Ab'/> Tracing the HIMU component within Pan-African lithosphere beneath northeast Africa: Evidence from Late Cretaceous Natash alkaline volcanics, Egypt
首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Tracing the HIMU component within Pan-African lithosphere beneath northeast Africa: Evidence from Late Cretaceous Natash alkaline volcanics, Egypt
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Tracing the HIMU component within Pan-African lithosphere beneath northeast Africa: Evidence from Late Cretaceous Natash alkaline volcanics, Egypt

机译:在东北非洲的泛非洲岩石圈内追踪HIMU组件:来自埃及后期纳库斯碱性火山岩的证据

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AbstractA large late Cretaceous (~90Ma) volcanic field (the Natash volcanic province) crops out in southeast Egypt at the northwestern boundary of the Arabian-Nubian shield. The lavas are mainly of alkaline affinity and exhibit a continuous compositional range from alkali olivine basalt (AOB) to trachyte and rhyolite. All basaltic lavas in the province record various extents of fractional crystallization of olivine, clinopyroxene, plagioclase and spinel. The basaltic lavas show variations in Sr-Nd-Pb-Hf isotopic ratios [(87Sr/86Sr)i=0.7030–0.70286; (143Nd/144Nd)i=0.512653–0.512761; (206Pb/204Pb)i=19.28–19.94; (177Hf-176Hf)i=0.28274–0.28285], that correlate markedly with the major and trace element ratios and abundances. Assimilation of crustal material cannot explain these correlations, and we invoke instead melting of a multicomponent mantle source. We infer the existence of High-μ(HIMU), Enriched mantle type-I (EM-I) and Depleted mantle (DM) domains in the melting source, with a predominant contribution from the HIMU-type. We suggests further that the basaltic lavas originate from low degrees of partial melting (F<5%) at moderate potential temperatures (TP) 1391–1425°C and pressures of 2.0–2.6GPa. The melting pressure estimations imply that melting entirely occurred within lithospheric mantle, most likely in the presence of residual amphibole as presence negative K-anomalies in the primitive mantle-normalized patterns of the fractionation-corrected melts. The presence of amphibole within the lithosphere is a strong evidence that the lithospheric mantle underwent metasomatic enrichment prior to melting in Late Cretaceous. This metasomatic event affected on the Pb isotopic compositions of the Natash volcanics by adding Th and U to the melting source. Time-integrated calculations to remove the decoupling between206Pb and207Pb isotopes that most probably resulted from the metasomatic event indicate a tentative link between the metasomatism occurring in the Pan-African lithospheric mantle and the formation of juvenile crust during the Pan-African Orogeny. A two stage evolution model is therefore proposed for volcanism in the Natash area: fluxing of the lithosphere by hydrous fluids during Pan-African Orogeny forming a hybrid lithospheric mantle that in Late Cretaceous underwent thermal erosion and melting in response to upwelling asthenosphere, possibly at the onset of the extensional fracturing preceded the doming of the Afro-Arabian Shield.Graphical abstractMulticomponents melting source of the Natash volcanics in the terms of Sr-Nd-Pb-isotopic ratios.Display Omitted
机译:<![cdata [ 抽象 一个大型白垩纪(〜90mA)火山(纳塔什火山)在东南埃及庄稼阿拉伯努比亚盾的西北边界。熔岩主要具有碱性亲和力,并从碱橄榄石玄武岩(AOB)到龟囊和流纹的连续组成范围。全省的所有玄武岩熔岩都记录了橄榄石,临床,Plagioclase和尖晶石的分数结晶的各种范围。玄武岩熔岩显示出SR-ND-PB-HF同位素比率的变化[( 87 SR / 86 sr) i = 0.7030-0.70286; ( 143 nd / 144 nd) < CE:斜体> i = 0.512653-0.512761; ( 206 pb / 204 pb) < CE:斜体> i = 19.28-19.94; ( 177 hf- 176 hf) < CE:斜体> i = 0.28274-0.28285],与主要和微量元素比率和丰富有明显相关。结壳材料的同化无法解释这些相关性,而且我们举例说明了融合多组分地幔源。推断熔化源中的高 - μ(HIMU),富集的地幔类型-i(EM-I)和耗尽的地幔(DM)域,具有主要的贡献HIMU类型。我们促进玄武岩熔岩源于中等潜在温度( p )1391-1425°C和2.0-2.6GPa的压力。熔融压力估计意味着熔化完全发生在岩石罩内,最有可能在残留的锥体存在下作为存在的分馏校正熔体的原始披风标准化图案中的存在阴性k异常。岩石圈内的锥体存在是一种强大的证据,即岩石罩在晚餐后融化前的岩石型肉质富含性富集。这种态化事件通过向熔解来源和U添加到纳塔什火山岩的Pb同位素组合物上影响。时间集成的计算,以删除 206之间的解耦:206 pb和 207 pb同位素由代购事件引起的表示泛非洲岩石地幔中发生的偏定术之间的暂定联系,以及在泛非orengany期间的少年地壳的形成。因此,在纳塔什地区的火山中提出了一种两个阶段演化模型:在泛非洋地洋葱中,含水液形成岩石圈的助流,形成杂交岩石型搭桥,在晚期白垩纪的热侵蚀和融化时,响应于升高的哮喘圈,可能是延伸压裂的发作前面是美国阿拉伯盾的蒙扎。 图形抽象 在SR-ND-PB - 同位素比率方面的纳塔什火山岩的熔化源。

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