Insight into the uppermost mantle section of a maturing arc: The Eastern Mirdita ophiolite, Albania

被引:94
|
作者
Morishita, Tomoaki [1 ,2 ]
Dilek, Yildirim [3 ]
Shallo, Minella [4 ]
Tamura, Akihiro [1 ]
Arai, Shoji [5 ]
机构
[1] Kanazawa Univ, Frontier Sci Org, Kanazawa, Ishikawa 9201192, Japan
[2] Univ Hawaii Manoa, Dept Geol & Geophys, Honolulu, HI 96822 USA
[3] Miami Univ, Dept Geol, Oxford, OH 45056 USA
[4] Univ Politeknik, Fak & Gjeologise Dhe Minierave, Tirana, Albania
[5] Kanazawa Univ, Dept Earth Sci, Kanazawa, Ishikawa 9201192, Japan
关键词
Ophiolite; Mantle section; Albania; Mirdita; Harzburgite-dunite-orthopyroxenite; Island arc; Mid-ocean ridge; SW TURKEY IMPLICATIONS; IZU-BONIN-MARIANA; HIGHLY DEPLETED PERIDOTITE; TRACE-ELEMENT COMPOSITIONS; NORTHERN OMAN OPHIOLITE; MELT-ROCK INTERACTION; SUPRA-SUBDUCTION; PODIFORM CHROMITITES; ABYSSAL PERIDOTITES; TETHYAN OPHIOLITES;
D O I
10.1016/j.lithos.2010.10.003
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
We examined peridotite massifs in the eastern part of the Mirdita ophiolite (EMO), Albania, where arc-related magmas are abundant in the upper volcanic sequences. Structurally, clinopyroxene porphyroclast-bearing harzburgites (Cpx-harzburgite hereafter) occur in the lower parts of the peridotite massifs, whereas harzburgites and dunites are more abundant towards the upper parts. Dunite is commonly associated with chromitite layers. Orthopyroxenite occurs as dikes and/or networks at all structural levels, although it is more abundant in the uppermost sections. Orthopyroxenite commonly crosscuts the foliation of peridotites and the lithological boundaries between dunites (chromitite) and harzburgites, suggesting that it was formed in the late stage. Major and trace element compositions of minerals in the Cpx-harzburgites indicate that they were formed as the residue of less-flux partial melting, and are similar to those in abyssal peridotites from mid-ocean ridge systems. Harzburgites have more depleted major element compositions than the Cpx-harzburgites. Light rare earth element (LREE)-enrichment in clinopyroxene coupled with hydrous silicate mineral inclusions in spinels in harzburgites indicate that harzburgites were produced as a result of enhanced partial melting of depleted peridotites due to infiltration of hydrous LREE-enriched fluids/melts. Based on olivine and spinel chemistries, dunites are classified into two types: high-Cr# (= Cr/(Cr + Al) atomic ratio) spinel-bearing dunite and medium-Cr# spinet-bearing dunite. Orthopyroxenites formed at the expense of the pre-existing peridotite by reaction with hydrous orthopyroxene-saturated melts, which were produced by assimilation of dissolved pyroxene during the formation of the dunite. Refractory harzburgite, high-Cr# spinel-bearing dunite, and orthopyroxenite may have a genetic link to the late stage boninitic magmas in the crustal section of the EMO. In contrast, the Cpx-harzburgite was a residue related to mid-ocean ridge basalts (MORBs) or the "MORB-like" fore-arc basalt recently proposed by Reagan et al. (2010) from the lzu-Bonin-Mariana fore-arc. The mediumCr# spinet-bearing dunite can be caused by interaction with a melt transitional between MORB-like and boninitic melts. The lithological variations and their relationships in the upper mantle section of the EMO were caused by changes in magmatic compositions from mid-ocean ridge signatures to boninitic magmas, due to an increasing contribution of slab-derived fluids in an island arc setting. (C) 2010 Elsevier B.V. All rights reserved.
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页码:215 / 226
页数:12
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