、重稀土元素;(3)将马里亚纳海槽沿扩张中心分为三段,对每段地幔熔融的程度和深度进行计算并且消除地幔不均一性的影响,发现在15°N和18°N附近二者呈现负相关关系,其余地区则呈现正相关关系,证明海槽存在两种地幔熔融模式;(4)微量元素比值显示海槽受多种俯冲组分影响,并且马里亚纳海槽南部的南段可能存在另一个富水熔体端元,可能是导致海槽扩张速率较快的原因。对俯冲物质的加入程度进行计算,发现靠近15°N与18°N俯冲组分的影响变弱,这进一步表明,马里亚纳海槽火山岩的变化可能是由于类似N-MORB的地幔源区与类似岛弧的地幔源区混合造成的;俯冲物质是控制地幔熔融程度...  相似文献   

2.
对东马努斯盆地高镁安山岩做了全岩主微量和Sr-Nd-Pb同位素分析,并结合前人测试数据,探究了岩浆物质来源及演化过程。由主量元素[MgO、CaO、FeOT(全铁)、Al_2O_3、TiO_2和P_2O_5]含量随着硅含量的升高而降低和La/Sm随着La含量的升高而保持不变可知,岩浆在演化过程中只发生了矿物的分离结晶,分离的矿物可能为橄榄石、辉石、斜长石、钛铁矿和磷灰石。东马努斯盆地高镁安山岩的Pb和大离子亲石元素(K,Rb,Sr,Ba和U)的富集、高场强元素(Nb,Th,Ta和Ti)的亏损说明岩浆受到了俯冲板块脱水作用的影响。推测该区高镁安山岩是流体交代的地幔楔部分熔融形成的。由Sr-Nd同位素混合模拟结果可知东马努斯盆地高镁安山岩主要来源于马努斯MORB(洋中脊玄武岩),少量来自于太平洋蚀变洋壳和海底沉积物。根据Sr-Nd-Pb同位素特征推测岩浆混合作用发生在地幔源区,属于源区混染,岩浆在喷发的过程中没有发生同化混染作用,也没有加入其他体系的物质。  相似文献   

3.
北部湾玄武岩地幔源区性质的地球化学示踪及其构造环境   总被引:9,自引:0,他引:9  
北部湾发育一系列上新世玄武岩,其全岩K—Ar年龄为5.9—2.4Ma,是伴随北部湾盆地拉张而形成的一次较大规模的岩浆活动。岩石化学和微量元素地球化学研究表明,该玄武岩属于碱性玄武岩系,具有OIB型微量元素配分模式,形成于较均一的地幔源区,具有以EM2型地幔端元为主、混有HIMU和EMl型端元的地幔源区性质,形成于地幔柱或地幔热点的构造环境。北部湾盆地与红河剪切断裂带具有相同的地幔源区,而与受太平洋板块影响的地幔源区差别较大。玄武岩形成和北部湾盆地拉张主要受印度板块向欧亚板块俯冲导致的红河断裂带大规模剪切走滑控制,5Ma左右红河断裂带由左行走滑剪切转变为右行走滑剪切的构造性质转换可能是导致地幔异常扰动和岩浆活动的地球动力学机制。  相似文献   

4.
东海陆架盆地是以新生代为主的中、新生代含油气盆地,位于菲律宾板块俯冲与印度板块俯冲的前缘交接地带.印度板块与欧亚板块的俯冲挤压,使得欧亚板块浅部发育向东的挤出构造,同时,印度板块和华南地块深部的软流圈也沿欧亚板块下的软流圈通道向东南蠕变运移,在东海陆架盆地受阻而形成地幔上涌,驱动中国东部广泛裂解.印度板块向欧亚板块楔入...  相似文献   

5.
栖霞牙山地区地处华北地台东部,对该区的似斑状花岗闪长岩体所作的岩石地球化学研究表明,该区岩石为钙碱性偏铝质岩石;微量元素MORB标准化蛛网图显示富集大离子亲石元素Ba、Sr,亏损高场强元素Nb、Ta、Hf、Y;K/Rb比值为295.34~388.88,Rb/Sr比值为0.21~0.29;稀土元素蛛网图表现为较平滑的具微弱负Eu异常向右陡倾的稀土元素配分模式曲线,∑LREE/∑HREE为9.14~12.22,显示轻重稀土元素分异较好。结合构造背景分析,认为牙山花岗闪长岩体为早白垩世太平洋板块向欧亚板块俯冲诱发的地幔柱活动,造成地幔底辟,引起地壳部分熔融,形成壳幔混合岩浆并进一步侵入形成。  相似文献   

6.
地球内部可能存储了地球上大部分的碳,地球的整个地质演化历史都伴随着碳循环。岩浆过程是重要的CO_2释放途径,引起地表碳的增加。板块俯冲起动之后,俯冲带成为地表碳重返地球内部的基本途径。板块俯冲和岩浆过程构成了地表过程和地球内部之间的碳循环,在地质历史时期影响着地表的碳总量,对于宜居地球环境和一些重要矿产资源的形成具有重大意义。然而,相对地表过程的碳循环而言,国际上对深部碳循环的研究程度和取得的认识远远不足。对于地球深部碳的富集机制、赋存部位,以及碳在地球内部各圈层之间的交换规律,还存在很大争议。本文对与深部碳循环密切相关的深部碳储库、岩浆中的碳组成及其对岩浆成因的影响,以及板块俯冲过程中碳行为进行了总结。结果表明,无论是洋中脊玄武岩或洋岛玄武岩,其源区CO_2组成都存在高度不均一性;与地幔柱有关的深源板内火山岩相对洋中脊具有异常高的CO_2组成,显示深部地幔比上地幔或软流圈更富集碳。地球的地幔转换带(410~660 km)、大陆岩石圈,甚至下地幔可能是重要的碳储库。碳酸岩熔体与岩石圈橄榄岩存在化学不平衡,长期的碳酸岩熔体交代作用可能导致大陆岩石圈是个重要碳储库;地幔转换带的高压还原环境可能使得来自上涌地幔或俯冲板片中的碳以金刚石形式存储。地幔转换带或更深的碳在上涌减压过程中通过氧化还原熔融可以转化为CO_2,对地幔初始熔融和板内火山岩的成因(尤其是碱性火山岩)可能具有至关重要的作用。综合认为,导致地球内部富集碳的地质作用最可能是长期板块俯冲,但是目前国内外对与板块俯冲过程相关的碳行为和碳通量估算还存在很大的不足,未来有必要针对岩浆过程的CO_2活动行为、俯冲板块中碳的转化行为以及脱碳规律重点开展研究。  相似文献   

7.
冲绳海槽是因菲律宾海板块俯冲于欧亚板块之下,在陆壳上发育起来的一个初始的弧后盆地,是研究弧后扩张作用早期盆地演化、岩浆作用和壳幔过程的天然实验室。尽管迄今对冲绳海槽已经做了大量的调查研究工作,但仍存在一些颇有争议或亟待解决的科学问题,如:冲绳海槽酸性浮岩与基性玄武岩之间的成因联系,冲绳海槽不同区段构造背景对岩浆作用的控制,冲绳海槽岩浆源区地幔的特征,俯冲板块组分(流体+熔体)对地幔楔部分熔融的贡献等。本文在系统收集和整理(剔除了一些存疑数据)了迄今已有冲绳海槽火山岩主量元素、微量元素(包括稀土元素)与Sr-Nd-Pb同位素数据的基础上,通过对资料的系统分析,进一步确认了酸性浮岩与基性玄武岩的岩浆同源性;认为在冲绳海槽北段与中段主要分布有酸性浮岩和中性安山岩,应该是两段区域目前正处于裂谷阶段的反映,而南段广泛分布的基性玄武岩说明在构造性质上已接近成熟性弧后盆地;冲绳海槽的火山岩岩浆源区具有II型富集地幔(EMII型)Dupal异常特征,岩浆源于流行地幔(PREMA)和EMII型地幔端元混合的源区地幔,其中EMII约占比15%,PREMA贡献率在85%左右;源于俯冲的菲律宾海板块(俯冲洋壳或沉积物)的流/熔体的加入是导致冲绳海槽下伏地幔具有EMII型特征的原因,这一点不同于Dupal异常源于壳幔相互作用的观点。  相似文献   

8.
本文通过对昆嵩高原,三水盆地以及玳瑁海山岩浆岩的地球化学研究来揭示南海海盆以及周边地区的岩浆过程以及地幔源区的性质。昆嵩,三水及玳瑁海山玄武质岩浆的地球化学特征均反应这些岩浆并非来源于一个起源于核幔边界的深部地幔柱,而是来源于较浅的岩浆源区,例如岩石圈下地幔或者软流圈地幔。此外,南海海盆岩浆岩的地幔源区较昆嵩高原和三水盆地岩浆岩的地幔源区更加亏损并且表现出较低的地幔温度。这些差异可能表明三水盆地内的岩浆活动被南海的开张所抑制,而之后又在昆嵩高原复苏。研究区的地幔表现出不均一性,其中的富集地幔端元表现出EM2的特征。这个EM2富集端员是由于伴随着大陆沉积物的中生代古南海板块俯冲到研究区地幔中所形成的。  相似文献   

9.
日本西南部的南海海槽是一个典型的俯冲系统,由菲律宾海板块向欧亚板块俯冲形成,其俯冲板片包含了九州-帕劳洋脊(KPR)、Kinan海山链、四国海盆和伊豆-小笠原岛弧(IBA)等多种地质单元。为了研究不同地质单元的板块俯冲效应,本文系统分析了南海海槽的地球物理和岩石地球化学特征。重力和热流特征显示南海海槽中部具有低的重力异常(-20–-40 mGal)和高的热流值(60–200 mW/m2),而东西两侧的热流值(20–80 mW/m2)较低。地震模拟结果显示俯冲板块的地壳厚度为5–20 km。地球化学结果表明俯冲板块的下覆地幔成分从西到东逐渐亏损。无震洋脊(如KPR、Kian海山链和Zenisu洋脊)的俯冲是控制南海海槽俯冲效应的主要因素。首先,无震洋脊的俯冲可能使上覆板块发生变形,沿着增生楔前缘出现不规则的地形凹陷。其次,无震洋脊的俯冲是大型逆冲地震的止裂体,阻碍了南海海槽1944年Mw 8.1和1946年Mw 8.3地震破裂的传播。此外,KPR和热的、年轻的四国海盆的俯冲会导致俯冲板片熔融,在日本岛弧上出现埃达克质岩浆活动,并为斑岩铜金矿床提供成矿物质。地球物理和地球化学特征的差异表明尽管IBA已经和日本岛弧发生碰撞,但作为IBA的残留弧,KPR仍然处于俯冲阶段,与日本岛弧之间有明显的地形分界,呈现单向收敛的状态。  相似文献   

10.
华北东部青岛地区煌斑岩广泛发育,其岩石成因、构造环境等方面研究程度较低。本文通过研究其岩石学和地球化学特征,讨论岩浆的源区性质、形成的构造环境,进而推断研究区的地质演化过程。研究区内煌斑岩的SiO2含量(W(SiO2))为39.13%~51.26%,属于钾玄质碱性岩。样品的稀土元素整体表现出轻稀土元素富集、重稀土元素亏损的特征,Ce和Eu异常(分别用δCe和δEu表示)不显著。样品微量元素总体表现出大离子亲石元素(Ba、K、Pb)和轻稀土元素富集(LREE),而高场强元素(Nb、Ta和Ti)亏损的特征,具有典型的俯冲特征。源区为三叠纪时北向俯冲的扬子板块析出的熔体,交代上覆华北板块地幔橄榄岩而形成的地幔交代岩。白垩纪时,俯冲带岩石圈大范围坍塌,软流圈上涌形成伸展环境,地幔源区发生部分熔融,岩浆上升侵位形成煌斑岩。  相似文献   

11.
The diverse geodynamic conditions of the parental magma??s melting are responsible for the compositional diversity of the alkaline volcanics near the southwestern margin of Iberia. The petrological-geochemical data show that the volcanics of the Gorringe Bank originated within the continental plate. The parental melilitite melts depleted in silica and anomalously enriched with trace elements could have been generated only in deep settings with a low degree of metasomatically enriched mantle matter melting. The volcanic melilitite-nephelinite-phonolite series is widespread in alkaline provinces of the Eurasian, African, and other continental plates. The Ampere, Josephine, and other seamounts and islands of the region are largely composed of volcanic rocks belonging to the picrobasalt-hawaiite-mugearite association. Their parental magmas were generated within the oceanic plate at shallower depths under a higher degree of moderately enriched oceanic lithospheric mantle melting. Both series of volcanics were formed under the influence of mantle plumes.  相似文献   

12.
Volcanic rocks both from the northern East China Sea (NECS) shelf margin and the northern Okinawa Trough are subalkaline less aluminous,and lower in High Field Strength Elements (HFSE).These rocks are higher in Large Ion Lithophile Elements (LILE),thorium and uranium contents,positive lead anomalies,negative Nb-Ta anomalies,and enrichment in Light Rare Earth Elements (LREE).Basalts from the NECS shelf margin are akin to Indian Ocean Mid-Ocean Ridge Basalt (MORB),and rhyolites from the northern Okinawa Trough have the highest 207 Pb/ 204 Pb and 208 Pb/ 204 Pb ratios.The NECS shelf margin basalts have lower 87 Sr/ 86 Sr ratios,ε N d and σ 18 O than the northern Okinawa Trough silicic rocks.According to 40 K– 40 Ar isotopic ages of basalts from the NECS shelf margin,rifting of the Okinawa Trough may have been active since at least 3.65–3.86 Ma.The origin of the NECS shelf margin basalt can be explained by the interaction of melt derived from Indian Ocean MORB-like mantle with enriched subcontinental lithosphere.The basalts from both sides of the Okinawa Trough may have a similar origin during the initial rifting of the Okinawa Trough,and the formation of basaltic magmas closely relates to the thinning of continental crust.The source of the formation of the northern Okinawa Trough silicic rocks was different from that of the middle Okinawa Trough,which could have been generated by the interaction of basaltic melt with an enriched crustal component.From the Ryukyu island arc to East China,the Cenozoic basalts have apparently increasing trends of MgO contents and ratios of LREE to Heavy Rare Earth Elements (HREE),suggesting that the trace element variabilities of basalts may have been influenced by the subduction of the Philippine Sea plate,and that the effects of subduction of the Philippine Sea plate on the chemical composition of basaltic melts have had a decreasing effect from the Ryukyu island arc to East China.  相似文献   

13.
冲绳海槽岩浆源的三分量混合模型   总被引:1,自引:0,他引:1  
综合分析了冲绳海槽玄武岩中微量元素的地球化学特征,发现最少要求三分量混合作用来解释其岩浆源成分,并通过最大方差因子分析估算了3个分量的贡献比例。亏损型地幔是海槽岩浆源的主体,但其中舍有富集型地幔的成分,尤其是海槽中部玄武岩岩浆源中这种富集型地幔成分的特征表现得更为明显。俯冲组分是岩浆源中的另一个主要成分,贡献量为20%左右,是造成海槽区玄武岩中Pb强烈富集的重要原因。  相似文献   

14.
为进一步了解冲绳海槽浮岩的物理性质和地球化学特征差异,对冲绳海槽中部岩心沉积物S9中的浮岩进行了微观结构和地球化学组成分析。结果显示,冲绳海槽中部存在白色、灰白色及棕色3种浮岩,其中灰白色浮岩又可以根据构造特征分为气孔构造和流动构造浮岩两个亚类。浮岩的地球化学组成表明白色、灰白色及棕色浮岩都是由玄武质岩浆经过充分的分离结晶作用形成的流纹质或流纹英安质火山岩。玄武质岩浆在演化的过程中发生了斜长石、角闪石、辉石、Fe-Ti氧化物、磷灰石等矿物的结晶分离。结合有孔虫14C年龄,认为浮岩是冲绳海槽中部距今13.1 ka左右的长英质火山活动的产物。演化程度相对较低的棕色浮岩具有比白色浮岩高的TiO2, Al2O3, Fe2O3, MgO, CaO含量,且棕色浮岩具有相对低的稀土总量和轻稀土总量。根据浮岩的物理性质及地球化学组成差异推测,岩浆的黏度和压力是影响浮岩构造特征的主要因素。黏度大、连续减压的岩浆易于形成具有流动构造和密集气孔的浮岩,黏度小、阶段性减压的岩浆易于形成气孔大而疏松的浮岩。  相似文献   

15.
Okinawa Trough is a back-arc, initial marginal sea basin, located behind the Ryukyu Arc–Trench System. The formation and evolution of the Okinawa Trough is intimately related to the subduction process of the Philippine Sea Plate beneath the Eurasian Plate since the late Miocene. The tectonic evolution of the trough is similar to other active back-arcs, such as the Mariana Trough and southern Lau Basin, all of which are experiencing the initial rifting and subsequent spreading process. This study reviews all petrologic and geochemical data of mafic volcanic lavas from the Okinawa Trough, Ryukyu Arc, and Philippine Sea Plate, combined with geophysical data to indicate the relationship between the subduction sources(input) and arc or back-arc magmas(output) in the Philippine Sea Plate–Ryukyu Arc–Okinawa Trough system(PROS). The results obtained showed that several components were variably involved in the petrogenesis of the Okinawa Trough lavas: sub-continental lithospheric mantle underlying the Eurasian Plate, Indian mid-oceanic ridge basalt(MORB)-type mantle, and Pacific MORB-type mantle. The addition of shallow aqueous fluids and deep hydrous melts from subducted components with the characteristics of Indian MORB-type mantle into the mantle source of lavas variably modifies the primitive mantle wedge beneath the Ryukyu and subcontinental lithospheric mantle(SCLM) beneath the Okinawa Trough. In the northeastern end of the trough and arc, instead of Indian MORB-type mantle, Pacific MORB-type mantle dominates the magma source. Along the strike of the Ryukyu Arc and Okinawa Trough, the systematic variations in trace element ratios and isotopic compositions reflect the first-order effect of variable subduction input on the magma source. In general, petrologic data, combined with geophysical data, imply that the Okinawa Trough is experiencing the "seafloor spreading" process in the southwest segment, "rift propagation" process in the middle segment, and "crustal extension" process in the northeast segment, and a nascent ocean basin occurs in the southwest segment.  相似文献   

16.
As an active back-arc basin, the Okinawa Trough is located in the southeastern region of the East China Sea shelf and is strongly influenced by the subduction of the Philippine Sea Plate. Major element, trace element and Sr-NdPb isotopic composition data are presented for volcanic rocks from the Iheya Ridge(IR), the middle Okinawa Trough. The IR rocks record large variations in major elements and range from basalts to rhyolites. Similar trace element distribution characteristics together with small variations in ~(87)Sr/~(86)Sr(0.703 862–0.704 884), ~(144)Nd/~(143)Nd(0.512 763–0.512 880) and Pb isotopic ratios, demonstrate that the IR rocks are derived from a similar magma source. The fractional crystallization of olivine, clinopyroxene, plagioclase, and amphibole, as well as accessory minerals, can reasonably explain the compositional variations of these IR rocks. The simulations suggest that approximately 60% and 75% fractionation of an evolved basaltic magma can produce trace element compositions similar to those of the intermediate rocks and acid rocks, respectively. The analysis of their Sr-Nd-Pb isotopic content ratios suggest that the source of the rocks from the IR is close to the depleted mantle(DM) but extends to the enriched mantle(EMII), indicating that the mantle source of these rocks is a mixture between the DM and EMII end members. The simulations show that the source of the IR volcanic rocks can be best interpreted as the result of the mixing of approximately 0.8%–2.0% subduction sediment components and 98.0%–99.2% mantlederived melts.  相似文献   

17.
A number of samples have been dredged from the upper parts of Amanay and El Banquete Seamounts, yet volcanic materials have been collected only on Amanay Seamount. Based on textural features and the presence or absence of kaersutite, two main types of olivine pyroxene basaltic rocks have been identified. The rocks are basanites with high enrichment in the most incompatible elements, similar to that displayed by Ocean Island Basalts. Samples from Amanay Seamount formed due to a low degree of melting of an enriched mantle, very similar to that which probably caused the Miocene volcanic activity of Fuerteventura. The age of Amanay volcanic rocks, 15.3 ± 0.4 and 13.1 ± 0.3 Ma, is similar to those of the older volcanic units exposed in the nearby islands (Gran Canaria, Fuerteventura and Lanzarote). This proves the formation of a separate submarine volcanic edifice coeval with the other edifices of the Eastern Canarian Volcanic Ridge. Volcanic activity on the submarine edifice is thought to have ceased at about 13 Ma, simultaneous with the adjacent main volcanic construction.  相似文献   

18.
The major elements, trace elements, K-Ar age and Sr-Nd-Pb isotopic systems of the Cenozoic volcanic rocks in Daheishan Island and Cishan, Penglai, Shandong Province are measured. The volcanic rocks ( olivine-nephelinite and nepheline-basanite ) in DaheishanIsland erupted periodically in an interval of 0.32 Ma, from 8.72 Mm 8.39 Ma, 8.08 Ma to 7.73Ma. The volcanic rocks are all rich in light REEs. They are similar to the OIB-type alkali basalt in the trace elements normalized model by primordial mantle: rich in high field elements such as Nb and Ta, and imcompatible elements such as Cs, Rb, Ba, Th, U. The volcanic rocks show a depletion of K and Rb elements. It is suggested by the trace elements that the olivine-nephelinite in Daheishan Island is originated fi‘om deep resources under the continental mantle, ε Nd (0) values of the volcanic rocks in Daheishan Island and Cishan are 5.31 - 8.51 and 7.33 respectively, suggesting that the volcanic rocks are from the depleted mantle resources, which have higher Sm/Nd ratios than the CHUR. ^143Nd /^144Nd ratios of Daheishan Island olivine-nephelinite and Cishan alkali basalts are 0.512 910 - 0.513 074 and 0.513 014 resoeetivelv. The ^87Sr /^86Sr of Daheishan lsland volcanic rocks are lower than that of Cishan, 0.703 427 - 0.703 482 and 0.703 895 respectively. The Daheishan Island olivinenephelinite has the Pb isotopic values as follows: ^206Pb /^204pb= 18.028 9 ~17.972 8,^207Pb /^204Pb= 15,435 8 - 15.402 2 and ^208Pb /^204Pb=38.087 6 - 37.997 5, lower than those of Cishan basanite. The Cishan basanite has ^206Pb / ^204Pb = 18.240 1, ^208Pb /^204Pb = 15.564 5 and ^208Pb /^204Pb=38.535. The authors suggest that the olivine-nephelinite in Daheishan Island is similar to the E-type MORB or Hawaii OIB, and the alkali basalts in Cishan similar to the Kerguelen OIB. The dominant mantle components of DM PREMA and perhaps DM( Dupal type ) are the dominant mantle components for volcanic rocks in Daheishan Island and Cishan. The PREMA component plays an important role.  相似文献   

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