首页> 外文学位 >Manganese-nitrogen-carbon KFMASH metapelite phase equilibria, garnet activity modeling, and garnet samarium-neodymium chronology: Applications to the Waterville Formation, Maine, and south-central Nason Terrane, Washington.
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Manganese-nitrogen-carbon KFMASH metapelite phase equilibria, garnet activity modeling, and garnet samarium-neodymium chronology: Applications to the Waterville Formation, Maine, and south-central Nason Terrane, Washington.

机译:锰-氮-碳KFMASH变质相平衡,石榴石活性模型和石榴石mar钕年代学:在缅因州沃特维尔组和华盛顿州中南部纳森特拉恩的应用。

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摘要

Results from thermodynamic modeling of metapelite bulk rock compositions, investigation of major-element garnet chemistry, thermobarometry, and garnet Sm-Nd chronology, are presented that illustrate the use of modern techniques to constrain metamorphic histories from metapelitic rocks. Phase diagrams constructed for metapelite compositions from the Waterville Formation, Maine, illustrate the dependence of mineral assemblage stability on bulk rock Al 2O3 and MgO/(MgO + FeO). Comparisons of KFMASH and MnNCKFMASH pseudosections with reported Waterville Formation assemblages clearly indicate the inadequacies of the KFMASH system for modeling the stability of garnet-bearing assemblages in metapelites.; A linear regression analysis of garnet-aluminum silicate-plagioclase-quartz experimental phase equilibria was used to derive four garnet activity models. The derived regular solution models are more consistent than the sub-regular solution models with the assumption that spessartine mixes ideally with the other garnet end-members, and use of a grossular-almandine interaction parameter does not significantly improve the regression statistics. A regular solution model is proposed that utilizes a grossular-pyrope interaction parameter of 44.2–0.01651 T (kJ, mol, K−1), and an almandine-pyrope interaction parameter from Holland & Powell (1998) of 2.4 kJ/mol.; Garnet thermobarometry and MnNCKFMASH phase equilibria diagrams constructed for pelite bulk rock compositions using the derived garnet activity model were compared with measured garnet core compositions to calculate Cretaceous aged garnet growth P-T paths in the south-central Nason Terrane of the Cascades Core. Garnet growth 11 kilometers northeast of the Mt. Stuart batholith occurred during isobaric heating after attainment of maximum metamorphic pressures, while garnet growth approximately 2 kilometers northeast of the batholith occurred after or during the latter stages of crustal loading. Precise garnet Sm-Nd isochron ages from samples 1.5 to 4 kilometers north of the batholith indicate garnet growth occurred at 88 to 86 Ma. A Mt. Stuart batholith zircon U-Pb isotopic age of 93.5 ± 1.4 Ma. suggests the batholith was not the only source of heat that led to garnet growth at 88–86 Ma. The derived garnet growth P-T paths and garnet Sm-Nd ages indicate exhumation of this particular portion of the south-central Nason terrane must have begun after 86 Ma. garnet growth.
机译:提出了变质岩块岩组成的热力学模型,主要元素石榴石化学,热压法和石榴石Sm-Nd年代学研究的结果,这些结果说明了现代技术如何限制变质岩的变质历史。为缅因州沃特维尔组的变质岩组成构造的相图说明了矿物组合稳定性对块状Al 2 O 3 和MgO /(MgO + FeO)的依赖性。将KFMASH和MnNCKFMASH假切片与报道的Waterville组组合进行比较,清楚地表明了KFMASH系统在模拟石榴石中含石榴石的组合稳定性方面的不足。石榴石-硅酸铝-斜长石-石英实验相平衡的线性回归分析被用来导出四个石榴石活性模型。假定斯贝沙汀与其他石榴石末端成员理想地混合,并且假设使用谷胱甘肽-金刚烷相互作用参数并不能显着改善回归统计量,则得出的常规解模型比次常规解模型更为一致。提出了一个规则的求解模型,该模型利用了44.2–0.01651 T(kJ,mol,K -1 )的固索索相互作用参数,以及来自Holland&Powell(1998)的阿尔曼丹索索相互作用参数。 2.4 kJ / mol .;将使用导出的石榴石活性模型为贝氏体块岩成分构造的石榴石热压法和MnNCKFMASH相平衡图与所测量的石榴石岩心成分进行比较,以计算Cascades岩心中南部Nason Terrane中的白垩纪老化石榴石生长P-T路径。石榴石生长在东北11公里处。在达到最大变质压力后,等压加热期间发生斯图尔特岩床,而在地壳加载的后期或之后,石榴石在岩床东北约2公里处生长。精确的石榴石Sm-Nd等时线从岩床以北1.5至4公里处的样品表明石榴石的生长发生在88至86 Ma。一个山Stuart岩盐锆石U-Pb同位素年龄为93.5±1.4 Ma。表明岩床不是唯一导致88-86 Ma石榴石生长的热源。导出的石榴石生长P-T路径和石榴石Sm-Nd年龄表明,在86 Ma之后必须开始挖掘中南部Nason地体的这一特定部分。石榴石生长。

著录项

  • 作者

    Tinkham, Douglas Keith.;

  • 作者单位

    The University of Alabama.;

  • 授予单位 The University of Alabama.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 241 p.
  • 总页数 241
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

  • 入库时间 2022-08-17 11:46:06

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