伊拉克Pauza超镁质岩中Lherzolite正辉石的出溶片层:Zagros缝合带深部地幔特征的证据

Y. Mohammad, Nabaz R. H. Aziz
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引用次数: 1

摘要

Pauza超基性岩体是伊拉克东北部Zagros缝合带上白垩统蛇绿岩块体的一部分。本研究通过对保扎超镁质橄榄岩中正辉石晶体的后向散射图像观察和显微分析,揭示了扎格罗斯缝合带橄榄岩的超高压(UHP)证据和深部地幔特征。理论尖晶石显示出大量粗大不均匀分布的斜尖晶石析出片和亚微米级均匀分布的铬尖晶石针状结构。观察到的Opx-Cpx-Spl团簇代表了由超高压石榴石橄榄岩向低压尖晶石橄榄岩(LP)转变而产生的富辉石石榴石减压产物。含有丰富多形态铬尖晶石包裹体的新母晶橄榄石(Fo92 - 93)在正辉石周围呈细粒集合体,而不含铬尖晶石的粗粒橄榄石(Fo90-91)则在基体中发现。橄榄石和正辉石中Cr尖晶石片层取向的相似,以及新生橄榄石中Cr尖晶石包裹体中Cr和Fe3+相对于正辉石中Cr尖晶石片层的富集,表明橄榄石中的尖晶石包裹体来源于正辉石中原来的Cr尖晶石片层。新母岩橄榄石是由贫硅上升熔体与正辉石反应形成的。推测具有多形态尖晶石包裹体的橄榄石是由原有的富含尖晶石片层的正辉石不一致熔融形成的。
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Exsolution Lamellae in Orthopyroxene of Lherzolite from the Pauza Ultramafic Rocks, Ne Iraq: Evidence of Deep Mantle Signature in the Zagros Suture Zone
The Pauza ultramafic body is part of Upper Cretaceous Ophiolitic massifs of the Zagros Suture Zone, NE Iraq. The present study reveals evidence of Ultra-high pressure (UHP), and deep mantle signature of these peridotites in the Zagros Suture Zone throughout the observation of backscattered images and micro analyses which have been performed on orthopyroxen crystals in lherzolite of Pauza ultramafic rocks.Theorthopyroxen shows abundant exsolution lamellae of coarse unevenly distributed clinopyroxene coupled with the submicron uniformly distributed needles of Cr-spinel. The observed clusters of Opx–Cpx–Spl represent the decompression products of pyrope-rich garnet produced as a result of the transition from ultra-high pressure garnet peridotite to low-pressure spinel peridotite (LP). Neoblastic olivine (Fo92 – 93) with abundant multi-form Cr- spinel inclusions occurs as a fine-grained aggregate around orthopyroxene, whereas coarse olivine (Fo90-91) free from chromian-spinel is found in matrix. The similarity of the Cr-spinel lamellae orientations in both olivine and orthopyroxene, moreover, the enrichments of both Cr and Fe3+ in the Cr-spinel inclusions in neoblastic olivine relative to Cr-spinel lamellae in orthopyroxene, suggest that spinel inclusions in olivine have been derived from former Cr-spinel lamellae in orthopyroxene. Neoblastic olivine is formed by reaction of silica-poor ascending melt and orthopyroxene. It is inferred that the olivines with multi-form spinel inclusions has been formed by incongruent melting of pre-existing spinel lamellae-rich orthopyroxene.
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