...
首页> 外文期刊>Journal of Petrology >Picrites from the Emeishan Large Igneous Province, SW China: a Compositional Continuum in Primitive Magmas and their Respective Mantle Sources
【24h】

Picrites from the Emeishan Large Igneous Province, SW China: a Compositional Continuum in Primitive Magmas and their Respective Mantle Sources

机译:中国西南峨眉山大火成岩省的苦粉岩:原始岩浆的组成连续体及其各自的地幔来源

获取原文
获取原文并翻译 | 示例

摘要

Flood basalts are one of the remaining enigmas in global mantle petrology. They come in enormous quantities of up to 106 km3 of mantle-derived melt, and they erupt in rather short time intervals of only a few million years. Throughout geological history, all continents have been periodically flooded by dominantly basaltic and rare picritic magmas that can differ widely within the same province in terms of their major element (e.g. high- and low-Ti series), trace element, and radiogenic isotope compositions, suggesting significant compositional heterogeneity within the mantle source regions tapped. In this study of the Late Permian Emeishan large igneous province (ELIP) in SW China picrite lavas from thick stratigraphic successions at Binchuan and Yongsheng represent the low-Ti and high-Ti ‘classic’ end-members of continental flood basalt magmatism, respectively. This study focuses on the petrochemical variability of the Emeishan magmas, and the genetic links between the suites and their respective mantle sources, based upon estimates of the chemical compositions of the primary melts represented by homogenized melt inclusions hosted by exceptionally primitive olivine (up to 92 mol % Fo in both suites) and Cr-spinel (Cr# 64–72 mol % in Binchuan and 65–80 mol % in Yongsheng) phenocrysts. The average compositions of the melt inclusions and their overall chemical variability, together with the presence of picrites in the province (e.g. Lijiang and Dali localities) with compositions intermediate between the low- and high-Ti end-members, suggest that numerous parental magma batches contributed to a diverse spectrum of more differentiated basaltic magmas within the ELIP. The end-member and intermediate magma compositions are confirmed by the compositions of phenocrysts (Ni and Mn abundances in olivine, Ti abundances in Cr-spinel and clinopyroxene, and trace element abundances in clinopyroxene). The end-member melt and phenocryst compositions (e.g. Gd/Yb in bulk-rocks, melt inclusions and clinopyroxene and Ni–Mn systematics in olivine) suggest a peridotite and garnet pyroxenite mantle source for the low- and high-Ti end-members, respectively. The Sr and Nd isotopic compositions of the two end-member magmas are similar [87Sr/86Sri ∼0·7045; εNd(t) ∼ +1·7] and are considered to reflect a source in the subcontinental lithospheric mantle rather than the convective asthenosphere or a deep mantle ‘plume’.
机译:洪水玄武岩是全球地幔岩石学中尚存的谜团之一。它们以高达10 6 km 3 的地幔衍生熔体大量出现,它们以短短的几百万年的时间间隔爆发。在整个地质历史上,所有大陆都定期被占优势的玄武岩和稀有岩浆岩浆淹没,这些岩浆的主要元素(例如,高钛和低钛系列),微量元素和放射性同位素组成在同一省内可能存在很大差异,暗示在地幔源区内明显的成分异质性。在这项对中国西南部二叠纪峨眉山大火成岩省(ELIP)的研究中,来自宾川和永胜厚地层演替的岩溶熔岩分别代表了大陆性洪水玄武岩岩浆作用的低钛和高钛“经典”末段。这项研究的重点是峨眉山岩浆的石油化学变异性,以及套件与它们各自的地幔源之间的遗传联系,基于对由原始原始橄榄石所包裹的均质熔体包裹体所代表的初级熔体的化学成分的估计(高达92 (在两个套件中都是Fo%)和Cr-尖晶石(宾川市的Cr#64–72 mol%,永胜地区的65–80 mol%)的隐晶。熔体夹杂物的平​​均成分及其总体化学变异性,再加上该省(如丽江和大理地区)存在的微晶岩,其组成介于低钛和高钛终端成员之间,这表明有许多母岩浆在ELIP内促成了多种多样的更分化的玄武岩浆。末级岩浆和中层岩浆的成分由表晶的成分(橄榄石中的镍和锰丰度,铬-尖晶石和斜柏石中的钛丰度,以及斜柏石中的微量元素的丰度)确定。末段熔体和隐晶的成分(例如,块状岩石中的Gd / Yb,橄榄石中的熔体夹杂物和斜辉石和Ni-Mn体系)表明低和高Ti末段的橄榄石和石榴石辉绿岩地幔源,分别。两个端成员岩浆的Sr和Nd同位素组成相似[[sup> 87 Sr / 86 Sr i 〜0·7045; εNd(t)〜+ 1·7],并且被认为是反映了亚大陆岩石圈地幔的一个源,而不是对流软流圈或一个深地幔的“软岩”。

著录项

  • 来源
    《Journal of Petrology 》 |2012年第10期| p.2095-2113| 共19页
  • 作者单位

    1ARC Centre of Excellence in ORE Deposits and School of Earth Sciences, University of Tasmania, Hobart, Tasmania, Australia 2Department of Geosciences, National Taiwan University, Taipei, Taiwan 3Max Planck Institute for Chemistry, Postfach 3060, 55020 Mainz, Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号