首页> 外文期刊>American Mineralogist >Beneath the Stillwater Complex: Petrology and geochemistry of quartz-plagioclase-cordierite (or garnet)-orthopyroxene-biotite {+/-} spinel hornfels, Mountain View area, Montana
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Beneath the Stillwater Complex: Petrology and geochemistry of quartz-plagioclase-cordierite (or garnet)-orthopyroxene-biotite {+/-} spinel hornfels, Mountain View area, Montana

机译:斯蒂尔沃特综合体下:蒙大拿州山景城的石英-斜长石-堇青石(或石榴石)-邻辉石-黑云母{+/-}尖晶石角岩的岩石学和地球化学

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摘要

A 50 m drill core (core no. 383-334) collected from the contact metamorphic aureole in the Mouat Ni-Cu prospect in the Mountain View area of Stillwater County, Montana, exhibits evidence of in situ fluid-absent biotite dehydration melting and local back reaction of melts derived from metasediments and metavolcanics. The drill core was investigated to characterize the mineral assemblages and their textures, to search for evidence of partial melting, and to determine mineral and whole-rock geochemistry to provide an understanding of the petrogenesis of the hornfels close to the contact with the Stillwater Complex. The rocks investigated are predominantly quartz-plagioclase-cordierite-orthopyroxene-biotite ± spinel hornfels, Fe-Cu-Ni sulfides, and Fe-Ti oxides. One sample contains garnet (Alm73–77Pyr20–17Sps3Grs4) in addition to cordierite. Three samples contain cordierite-hercynite symplectites surrounded by a narrow mantle devoid of orthopyroxene, plagioclase, and biotite that are roughly ovoid to lenticular in shape. Partially melted samples show back reaction between crystallizing melt and restite such that retrograde skeletal intergrowths of biotite and quartz in the mesosome were developed. Average T-P conditions of hornfels and melt genesis are 786 °C and 3.7 kbar. Back reactions that produced biotite occurred at somewhat lower temperatures. Whole-rock geochemistry suggests that the protolith of the hornfelsic rocks was likely a mixture of greywacke and additional intermediate to mafic volcanogenic components.
机译:从蒙大拿州斯蒂尔沃特县山景地的Mouat Ni-Cu矿床的 变质金针接触处收集到一个50 m的钻芯(芯号383-334) ,表现出 原位无流体的黑云母脱水融化和源于沉积物和超火山作用的熔体的局部反面反应的证据。 对钻芯进行了研究表征矿物 的组合及其质地,寻找部分 熔融的证据,并确定矿物和整个岩石的地球化学 了解与静水复合体接触的角f 的成岩作用。 研究的岩石主要是石英-斜长石-堇青石-原辉石-黑云母 ±尖晶石角铁,Fe-Cu-Ni硫化物和Fe-Ti氧化物。 sup>一个样本包含石榴石(Alm 73–77 Pyr 20–17 Sps 3 Grs 4 ,还有堇青石。三个样品包含堇青石-海泡石 折页岩,它们被狭长地幔围绕,不含邻苯二茂, 斜长石和黑云母,形状大致为卵状 。部分熔融的样品显示 结晶熔体和再结晶之间的逆反应,从而使黑云母和石英在介体中逆行骨架 的共生。 平均TP条件角f和融化成因的温度为786 °C和3.7 kbar。产生黑云母的反应发生在较低温度下 。整个岩石地球化学表明 角铁质岩石的原石可能是greywacke和镁铁质火山成因 组分的其他中间物的混合物

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  • 来源
    《American Mineralogist》 |2008年第3期|438-450|共13页
  • 作者

    Jennifer A. Thomson;

  • 作者单位

    Department of Geology, Eastern Washington University, 130 Science Building, Cheney, Washington 99004, U.S.A.;

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  • 正文语种 eng
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