印度洋东北部安达曼俯冲带海底火山弧岩的岩石成因:来自板坯成分和地幔楔特征的制约因素

IF 3.6 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Chemical Geology Pub Date : 2024-04-26 DOI:10.1016/j.chemgeo.2024.122118
Bhagyashree Doley , Abhishek Saha , M. Ram Mohan , Koushick Sen , Aditya Peketi
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引用次数: 0

摘要

本研究提供了安达曼弧沿岸海底火山疏浚岩石的岩石学和地球化学新数据,并从地幔楔特征、俯冲板块成分的性质和定量输入、前体岩浆的分馏过程等方面描述了弧系统的岩石成因演化过程。研究的岩石包括玄武安山岩、安山岩、辉绿岩和流纹岩。这些火山岩表现出LILE、LREE富集和HFSE贫化,证实了它们是通过俯冲过程生成的。Th/Nd、La/Sm(N)、LREE/HFSE的丰度高于LILE/HFSE、LILE/LREE,表明来自俯冲板块的沉积物在板块脱水的水流体作用下大量进入地幔楔。87Sr/86Sr-Ba/La混合模型表明,要解释流体特征,需要加入0.6%-0.8%的板块流体(90:10 AOC:沉积流体),而143Nd/144Nd-La/Sm(N)混合模型则认为地幔源中需要加入3%-4%的沉积熔体,这与安达曼海底火山岩中的沉积特征相吻合。N-MORB型地幔的出现是由于安达曼弧后盆地的星体层物质没有和/或没有有效地对流到地幔楔。这种低效对流可等同于印度板块的平面俯冲,是由无地震的九十东海脊汇聚造成的。非模式分批熔融模型表明,安达曼海底火山弧下的尖晶石蛭石地幔有 13-24% 部分熔融,形成了母岩浆。结晶模型表明,在所有类型的岩石中,橄榄石、斜长石、菱镁矿、正长石、辉石和磁铁矿的分馏比例高达 60-70%,流纹岩中闪石、斜长石、磷灰石、钛铁矿和辉石的分馏比例次之。玄武安山岩、安山岩和闪长岩没有显示上地壳的输入,而流纹岩则显示来自上地壳和/或弧壳的地壳污染。
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Petrogenesis of submarine volcanic arc rocks from Andaman subduction zone, Northeast Indian Ocean: Constraints from slab components and mantle wedge characteristics

The present study provides new petrological and geochemical data of the dredged rocks from submarine volcanoes along the Andaman arc and describes the petrogenetic evolution of the arc system in terms of mantle wedge characteristics, nature and quantitative input of subducted slab components, and fractionation processes of precursor magma. The studied rocks include basaltic andesite, andesite, dacite and rhyolite. These volcanic rocks exhibit LILE, LREE enrichments and HFSE depletion, corroborating their generation through subduction processes. High abundances of Th/Nd, La/Sm(N), LREE/HFSE than LILE/HFSE, LILE/LREE suggest a substantial contribution of sediments from the subducting slab over slab-dehydrated aqueous fluids to the mantle wedge. The 87Sr/86Sr-Ba/La mixing model suggests 0.6–0.8% addition of slab fluid (90:10 AOC: sediment fluid) to account for the fluid signature, whereas the 143Nd/144Nd-La/Sm(N) mixing model envisages ∼3–4% addition of sediment melt to the mantle source, reconciling the sediment signature in Andaman submarine volcanic rocks. The presence of N-MORB type mantle is attributed to the absence and/or inefficient convection of asthenospheric material from the Andaman back-arc basin to the mantle wedge. This ineffective convection can be equated with the flat subduction of the Indian Plate, caused by the convergence of the aseismic Ninety East Ridge. The non-modal batch-melting model suggests that 13–24% partial melting of the spinel lherzolite mantle beneath the Andaman submarine volcanic arc formed the parent magma. The crystallization model invokes up to 60–70% of fractionation of olivine, plagioclase, clinopyroxene, orthopyroxene, sanidine and magnetite in all the rock types with subordinate proportions of amphibole, biotite, apatite, ilmenite, and sanidine in rhyolites. The basaltic andesites, andesites and dacites do not show upper crustal input, while rhyolites indicate crustal contamination from an upper crust and/or arc crust.

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来源期刊
Chemical Geology
Chemical Geology 地学-地球化学与地球物理
CiteScore
7.20
自引率
10.30%
发文量
374
审稿时长
3.6 months
期刊介绍: Chemical Geology is an international journal that publishes original research papers on isotopic and elemental geochemistry, geochronology and cosmochemistry. The Journal focuses on chemical processes in igneous, metamorphic, and sedimentary petrology, low- and high-temperature aqueous solutions, biogeochemistry, the environment and cosmochemistry. Papers that are field, experimentally, or computationally based are appropriate if they are of broad international interest. The Journal generally does not publish papers that are primarily of regional or local interest, or which are primarily focused on remediation and applied geochemistry. The Journal also welcomes innovative papers dealing with significant analytical advances that are of wide interest in the community and extend significantly beyond the scope of what would be included in the methods section of a standard research paper.
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