Textural and chemical variations in peridotite induced by hydrous melt migration in mantle under the back-arc spreading

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Lithos Pub Date : 2024-08-31 DOI:10.1016/j.lithos.2024.107776
Ayu Harano , Katsuyoshi Michibayashi
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Abstract

This study presents the structural and petrological characteristics of mantle peridotites in relation to the rock-hydrous melt reaction found in the Hayachine ultramafic complex, NE Japan. We conducted sampling, microstructural observations, crystal-orientation analyses, and major element composition analyses of the major constituent minerals in the peridotites. We used 17 serpentinized peridotites that preserved better mantle textures. The peridotites are composed of lherzolite to harzburgite, consisting of olivine, orthopyroxene, clinopyroxene, amphibole, and spinel. The peridotites were classified into two textures according to olivine grain size: coarse-grained (ca. 2–3 mm) and fine-grained (ca. 0.3–0.5 mm). Fine-grained peridotites were newly found in this study and were characterized by aggregates of orthopyroxene and amphibole with a large number of spinel inclusions. Based on olivine crystal-preferred orientation (CPO), we found that the coarse-grained peridotites were further classified into Group 1 (A type CPO) and 2 (AG type CPO) and the fine-grained peridotites were accordingly classified into Group 3 (weak CPO). The systematic continuity in the chemical compositions of the minerals suggests that Group 1 peridotites partially melted to form Group 2 peridotites, followed by Group 3 peridotites, due to further reaction of Group 2 peridotites with hydrous melts. These textural and chemical variations in the peridotites could have resulted from rock-hydrous melt reactions under back-arc spreading and subsequent processes.

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弧后扩张下地幔中水合熔体迁移引起的橄榄岩纹理和化学变化
本研究介绍了地幔橄榄岩的结构和岩石学特征,以及在日本东北部早岭超基性岩群中发现的岩石-水熔体反应。我们对橄榄岩中的主要成分矿物进行了取样、微观结构观察、晶体取向分析和主要元素成分分析。我们使用了 17 块保留了较好地幔纹理的蛇纹岩化橄榄岩。这些橄榄岩由橄榄石、正辉石、挛辉石、闪石和尖晶石组成,成分从蛭石到哈氏橄榄石。根据橄榄石的粒度,橄榄岩可分为两种质地:粗粒(约 2-3 毫米)和细粒(约 0.3-0.5 毫米)。细粒橄榄岩是本研究中新发现的,其特征是正长石和闪石的聚集体,并含有大量尖晶石包裹体。根据橄榄石晶体倾向(CPO),我们发现粗粒橄榄岩被进一步划分为第 1 组(A 型 CPO)和第 2 组(AG 型 CPO),而细粒橄榄岩则相应地被划分为第 3 组(弱 CPO)。矿物化学成分的系统连续性表明,第 1 组橄榄岩部分熔化后形成第 2 组橄榄岩,第 2 组橄榄岩与含水熔体进一步反应后形成第 3 组橄榄岩。橄榄岩的这些纹理和化学变化可能是在弧后扩张及其后过程中岩石与含水熔体反应的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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