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1.
冲绳海槽黑色与白色浮岩特征及其对岩浆演化的指示   总被引:1,自引:1,他引:0  
为了认识黑色与白色浮岩的岩石特征及成因,使用人工重砂、元素地球化学等分析技术,研究冲绳海槽两类浮岩中元素及矿物组成特征。研究显示,冲绳海槽黑色和白色浮岩具有相似全岩化学组成,都落入流纹岩区,稀土配分曲线明显呈右倾,具负Eu异常,富集不相容元素,岩石物理性质差别是导致其颜色差异的主要因素。两类浮岩岩石学特征的不同主要体现在:(1)白色浮岩锆石和辉石都具有两种类型,黑色浮岩仅具有其中一种;(2)黑色浮岩中发育钛铁矿、钛磁铁矿与基质构成的珠状构造,且基质玻璃中密集分布磁铁矿雏晶,而白色浮岩不具备上述岩石学特征。综合分析海槽两类浮岩岩石学特征所蕴含的岩浆演化信息,推测两类浮岩具有相同的玄武质岩浆源区,富挥发组分的玄武质母岩浆上升进入地壳,形成初级岩浆房,房内结晶分异后残留的酸性岩浆,沿海槽构造薄弱带向上运移,岩浆运移过程中有少部分进入分支断裂系统形成次级岩浆房,期间初级岩浆房接受多次基性岩浆注入;初级和次级岩浆房中的酸性岩浆分别独立喷出海底,前者形成白色浮岩,后者形成黑色浮岩。此外,演化过程中岩浆性质逐渐由氧化性向还原性转变。  相似文献   

2.
冲绳海槽浮岩的分布及其斑晶矿物学特征   总被引:14,自引:5,他引:14  
翟世奎 《海洋与湖沼》1986,17(6):504-512
根据所采到的大批火山物质——主要是浮岩,讨论了冲绳海槽浮岩的空间分布;通过对岩石切片的费氏台鉴定以及对浮岩及其斑晶矿物的X-射线分析、电子探针分析等,探讨了浮岩的斑晶矿物学特征及其地质意义,提出了灰白色浮岩岩浆是由来自地幔的拉斑玄武质岩浆经过充分的结晶分异作用而形成的流纹英安质岩浆。在岩浆喷出海底之前曾发生过非平衡体系的混合作用,包括地壳物质混染的可能性。  相似文献   

3.
冲绳海槽浮岩岩浆活动模式浅析   总被引:10,自引:2,他引:10  
本文根据部冲绳海槽的地下结构、地温场特征、以及浮岩中斑晶矿物的结晶温度和榴辉岩的熔融相关系等,综合分析了冲绳海槽酸性浮岩岩浆的活动模式。提出:在冲绳海槽中部和东部地下15km以下的地幔物质部分熔融、产生橄榄拉斑玄武质岩浆,而在海槽中部地壳一结构层中(7-15km)熔融产生少量安山质岩浆。因此,在冲绳海槽地下存在有双层岩浆房结构,并且二者之间中部有岩浆通道。来自地幔的拉斑玄武质岩资源下部地壳中一方面  相似文献   

4.
冲绳海槽浮岩微量元素的特征及其地质意义   总被引:5,自引:2,他引:5  
对冲绳海槽9个浮岩样品做了仪器中子活化分析。根据浮岩微量元素的特征讨论了岩浆的物质来源、结晶演化过程以及岩浆活动与冲绳海槽地质构造的联系。提出冲绳海槽黑色浮岩和灰白色浮岩不仅来自不同的岩浆源,而且经历了不同的形成过程。灰白色浮岩反映了冲绳海槽的地质构造性质,在成因上与海槽区的构造活动有关。  相似文献   

5.
冲绳海槽浮岩中岩浆包裹体岩石化学成分特征   总被引:7,自引:2,他引:7  
系统地分析了冲绳海槽酸性浮岸中玻璃质岩浆包裹体的岩石化学成分,探讨了包裹体的岩石化学成分特征及其在岩浆起源及结晶演化过程中的指示意义,并结合前期及前人工作讨论了冲绳海槽不同岩石类型之间的成因联系及演化关系。结果表明,斑晶结晶时岩浆熔体为钙碱性英安质或流纹质岩浆,是来自地幔的拉斑玄武质岩浆充分结晶分异作用的产物。尽管各斑晶矿物中玻璃质岩浆包裹体的化学成分有所差异,但根据包裹体的岩石化学成分特征可以断定包裹体所代表的岩浆具有同源性,其差异只是反映了岩浆结晶演化的不同阶段或不同矿物结晶期,为进一步详细研究浮岩岩浆的结晶演化过程提供了最直接的资料。对比冲绳海槽酸性浮岩与玄武岩等不同岩石类型的岩石化学特征,可以证明这些岩石类型之间存在着密切的成因联系,包括同源性与继承性,它们分别是岩浆作用不同阶段的产物。另外,包裹体的成分主要取决于包裹体所在斑晶矿物的种类与成分,分析中未发现岩石化学性质明显不同的岩浆包裹体共存的现象,也没有在中酸性矿物中发现基性玻璃质岩浆包裹体,因此可以推断基本不存在不同性质的岩浆之间的直接混合作用。  相似文献   

6.
冲绳海槽浮岩中斑晶矿物结晶的P-T条件   总被引:2,自引:1,他引:2  
翟世奎 《海洋科学》1987,11(1):26-30
本文利用多种地质温度计估算了冲绳海槽浮岩中斑晶矿物的结晶条件。结果表明:灰白色浮岩中的橄榄石、辉石、基性斜长石、磁铁矿等是在大约890℃和大约三十几km深的条件下结晶的。这些矿物之所以存在于SiO2含量高达70%的酸性浮岩中是由于在岩浆喷出地表之前发生了岩浆的混合作用。根据斑晶矿物的结晶深度,推测灰白色浮岩的初始岩浆来自地幔的熔融。  相似文献   

7.
冲绳海槽中南部广泛分布一套浮岩类岩石,其中以灰白色酸性浮岩为主,化学组成相当于英安流纹岩,深灰色中基性浮岩零星出露,化学组成与玄武安山岩相当.研究表明本区浮岩属造山带地区火山岩,形成于强烈构造活动构造背景,稀土元素标准化模式相似,均表现为负铕异常,表明它们之间的同源性,并经历过不同程度不同的斜长石分异作用.除Sr和中部浮岩的Yb有明显亏损以外,其它微量元素均表现为明显富集,尤其是Ba、Rb、Th、La和Ce等大离子亲石元素表现为显著富集.  相似文献   

8.
冲绳海槽早期扩张作用中岩浆活动的演化   总被引:8,自引:2,他引:8  
不同于其他典型的弧后扩张型盆地,在冲绳海槽内广泛分布着酸性的火山岩──浮岩,本文对具有代表性的柱状岩心进行了系统的矿物学和岩石化学分析,讨论了冲绳海槽在早期扩张作用中岩浆活动的性质及其演化.结果表明,浮岩岩浆来源于地幔,但经历了结晶分异和地壳物质混染两个过程.冲绳海槽的岩浆活动有自酸性向基性演化的趋势,随着海槽的进一步扩张,岩浆活动会加剧,海槽地壳将由过渡型向大洋型发展.  相似文献   

9.
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...  相似文献   

10.
借助冲绳海槽火山岩地球化学分析结果,讨论了海槽不同区段岩浆的温度、压力、密度和黏度等物理化学参数,以确定海槽岩浆的物理性质及其对海槽不同区段岩浆演化过程的影响.海槽北段的岩浆相对于中段表现出高压力、低温度的特征.由于海槽岩浆挥发分含量较高,北段岩浆的密度和黏度要高于中段的.但总的来说,海槽岩浆具有低密度、低黏度的特点,因此岩浆更容易穿透岩石圈,而且有利于岩浆结晶分异作用的进行.对海槽岩浆相对运移速度的研究显示,在外部条件及含水量相同的前提下,在海槽中段岩浆上升速度要大于北段的,这从岩浆物理化学性质的角度解释了为何海槽中段火山活动要强于北段的.  相似文献   

11.
INTROOUcr1ONThe Okinawa Trough is a typical marginal back-arc basin, where its oPening began in rela-tively recent years* There is a great controversy about the origin of its initial magYna. haltand acid volcanic pumice make up the bimedal volcanism in the Okinawa Trough. MOSt of geol-ogists believed that the acid pumice was the preduct of extremely crystal fractionation of baseltInagTna, but the others argued that it should com from the melting of lower-crust. Som de-tailed petrolOgic…  相似文献   

12.
冲绳海槽浮岩中碳、氢同位素组成特征   总被引:4,自引:1,他引:3  
利用分阶段热解释放气体质谱分析法研究了冲绳海槽浮岩热解释放气中CO2和H2O的碳、氢同位素组成,结果显示:浮岩中原生CO2和H2O主要释放于400~1 000℃,CO2的碳同位素组成介于-6.7×10-3~-22.7×10-3,H2O的氢同位素组成从-45×10-3变到-71×10-3,均落入幔源火山岩的变化范围,而且浮岩的氢同位素组成与海槽区玄武岩的氢同位素组成非常接近,这表明冲绳海槽浮岩与玄武岩之间具有密切的成因联系,浮岩岩浆和玄武岩岩浆是同源岩浆不同程度结晶分异的产物.另外,这些浮岩较洋中脊玄武岩要贫13C,并富集D,同时具有从洋中脊玄武岩向岛弧玄武岩变化的趋势,这表明浮岩岩浆在形成或上升过程中可能受到俯冲板块释放流体的影响.  相似文献   

13.
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   

14.
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   

15.
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   

16.
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   

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