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A comprehensive geological, geochemical, and petrogenetic study of hotspot-related oceanic basalt-rhyolite series rocks from Ascension Island, South Atlantic Ocean.

机译:来自南大西洋阿森松岛的热点相关的海洋玄武岩-流纹岩系列岩石的综合地质,地球化学和岩石成因研究。

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摘要

The mafic rocks (basalt-hawaiite-mugearite-benmoreite) of Ascension Island form four distinct groups: low Zr/Nb hawaiite, high Zr/Nb basalt, intermediate Zr/Nb basalt to benmoreite, and Dark Slope Crater (DSC) hawaiite and mugearite.; The geochemical characteristics of the felsic rocks are largely consistent with an origin by fractional crystallization of high Zr/Nb mafic magmas (identical {dollar}rmsp{lcub}143{rcub}Nd/sp{lcub}144{rcub}Nd{dollar} and similar Pb isotopic ratios). Syenite, monzonite, and granite xenoliths are cumulate rocks from, and intrusive equivalents of, fractionating felsic magmas. Internal (mineral) isochrons for two granite xenoliths give ages of {dollar}sim{dollar}1.0 Ma. Most of the felsic volcanic rocks and granite are also characterized by high {dollar}rmsp{lcub}87{rcub}Sr/sp{lcub}86{rcub}{dollar}Sr ({dollar}>{dollar}0.706) compared to mafic rocks {dollar}rm(sp{lcub}87{rcub}Sr/sp{lcub}86{rcub}Sr<0.703),{dollar} although {dollar}rmsp{lcub}143{rcub}Nd/sp{lcub}144{rcub}Nd{dollar} of the felsic rocks is similar to that of the low {dollar}rmsp{lcub}87{rcub}Sr/sp{lcub}86{rcub}Sr{dollar} mafic lavas; elevated {dollar}rmsp{lcub}87{rcub}Sr/sp{lcub}86{rcub}Sr{dollar} suggests interaction of the felsic rocks with geothermal fluids derived from seawater under subsolidus conditions. In addition, evidence for the involvement of a high {dollar}rmsp{lcub}87{rcub}Sr/sp{lcub}86{rcub}Sr{dollar} component during magmatic differentiation is also provided by the high initial {dollar}rmsp{lcub}87{rcub}Sr/sp{lcub}86{rcub}Sr{dollar} of the granitic xenoliths, and of high {dollar}rmsp{lcub}87{rcub}Sr/sp{lcub}86{rcub}Sr ({lcub}>{rcub}0.704){dollar} in some of the feldspar phenocrysts from felsic rocks. d{dollar}sp{lcub}18{rcub}{dollar}O ranges of +5.5 to +8.1{dollar}perthous{dollar} (whole rock) and +5.5 to +7.2{dollar}perthous{dollar} (feldspar) in the felsic rocks also indicate the involvement of a high d{dollar}sp{lcub}18{rcub}{dollar}O component, and suggest that hydrothermally-altered pre-existing volcanic basement may have been cannibalized during felsic magma differentiation.; Crystal fractionation controls compositional variation within each mafic group, however, it cannot be the cause of the differences between the groups. The high and intermediate Zr/Nb groups have similar Sr-Nd-Pb isotopic characteristics and were derived from the same mantle source (HIMU-type). The low Zr/Nb and DSC groups have different radiogenic isotopic characteristics due to contributions from enriched mantle components (HIMU-type). The dominant component, present in the high, intermediate, and low Zr/Nb groups, has the composition of the St. Helena hotspot and has mixed to varying degrees with the depleted upper mantle. The more minor component, present only in the DSC group and some intermediate Zr/Nb samples, has higher {dollar}rmsp{lcub}208{rcub}Pb/sp{lcub}204{rcub}Pb{dollar} relative to {dollar}rmsp{lcub}208{rcub}Pb/sp{lcub}204{rcub}Pb{dollar} than the St. Helena hotspot. This component may be of local lithospheric origin.
机译:上生岛的镁铁质岩石(玄武岩-夏威夷岩-辉沸石-膨润土)形成四个不同的族群:低锆/铌玄武岩,高锆/铌玄武岩,中锆/铌玄武岩至膨润土以及暗斜火山口(DSC)夏威夷岩和白云母。;长英质镁铁质岩浆的分步结晶使长英质岩石的地球化学特征与成因基本一致(相同的{dollar} rmsp {lcub} 143 {rcub} Nd / sp {lcub} 144 {rcub} Nd {dollar}和相似的Pb同位素比率)。榴辉岩岩浆中的菱形岩,独居石和花岗岩异岩是堆积的岩石,并且是侵入性的等价物。两个花岗岩异岩的内部(矿物)等时线的年龄为{dol} sim {dollar} 1.0 Ma。与之相比,大多数长英质火山岩和花岗岩的特征还在于高{dolrm} rmsp {lcub} 87 {rcub} Sr / sp {lcub} 86 {rcub} {dollar} Sr({dollar}> {dollar} 0.706)镁铁质岩石{dollar} rm(sp {lcub} 87 {rcub} Sr / sp {lcub} 86 {rcub} Sr <0.703),{dollar}尽管{dollar} rmsp {lcub} 143 {rcub} Nd / sp {lcub } 144 {rcub} Nd {dollar}的长英质岩石与低{dollar} rmsp {lcub} 87 {rcub} Sr / sp {lcub} 86 {rcub} Sr {dollar}的镁铁质熔岩相似; {rm} rmsp {lcub} 87 {rcub} Sr / sp {lcub} 86 {rcub} Sr {dollar}升高表明,亚固相条件下长英质岩石与海水衍生的地热流体相互作用。此外,高初始{dol} rmsp还提供了在岩浆分化过程中高{rm} rmsp {lcub} 87 {rcub} Sr / sp {lcub} 86 {rcub} Sr {dollar}组分参与的证据。 {lcub} 87 {rcub} Sr / sp {lcub} 86 {rcub} Sr {dollar}的花岗岩异岩体和高{dollar} rmsp {lcub} 87 {rcub} Sr / sp {lcub} 86 {rcub} Sr({lcub}> {rcub} 0.704){dollar}来自长英质岩石中的一些长石特征。 d {dollar} sp {lcub} 18 {rcub} {dollar} O范围为+5.5至+8.1 {dollar} perthous {dollar}(整块岩石)和+5.5至+7.2 {dollar} perthous {dollar}(长石)在长英质岩石中还表明了高d {dollar} sp {lcub} 18 {rcub} {dollar} O成分的参与,并暗示在长英质岩浆分化过程中,水热改变的既有火山基底已经被吞噬了。晶体分馏控制每个铁镁基合金组内的成分变化,但是,这不能成为两组之间差异的原因。高Zr / Nb和中Zr / Nb基团具有相似的Sr-Nd-Pb同位素特征,并来自相同的幔源(HIMU型)。低Zr / Nb和DSC组由于富集地幔组分(HIMU型)的贡献而具有不同的放射同位素特征。存在于高,中和低Zr / Nb组中的主要成分具有圣赫勒拿岛热点的组成,并与枯竭的上地幔不同程度地混合。仅在DSC组和某些中间Zr / Nb样品中存在的次要组分,相对于{dollar}具有较高的{dollar} rmsp {lcub} 208 {rcub} Pb / sp {lcub} 204 {rcub} Pb {dollar} } rmsp {lcub} 208 {rcub} Pb / sp {lcub} 204 {rcub} Pb {dollar}比圣赫勒拿岛热点高。该成分可能是岩石圈起源的。

著录项

  • 作者

    Kar, Adityamoy.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Geology.; Geochemistry.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 263 p.
  • 总页数 263
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地质学;
  • 关键词

  • 入库时间 2022-08-17 11:48:51

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