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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >HETEROGENEITY OF S ISOTOPE COMPOSITIONS RECORDED IN THE SUDBURY IGNEOUS COMPLEX, CANADA: SIGNIFICANCE TO FORMATION OF Ni-Cu SULFIDE ORES AND THE HOST ROCKS
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HETEROGENEITY OF S ISOTOPE COMPOSITIONS RECORDED IN THE SUDBURY IGNEOUS COMPLEX, CANADA: SIGNIFICANCE TO FORMATION OF Ni-Cu SULFIDE ORES AND THE HOST ROCKS

机译:加拿大球状火成岩中记录的S同位素组成的非均质性:对形成镍铜硫化物矿石和地壳岩石的意义

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摘要

Sulfur isotope ratios of sulfide ores and their host rocks, and the overlying main mass sequence of norites, quartz gabbros, and granophyres from the Sudbury Igneous Complex have been analyzed to establish the extent of isotopic heterogeneity of the Complex and the impact melt sheet from which it was produced. Noritic rocks located above the sublayer in the lower portion of the main mass of the Sudbury Igneous Complex are characterized by uniform sulfur isotope ratios with delta S-34 values of 2.59 +/- 0.48 parts per thousand. Rocks from the granophyric portion of the main mass are characterized by elevated and variable delta S-34 values from 4.4 to 14.1 parts per thousand. The more S-34-enriched S in the granophyre was produced by secondary sulfide precipitation related to hydrothermal alteration systems developed in the upper altered granophyric part of the main mass as it cooled. Footwall and contact-style mineralization from the sublayer show variable delta S-34 values from 0.2 to 4.3 parts per thousand. South Range mineralization is characterized by low ratios from 0.2 to 2.5 parts per thousand. North and Northeast Range mineralization exhibits locally elevated but variable delta S-34 values; for example mineralization from Whistle mine varies from 3.1 to 4.3 parts per thousand, whereas mineralization from Victor varies between 2.4 and 2.9 parts per thousand. There is typically only a small difference in S isotope ratio of contact and proximal footwall mineralization. Country rocks in the area of the Sudbmy Igneous Complex are also characterized by a wide range in delta S-34 values and the sulfur isotope homogeneity of the noritic rocks can be explained by mixing of sulfur from several potential sources. However, the variability present between deposits at the lower contact of the Complex requires that country rocks of locally variable sulfur isotope composition interacted with magma at the base of the cooling melt sheet. There is no evidence that deposit size correlates with delta S-34 value; variations between deposits may involve local S isotope exchange reactions between the country rock and the melt sheet as the melt digested the footwall. This study illustrates the application of S isotope data in constraining the scale of convective mixing and contamination in the largest known terrestrial melt sheet.
机译:分析了硫化物矿石及其母岩的硫同位素比,以及来自萨德伯里火成岩复合体的上覆的钠钙石,石英辉长岩和粒晶的主要质量序列,以确定该复合体的同位素异质程度以及由此产生的冲击熔体它被生产了。位于萨德伯里火成岩主要部分下部次层之上的红土岩的特征是均匀的硫同位素比,δS-34值为2.59 +/- 0.48千分之一。来自主要质量体的粒状部分的岩石的特征在于,δ-S-34的增量和变量值从千分之4.4升高到14.1。颗粒中更多的S-34富集的S是通过二次硫化物沉淀产生的,该二次硫化物沉淀与水热蚀变系统有关,该系统在冷却时主要物质上部变质的颗粒状部分中发育。下层的下盘和接触式矿化显示出变化的δS-34值在千分之0.2至4.3之间。南岭矿化的特征是比率低至千分之0.2至2.5。北部和东北山脉的矿化带局部升高,但δ-34值变化不定。例如,惠斯勒(Whistle)矿的成矿量为3.1至4.3千分之几,而维克多(Victor)的矿化量则为千分之2.4至2.9。接触层和近侧底盘矿化的S同位素比率通常只有很小的差异。 Sudbmy火成岩区的乡村岩石的特征还在于δS-34值范围很广,并且可以通过混合几种潜在来源的硫来解释该富营养岩的硫同位素同质性。然而,在该复合物下部接触处的沉积物之间存在差异,这要求硫同位素组成局部变化的乡村岩石与冷却熔体板底部的岩浆相互作用。没有证据表明沉积物大小与δ-34值有关。矿床之间的变化可能涉及乡村岩层和熔体片之间的局部S同位素交换反应,因为熔体消化了底盘。这项研究说明了S同位素数据在限制已知最大陆地熔片中对流混合和污染规模方面的应用。

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