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首页> 外文期刊>International Geology Review >Osmium isotope and highly siderophile element geochemistry of mantle xenoliths from NW Turkey: implications for melt depletion and metasomatic history of the sub-continental lithospheric mantle
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Osmium isotope and highly siderophile element geochemistry of mantle xenoliths from NW Turkey: implications for melt depletion and metasomatic history of the sub-continental lithospheric mantle

机译:土耳其西北部地幔异种岩的O同位素和高度嗜铁元素地球化学:对岩石副大陆下地幔的熔体耗竭和交代史的影响

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摘要

Ultramafic xenoliths entrained in the late Miocene alkali basalts and basanites from NW Turkey include refractory spinel-harzburgites and dunites accompanied by subordinate spinel-lherzolites. Whole-rock major and trace element characteristics indicate that the xenoliths are mostly the solid residues of varying degrees of partial melting (~4- ~15%), but some have geochemical signatures reflecting the processes of melt/rock interaction. Mantle-normalized trace element patterns for the peridotites vary from LREE-depleted to strongly LREE-enriched, reflecting multistage mantle processes from simple melt extraction to metasomatic enrichment. Rhenium and platinum group element (PGE) abundances and ~(187)Os/~(188)Os systematics of peridotites were examined in order to identify the nature of the mantle source and the processes effective during variable stages of melt extraction within the sub-continental lithospheric mantle (SCLM). The peridotites are characterized by chondritic Os/Ir and Pt/Ir ratios and slightly supra-chondritic Pd/Ir and Rh/Ir ratios, representing a mantle region similar in composition to the primitive mantle (PM). Moderate enrichment in PPGE (Pd-Pt-Rh)/IPGE (Ir-Os-Ru) ratios with respect to the PM composition in the metasomatized samples, however, reflects compositional modification by sulphide addition during possible post-melting processes. The ~(187)Os/~(188)Os ratios of the peridotites range from 0.11801 to 0.12657. Highly unradiogenic Os isotope compositions (?Os at 10 Ma from -7.0 to -3.2) in the chemically undisturbed mantle residues are accompanied by depletion in Re/Os ratios, suggesting long-term differentiation of SCLM by continuous melt extraction. For the metasomatized peridotites, however, systematic enrichments in PPGE and Re abundances, and the observed positive covariance between ~(187)Re/~(188)Os and ?Os can most likely be explained by interaction of solid residues with basaltic melts produced by melting of relatively more radiogenic components in the mantle. Significantly, the wide range of ~(187)Os/~(188)Os ratios characterizing the entire xenolith suite seems to be consistent with multistage evolution of SCLM and suggests that parts of the lithospheric mantle contain materials that have experienced ancient melt removal (~ 1.3 Ga) which created time-integrated depletion in Re/Os ratios;;in contrast, some other parts display evidence indicative of recent perturbation in the Re-Os system by sulphide addition during interaction with metasomatizing melts.
机译:来自西北土耳其的中新世晚期碱玄武岩和玄武岩中夹带的超镁铁质异质岩包括难处理的尖晶石-harzburgite和dunites以及从属尖晶石-蛇纹石。整个岩石的主要和微量元素特征表明,异种岩大部分是部分不同程度熔融的固体残渣(约4〜15%),但有些具有反映熔岩相互作用的地球化学特征。橄榄岩的地幔归一化痕量元素模式从贫稀土到富稀土都不同,反映了从简单熔体提取到交代富集的多阶段地幔过程。研究了peri和铂族元素(PGE)的丰度和橄榄岩的〜(187)Os /〜(188)Os体系,以识别地幔源的性质以及在亚熔融状态下不同阶段的熔体提取过程中有效的过程。大陆岩石圈地幔(SCLM)。橄榄岩的特征是粒状Os / Ir和Pt / Ir之比以及略高于粒状的Pd / Ir和Rh / Ir之比,代表与原始地幔(PM)组成相似的地幔区域。相对交代样品中PM成分,PPGE(Pd-Pt-Rh)/ IPGE(Ir-Os-Ru)比的适度富集反映了在可能的熔融后过程中,通过添加硫化物来进行成分修饰。橄榄岩的〜(187)Os /〜(188)Os比在0.11801至0.12657之间。化学上未受干扰的地幔残留物中高度非放射源的Os同位素组成(从-7.0到-3.2,在10 Ma处的ΔOs)伴随着Re / Os比的减少,这表明SCLM通过连续熔体萃取可长期分化。然而,对于交代的橄榄岩,PPGE和Re丰度的系统富集,以及〜(187)Re /〜(188)Os和?Os之间观察到的正协方差,很可能可以通过固体残留物与由Pb产生的玄武质熔体的相互作用来解释。地幔中相对更多的放射源成分融化。值得注意的是,表征整个异种岩套件的〜(187)Os /〜(188)Os比率范围很广,似乎与SCLM的多级演化相一致,并且表明岩石圈地幔的某些部分包含经历了古代融化作用的物质(〜 1.3 Ga)造成了Re / Os比率的时间积分损耗;相反,其他一些部分则显示出证据,表明最近在与准交融熔体相互作用期间添加硫化物使Re-Os系统发生扰动。

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