首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Iron isotope fractionation during skarn-type alteration: Implications for metal source in the Han-Xing iron skarn deposit
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Iron isotope fractionation during skarn-type alteration: Implications for metal source in the Han-Xing iron skarn deposit

机译:矽卡岩型改变期间铁同位素分馏:汉兴铁矽卡岩矿床中金属源的影响

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The Han-Xing iron mineralization in the central North China Craton is a typical Fe skarn deposit associated with altered diorites. Here we report the Fe isotopic compositions of whole rocks and mineral separates from this deposit with a view to evaluate the Fe isotope fractionation during the formation of Fe skarn deposit, and to constrain the metal source. The Fe isotopes show a large variation both in whole rocks and mineral separates. Altered diorites show a wide range in delta Fe-56 values (-0.07 parts per thousand to +0.21 parts per thousand relative to the Fe isotope standard IRMM-014) which positively correlate with their TFe2O3/TiO2 ratios (Fe2O3 and FeO calculated as TFe2O3). The positive correlation indicates that heavy Fe isotopes were preferentially leached from diorites during the skarn-type alteration. Among the metallic minerals, pyrite and pyrrhotite are isotopically heavier (+0.12 parts per thousand to +0.48 parts per thousand) than the magnetite (+0.07 parts per thousand to +0.21 parts per thousand). Fe isotope fractionation between mineral pairs demonstrates that magnetite did not attain Fe isotopic equilibrium with pyrite and pyrrhotite, whereas pyrite and pyrrhotite might have attained isotopic equilibrium. Petrological observations and major element data also suggest that iron was leached from the diorites during the skarn-type alteration. If the leached iron provides the main Fe budget of the Han-Xing Fe skarn deposit, magnetite in ores would be isotopically heavier than the unaltered diorite. However, our results are in contrast with the magnetite being isotopically lighter than the unaltered diorite. This suggests that the major Fe source of the Han-Xing Fe skarn deposit is not from the leaching of diorites, and might be from magmatic fluid which is isotopically lighter than the silicate melt. Our data demonstrate that Fe isotopes can be used as important tracers in deciphering the metal source of Fe skarn deposits. (C) 2015 Elsevier B.V. All rights reserved.
机译:中部汉兴铁矿化在中国北方CRATON中是一种与改变的Diorites相关的典型Fe Skarn沉积物。在这里,我们报告了整个岩石和矿物质的Fe同位素组合物与该沉积物分离,以评估Fe Skarn沉积期间的Fe同位素分馏,并限制金属源。 Fe同位素显示出整个岩石和矿物质的大变异。改变的Diorites在Delta Fe-56值(相对于Fe同位素标准IRMM-014相对于TFE2O3 / TiO2比率(Fe2O3和Fee2O3计算)正相关(相对于Fe同位素标准IRMM-014,达到Delta Fe-56值(-0.07份/±+0.21份)。 )。阳性相关表明在矽卡岩型改变期间优先从Diorites浸出重的Fe同位素。在金属矿物质中,黄铁矿和PyrrHotite比磁铁矿(千分之一±+0.48份+0.48份+0.0.48份,+0.07 + +0.21份千分比)。矿物对之间的Fe同位素分馏证明磁铁矿未达到硫铁矿和磷油耐热物体的Fe同位素平衡,而硫铁矿和PyrrHotite可能已经过同位素平衡。岩石学观察和主要元素数据还表明,在矽卡岩型改变期间,铁从Diorites浸出。如果浸出的铁提供汉兴Fe Skarn沉积物的主要FE预算,矿石中的磁铁矿比未妨碍的二位岩磁性相同。然而,我们的结果与磁铁矿相反,比未妨碍的二峰岩石较轻。这表明汉兴Fe Skarn沉积物的主要FE来源不是Diorites的浸出,并且可能来自岩浆液,其比硅酸盐熔体相同。我们的数据表明,Fe同位素可用作解密Fe Skarn沉积物的金属源的重要示踪剂。 (c)2015 Elsevier B.v.保留所有权利。

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