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Depleted Basaltic Lavas from the Proto-Iceland Plume, Central East Greenland

机译:格陵兰中部东部原始冰岛羽羽枯竭的玄武岩熔岩

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摘要

New geochemical and isotopic data are presented for volumetrically minor, depleted low-Ti basalts that occur in the Plateau Basalt succession of central East Greenland (CEG), formed during the initial stages of opening of the North Atlantic at 55 Ma. The basalts have mid-ocean ridge basalt (MORB)-like geochemistry (e.g. depleted light rare earth elements) and are distinct from the high-Ti lavas that dominate the sequence. Rare earth element geochemistry implies derivation from a source more depleted than the typical MORB source, and suggests polybaric melting and contributions from both spinel- and garnet-facies mantle. The low-Ti basalts have Sr–Nd–Pb–Hf isotopic characteristics that are similar to those of depleted magmas from Iceland (e.g. Theistareykir) and adjacent ridges (Kolbeinsey and Reykjanes) and distinct from global MORB (e.g. negative Δ207Pb, and Hf and Nd isotope compositions that plot above the mantle reference line). Isotope and trace element data indicate the involvement of two depleted source components. One component has isotopic compositions similar to other depleted components identified in the North Atlantic and has high Rb/Zr and Ba/Nb. The second is isotopically less depleted with lower Rb/Zr and Ba/Nb. Small degrees of crustal contamination ( 1%) by both amphibolitic and granulitic crust result in relatively large changes in isotopic composition (c. 1% lower for 206Pb/204Pb and 0·1% higher for 87Sr/86Sr depending on the contaminant). Negative ΔNb suggests a MORB affinity for the low-Ti magmas; however, they are distinguished from global normal (N)-MORB on the basis of vertical deviations from the Northern Hemisphere Reference Line (negative Δ207Pb and positive Δ208Pb), and relative enrichments in Ba, Sr and Pb. The isotopic compositions of the low-Ti CEG basalts suggest correlation with modern depleted components beneath Iceland and adjacent ridges, considered to be derived from upper mantle sources polluted by the Iceland plume. However, small positive Pb peaks when normalized to MORB, and lower Nb distinguish the CEG low-Ti basalts from depleted Icelandic compositions. The lower ΔNb ( 0) and 87Sr/86Sr, and suggestion of higher 206Pb/204Pb in crustally uncontaminated parental melts imply a closer affinity to compositions from the oceanic ridges surrounding Iceland (especially the Reykjanes Ridge), yet they are subtly distinct on the basis of available trace element data. We suggest that this depleted component was an integral part of the plume that melted primarily during the rapid lithospheric uplift and extension associated with continental break-up.
机译:提出了新的地球化学和同位素数据,这些数据是在北大西洋开放55 Ma初期形成的东格陵兰中部(CEG)高原玄武岩演替中发生的,体积较小,贫化的低Ti玄武岩。玄武岩具有类似大洋中脊玄武岩(MORB)的地球化学特征(例如贫化的轻稀土元素),并且与主导该序列的高钛熔岩不同。稀土元素地球化学意味着其来源比典型的MORB来源更贫乏,并表明多峰熔融以及尖晶石和石榴石相地幔的贡献。低钛玄武岩具有Sr–Nd–Pb–Hf同位素特征,类似于来自冰岛(例如Theistareykir)和邻近洋脊(Kolbeinsey和Reykjanes)的枯竭岩浆,与全球MORB有所不同(例如Δ 207为负) Pb,以及在地幔参考线上方标绘的Hf和Nd同位素组成)。同位素和痕量元素数据表明涉及两个贫化的源组分。一种组分的同位素组成与北大西洋中发现的其他贫化组分相似,并且具有较高的Rb / Zr和Ba / Nb。第二个同位素在同位素上较少地被较低的Rb / Zr和Ba / Nb消耗。角闪石和粒状壳对地壳的小程度污染(<1%)导致同位素组成发生较大变化( 206 Pb / 204 Pb降低约1%和 87 Sr / 86 Sr的污染物高出0·1%)。负ΔNb表示对低Ti岩浆具有MORB亲和力;但是,它们与北半球参考线的垂直偏差(负Δ 207 Pb和正Δ 208 Pb)与全局法线(N)-MORB有所区别以及相对富集的Ba,Sr和Pb。低钛CEG玄武岩的同位素组成表明它与冰岛及其附近海脊下面的现代贫化组分相关,这些组分被认为是受到冰岛羽流污染的上地幔源。但是,当归一化为MORB时,小的正Pb峰,而较低的Nb则将CEG低钛玄武岩与耗尽的冰岛成分区分开。较低的ΔNb(<0)和 87 Sr / 86 Sr,并建议较高的 206 Pb / 204 不受外壳污染的母体熔体中的Pb意味着与冰岛周围海岭(尤其是雷克雅尼斯海岭)的成分具有更强的亲和力,但根据可用的痕量元素数据,它们之间的区别微乎其微。我们认为,这种枯竭的成分是羽状流不可或缺的一部分,主要在岩石圈迅速隆起和与大陆破裂相关的伸展过程中融化。

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    《Journal of Petrology》 |2012年第8期|p.1569-1596|共28页
  • 作者单位

    1Institute of Geography and Geology, øster Voldgade 10, 1350 Copenhagen K, Denmark 2School of Geography, Environment and Earth Sciences, Victoria University of Wellington, P.O. Box 600, Wellington, New Zealand;

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