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Ph isotopic heterogeneity in basaltic phenocrysts

机译:玄武岩Ph同位素异质性

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The Pb isotopic compositions of phenocrystic phases in young basaltic lavas have been investigated using the Getty-DePaolo method (Getty S. J. and DePaolo D. J. [1995] Quaternary geochronology by the U-Th-Pb method. Geochim. Cosmochim. Acta 59, 3267-3272), which allows for the resolution of small isotopic differences. Phenocryst, matrix, and whole rock analyses were made on samples from the 17 Myr-old Imnaha basalts of the Columbia River Group, a zero-age MORB from the Mid-Atlantic Ridge, and a ca. 260 kyr-old tholeiite from Mount Etna. Plagioclase feldspar phenocrysts have low-(U, Th)/Pb, and in each sample the plagioclase has significantly lower Ph-206/Pb-207 and(208)Pb/Pb-207 values than whole rock, matrix, and magnetite-rich separates. The Pb isotopic contrast between plagioclase and matrix/whole rock is found in three samples with varying grain sizes (0.5-2 cm for the Imnaha basalt and MORB and < 1 mm for the Etna sample) from different tectonic settings, suggesting that these results are not unique. The isotopic contrasts are only slightly smaller in magnitude than the variations exhibited by whole rock samples from the region. The Imnaha basalts also have Sr isotopic heterogeneity evident only in plagioclase phenocrysts, but the MORB and Etna lavas do not. The isotopic heterogeneities reflect magma mixing, and indicate that isotopically diverse magmas were mixed together just prior to eruption. The results reinforce indications from melt inclusion studies that magma source region isotopic heterogeneities have large amplitudes at short length scales, and that the isotopic variations imparted to the magmas are not entirely homogenized during segregation and transport processes. Copyright (C) 2004 Elsevier Ltd.
机译:已使用Getty-DePaolo方法(Getty SJ和DePaolo DJ [1995]第四纪年代学,通过U-Th-Pb方法研究了玄武岩熔岩中微晶相的Pb同位素组成。Geochim。Cosmochim。Acta 59,3267-3272 ),从而可以解决较小的同位素差异。根据哥伦比亚河群的17个Myr古老的Imnaha玄武岩,大西洋中脊的零年龄MORB和Ca.埃特纳火山(Mount Etna)上有260年历史的硫铁矿。斜长石长晶石的低(U,Th)/ Pb,并且在每个样品中斜长石的Ph-206 / Pb-207和(208)Pb / Pb-207值明显低于整个岩石,富含基质和磁铁矿的值分开。在三个不同构造背景下,具有不同晶粒尺寸(Imnaha玄武岩和MORB的0.5-2 cm和Etna样品的<1 mm)的三个样品中,斜长石与基质/整个岩石之间的Pb同位素对比发现,表明不是唯一的。同位素对比的幅度仅比该区域的整个岩石样品的变化小。 Imnaha玄武岩还具有Sr同位素异质性,仅在斜长石隐晶岩中明显,而MORB和Etna熔岩则没有。同位素异质性反映了岩浆混合,并表明在喷发之前,同位素不同的岩浆混合在一起。该结果加强了熔体包裹体研究的迹象,即岩浆源区的同位素异质性在短的长度尺度上具有较大的振幅,并且赋予岩浆的同位素变化在隔离和运输过程中并未完全均化。版权所有(C)2004 Elsevier Ltd.

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