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Petrologic and stable isotopic studies of the metamorphosed zinc-iron-manganese deposit at Sterling Hill, New Jersey.

机译:新泽西州斯特灵山变质锌铁锰矿床的岩石学和稳定同位素研究。

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摘要

Sterling Hill is a metamorphosed sequence of zinc-, iron- and manganese-rich strata surrounded by the Franklin marble. Ore layers contain willemite, franklinite, zincite and calcite; other layers which were not mined contain calc-silicates and calcite.;Generally, oxygen isotopic and chemical compositions of individual minerals vary from lithologic layer to lithologic layer and are uniform within layers which suggests that mineral compositions reflect the bulk compositions of the rocks. Willemite and zincite are stable at high ;Models for the protolith are presented in which bulk oxygen isotopic and chemical compositions are assumed to reflect protolith values modified by metamorphic devolatilization. Data from marbles interbedded with ore layers suggest either (1) exchange with meteoric water at Earth's surface temperatures, or (2) exchange with a more ;The formation of the protolith is inferred to have taken place on the seafloor or in shallowly buried sediments which were well-irrigated by seawater. The closest modern analogs for Sterling Hill, and by analogy the nearby Franklin Furnace deposit, are the sulfide-free strata in metalliferous sediments beneath the Red Sea brine pools. There are, however, significant differences between the two occurrences.;The Reading Prong - Hudson Highlands contains stratiform magnetite deposits in addition to the zinc-iron-manganese deposits. The association of base metal and iron deposits and the distribution of the deposits in 10 km-scale clusters suggest that all the deposits may have had a similar origin on or beneath the Proterozoic seafloor, and that hydrothermal activity may have been localized by second-order basins. Other Grenville terranes show the same associations and similar regional distributions. The other terranes also contain sulfide-bearing deposits which suggests that depositional sites spanned a range of redox conditions.
机译:Sterling Hill是富兰克林大理石所包围的富含锌,铁和锰的地层的变质层序。矿石层包含硅铝石,富兰克林石,锌矿和方解石。其他未开采的层包含钙硅酸盐和方解石。通常,各个矿物的氧同位素和化学组成在岩性层之间是不同的,并且在各层内是均匀的,这表明矿物成分反映了岩石的整体组成。硅藻土和锌矿在高温下稳定;给出了原生石的模型,其中假定了大量的氧同位素和化学成分反映了由变质脱挥发分修饰的原生石的值。来自夹杂有矿石层的大理石的数据表明(1)在地球表面温度下与陨石交换,或(2)与地球表面温度更高的交换;推断原石的形成发生在海底或浅埋的沉积物中,海水灌溉良好。斯特林山和附近的富兰克林炉矿床最接近的现代类似物是红海盐水池下方含金属沉积物中的无硫化物地层。但是,这两种情况之间存在显着差异。雷丁-哈德逊高地除了锌铁锰矿床外,还含有层状磁铁矿矿床。基本金属和铁矿床的关联以及矿床在10 km规模簇中的分布表明,所有矿床可能在元古代海床之上或之下具有相似的起源,并且热液活动可能已被二阶定位盆地。其他Grenville地形显示出相同的关联和相似的区域分布。其他地层也含有含硫化物的沉积物,这表明沉积位点跨越了一系列氧化还原条件。

著录项

  • 作者

    Johnson, Craig Alden.;

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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