首页> 外文期刊>Mineralium deposita >The world-class Howard's Pass SEDEX Zn-Pb district, Selwyn Basin, Yukon. Part II: the roles of thermochemical and bacterial sulfate reduction in metal fixation
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The world-class Howard's Pass SEDEX Zn-Pb district, Selwyn Basin, Yukon. Part II: the roles of thermochemical and bacterial sulfate reduction in metal fixation

机译:世界一流的霍华德传递Sedex Zn-PB区,育空河畔塞尔温盆地。 第二部分:热化学和细菌硫酸盐降低金属固定的作用

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摘要

The Howard's Pass district of sedimentary exhalative (SEDEX) Zn-Pb deposits is located in Yukon Territory and comprises 14 Zn-Pb deposits that contain an estimated 400.7 Mt of sulfide mineralization grading 4.5 % Zn and 1.5 % Pb. Mineralization is hosted in carbonaceous and calcareous and, to a lesser extent, siliceous mudstones. Pyrite is a minor but ubiquitous mineral in the host rocks stratigraphically above, within, and below mineralization. Petrographic analyses reveal that pyrite has a complex and protracted growth history, preserving multiple generations of pyrite within single grains. Sulfur isotope analysis of paragenetically complex pyrite by secondary ion mass spectrometry (SIMS) reveals that sulfur isotope compositions vary with textural zonation. Within the Zn-Pb deposits, framboidal pyrite is the earliest pyrite generation recognized, and this exclusively has negative delta S-34 values (mean=-16.6 +/- 4.1%; n = 55), whereas paragenetically later pyrite and galena possess positive d34S values (mean = 29.1 +/- 7.5 and 22.4 +/- 3.0%, n = 13 and 13, respectively). Previous studies found that sphalerite and galena mineral separates have exclusively positive delta S-34 values (mean = 16.8 +/- 3.3 and 12.7 +/- 2.8%, respectively; Goodfellow and Jonasson 1986). These distinct sulfur isotope values are interpreted to reflect varying contributions of bacterially reduced seawater sulfate (negative; framboidal pyrite) and thermochemically reduced seawater sulfate and/ or hydrothermal sulfate (positive; galena, sphalerite, later forms of pyrite). Textural evidence indicates that framboidal pyrite predates galena and sphalerite deposition. Collectively, the in situ and bulk sulfur isotope data are much more complex than delta S-34 values permitted by prevailing genetic models that invoke only biogenically reduced sulfur and coeval deposition of galena, sphalerite, and framboidal pyrite within a euxinic water column, andwe present several lines of evidence that argue against this model. Indeed, the new data indicate that much of the base metal sulfide mineralization was emplaced below the sedimentwater interface within sulfidic muds under reducing conditions during early diagenesis. Furthermore, thermochemical sulfate reduction provided most of the reduced sulfur within the Zn-Pb deposits.
机译:沉积呼气(SEDEX)ZN-PB沉积物的霍华德通行区位于育空地区,包括14个Zn-Pb沉积物,含有估计的400.7mt硫化物矿化分级4.5%Zn和1.5%Pb。矿化以碳质和钙质载体,并且在较小程度上均为硅质泥岩。黄铁矿是一种次要但普遍存在的矿物质在宿主岩石上方,内部,内部矿化。岩体分析揭示了黄铁矿具有复杂且长期的生长历史,在单一的颗粒中保持多种黄铁矿。通过二次离子质谱(SIMS)的硫同位素分析副络合物吡啶(SIMS)显示,硫同位素组合物随纹理分区而变化。在Zn-Pb沉积物中,Framboidal硫铁矿是最早认识到的最早的硫铁矿,并且该专门具有负ΔS-34值(平均值= -16.6 +/- 4.1%; n = 55),而平原后来的黄铁矿和加勒纳具有积极的D34S值(平均值= 29.1 +/- 7.5和22.4 +/- 3.0%,分别为n = 13和13)。以前的研究发现,Sphalerite和Galena矿物分离只有正ΔS-34值(平均值= 16.8 +/- 3.3和12.7 +/- 2.8%; Goodflow和Jonasson 1986)。这些明显的硫同位素值被解释为反映细胞减少的海水硫酸盐(阴性; Framboidal硫铁矿)的不同贡献,以及热化学减少的海水硫酸盐和/或水热硫酸盐(阳性; Galena,Sphalerite,后来形式的黄铁矿)。纹理证据表明FRAMBOIDALIALITATITE将GALENA和Sphalerite沉积预测。集体,原位和散硫同位素数据比普遍存在的遗传模型允许的达到S-34值更复杂,该遗传模型仅在迅速的水柱内生物地减少硫化的硫和群体沉积,并且我们存在争论这种模型的几条证据。实际上,新数据表明,在早期成岩作用期间,在降低条件下,大部分碱金属硫化物矿化在硫纤维泥浆中的沉积物界面中被施加。此外,在Zn-Pb沉积物中提供了大部分硫的硫酸盐。

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  • 来源
    《Mineralium deposita》 |2017年第3期|共15页
  • 作者单位

    Queens Univ Dept Geol Sci &

    Geol Engn 36 Union St Kingston ON K7L 3N6 Canada;

    Queens Univ Dept Geol Sci &

    Geol Engn 36 Union St Kingston ON K7L 3N6 Canada;

    Geol Survey Canada 601 Booth St Ottawa ON K1A 0E8 Canada;

    Geol Survey Canada 9860 West Saanich Rd Sidney BC V8L 4B2 Canada;

    Geol Survey Canada 601 Booth St Ottawa ON K1A 0E8 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿床学;
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