Mineral chemistry and melt evolution of the mantle wedge peridotites in the Late Cretaceous Zagros Belt ophiolites (Iran): clues for the subduction initiation–induced forearc magmatism

IF 2.6 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of the Geological Society Pub Date : 2024-02-29 DOI:10.1144/jgs2023-209
G. Ghorbani, H. S. Moghadam, Y. Dilek, Shoji Arai, M. Khedr
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Abstract

We investigate in this paper mineral compositions and geochemical evolution of the mantle wedge peridotites preserved in the Late Cretaceous Zagros ophiolites of SW Iran. Mantle peridotites above subduction zones commonly experience distinct melting, depletion, and refertilization processes as a result of the circulation of fluids derived from subducting slabs and flux melting. Our results reveal that the mantle wedge peridotites in the Zagros ophiolites are characterized mainly by residual and impregnated types. Residual peridotites resulted from early depletion and later refertilization processes, whereas impregnated peridotites developed due to episodic melt impregnations within and across the mantle. Mg#s and NiO contents, spinel Cr#, Mg#, and TiO 2 in olivines, Mg# and Al 2 O 3 contents of orthopyroxenes, and Mg#, TiO 2 , and Al 2 O 3 contents in clinopyroxenes of dunites, harzburgites and lherzolites indicate the significant role of re-equilibration processes among different mineral phases and interactions with basaltic melts percolating within the host peridotites. The observed geochemical variations in the mineral chemistry of the Zagros peridotites reflect changes in magma chemistry and fluctuations in the degree of melt extraction and melt–rock interactions within the mantle peridotites. However, our data suggest that Mg-Fe distribution in the spinels of some dunites and harzburgites might also have resulted from subsolidus redistribution and exchange with surrounding olivine grains. Spinel and clinopyroxene phases in gabbroic rocks and ultramafic cumulates within the Zagros ophiolites also show significant variations in their compositions, suggesting that their magmas evolved from MORB-like to IAT, calc-alkaline, and boninite suites, typical of subduction initiation generated melts. Hence, the Zagros ophiolites present a case study of time–progressive melt evolution of the forearc oceanic lithosphere. Thematic collection: This article is part of the Ophiolites, melanges and blueschists collection available at: https://www.lyellcollection.org/topic/collections/ophiolites-melanges-and-blueschists Supplementary material: https://doi.org/10.6084/m9.figshare.c.7093528
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晚白垩世扎格罗斯带蛇绿岩(伊朗)地幔楔状橄榄岩的矿物化学和熔融演化:俯冲起始诱发弧前岩浆活动的线索
本文研究了伊朗西南部晚白垩世扎格罗斯蛇绿岩中保存的地幔楔橄榄岩的矿物成分和地球化学演化。由于来自俯冲板块的流体循环和通量熔融,俯冲带上方的地幔橄榄岩通常会经历不同的熔融、贫化和再富集过程。我们的研究结果表明,扎格罗斯蛇绿岩中的地幔楔橄榄岩主要分为残余型和浸渍型。残积橄榄岩是早期贫化和后期再富集过程的结果,而浸渍橄榄岩则是由于地幔内部和地幔之间的偶发性熔体浸渍而形成的。橄榄石中的 Mg#s 和 NiO 含量、尖晶石中的 Cr#、Mg#和 TiO 2 含量,正长石中的 Mg# 和 Al 2 O 3 含量,以及辉绿岩、哈氏堡岩和黑沸石中的 Mg#、TiO 2 和 Al 2 O 3 含量,都表明不同矿物相之间的再平衡过程以及与主橄榄岩内部渗入的玄武岩熔体之间的相互作用发挥了重要作用。观察到的扎格罗斯橄榄岩矿物化学的地球化学变化反映了岩浆化学的变化以及地幔橄榄岩内部熔体萃取和熔岩相互作用程度的波动。不过,我们的数据表明,某些辉长岩和哈兹堡岩尖晶石中的镁-铁分布也可能是由于亚固结物的重新分布以及与周围橄榄石晶粒的交换造成的。扎格罗斯蛇绿混杂岩中辉长岩和超基性岩中的尖晶石和挛辉石相在成分上也显示出显著的差异,这表明它们的岩浆从类似于MORB的岩浆演化为IAT、钙碱性和倭黑石岩浆,是典型的俯冲起始生成熔体。因此,扎格罗斯蛇绿混杂岩是弧前海洋岩石圈熔融演化的一个案例研究。 专题文集:本文是蛇绿岩、熔岩和蓝晶岩文集的一部分,可在以下网址查阅: https://www.lyellcollection.org/topic/collections/ophiolites-melanges-and-blueschists 补充材料: https://doi.org/10.6084/m9.figshare.c.7093528
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来源期刊
Journal of the Geological Society
Journal of the Geological Society 地学-地球科学综合
CiteScore
6.00
自引率
3.70%
发文量
68
审稿时长
6-12 weeks
期刊介绍: Journal of the Geological Society (JGS) is owned and published by the Geological Society of London. JGS publishes topical, high-quality recent research across the full range of Earth Sciences. Papers are interdisciplinary in nature and emphasize the development of an understanding of fundamental geological processes. Broad interest articles that refer to regional studies, but which extend beyond their geographical context are also welcomed. Each year JGS presents the ‘JGS Early Career Award'' for papers published in the journal, which rewards the writing of well-written, exciting papers from early career geologists. The journal publishes research and invited review articles, discussion papers and thematic sets.
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