印度Dharwar克拉通东部Raichur片岩带:西阿留申弧的地球化学模拟

IF 2.5 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Tarun C. Khanna , D. Srinivasa Sarma
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引用次数: 0

摘要

太平洋板块在北美板块下的斜辐合形成了西阿留申弧。西阿留申玄武岩,在很大程度上,镁安山岩与俯冲的板块熔体注入的地幔源的部分熔融相一致。类似地,雷丘尔玄武岩中类似morb的贫稀土元素模式(LaN/YbN≤1)和类似弧的不相容微量元素相对于高场强元素Ba/Nb >; 25的富集与雷丘尔玄武岩在类似现代洋内弧的环境下的成因相一致。阿留申弧熔岩的地球化学属性排除了在俯冲过程中上层沉积物的融化。雷楚尔玄武岩-安山岩套放射成因初始εNd(t =2.7 Ga) = +2.05 ~ +3.15同位素组成排除了地壳污染。阿留申弧熔岩与Raichur带之间的稀土元素模式和Ba-La-Yb系统是一致的,并与地幔源中没有俯冲沉积相吻合。一个假设的板块-熔体+地幔楔体相互作用模型可以解释雷丘尔mg -安山岩的成因,这与西阿留申山脉的成因相同。显然,达尔瓦尔克拉通新太古代绿岩带弧岩浆成因的地球化学过程类似于新生代大洋弧显生宙岩浆活动。因此,大陆地壳形成的机制既没有随着时间的推移而发生显著变化,也没有在整个地球上发生显著变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Raichur schist belt, eastern Dharwar Craton, India: A geochemical analogue of western Aleutian arc

Raichur schist belt, eastern Dharwar Craton, India: A geochemical analogue of western Aleutian arc
Oblique convergence of the Pacific plate beneath the North American plate produced the western Aleutian arc. The western Aleutian basalts, and to a large extent, the Mg-andesites concur with partial melting of a mantle source infused with subducted slab-derived melts. By analogy, MORB-like depleted rare earth element patterns (LaN/YbN ≤ 1) and arc-like incompatible trace element enrichments relative to high field strength elements Ba/Nb > 25 in the Raichur basalts are consistent with their genesis in a setting, similar to the modern-day intraoceanic arcs. Geochemical attributes of the Aleutian arc lavas preclude melting of pelagic sediment during the course of subduction. By analogy, the radiogenic initial εNd(t =2.7 Ga) = +2.05 to +3.15 isotopic compositions in the Raichur basalt-andesite suite preclude crustal contamination. The rare earth element patterns and Ba-La-Yb systematics between the Aleutian arc lavas and the Raichur belt are identical, and concur with the absence of subducted sediment in their mantle source. A hypothetical slab-melt + mantle wedge interaction model, discounting sediment melt, can explain the genesis of Raichur Mg-andesites, which is identical to that proposed for the western Aleutians. Apparently, the geochemical process of arc magma genesis recorded in the Neoarchean greenstone belts of the Dharwar Craton resembles Phanerozoic-style magmatism in the Cenozoic oceanic arcs. Consequently, the mechanism of continental crust formation has neither changed significantly over time nor across the Earth.
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来源期刊
Lithos
Lithos 地学-地球化学与地球物理
CiteScore
6.80
自引率
11.40%
发文量
286
审稿时长
3.5 months
期刊介绍: Lithos publishes original research papers on the petrology, geochemistry and petrogenesis of igneous and metamorphic rocks. Papers on mineralogy/mineral physics related to petrology and petrogenetic problems are also welcomed.
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