首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Platinum group elements and gold in ferromanganese crusts from Afanasiy—Nikitin seamount, equatorial Indian Ocean: Sources and fractionation
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Platinum group elements and gold in ferromanganese crusts from Afanasiy—Nikitin seamount, equatorial Indian Ocean: Sources and fractionation

机译:赤道印度洋Afanasiy-Nikitin海山铁锰结壳中的铂族元素和金:来源和分离

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The major element relationships in ferromanganese (Fe-Mn) crusts from Afanasiy-Nikitin seamount (ANS), eastern equatorial Indian Ocean, appear to be atypical. High positive correlations (r = 0.99) between Mn/Co and Fe/Co ratios, and lack of correlation of those ratios with Co, Ce, and Ce/Co, indicate that the ANS Fe-Mn crusts are distinct from Pacific seamount Fe-Mn crusts, and reflect region-specific chemical characteristics. The platinum group elements (PGE: Ir, Ru, Rh, Pt, and Pd) and Au in ANS Fe-Mn crusts are derived from seawater and are mainly of terrestrial origin, with a minor cosmogenic component. The Ru/Rh (0.5-2) and Pt/Ru ratios (7-28) are closely comparable to ratios in continental basalts, whereas Pd/Ir ratios exhibit values (< 2) similar to CI-chondrite (~ 1). The chondrite-normalized PGE patterns are similar to those of igneous rocks, except that Pd is relatively depleted. The water depth of Fe-Mn crust formation appears to have a first-order control on both major element and PGE enrichments. These relationships are defined statistically by significant (r > 0.75) correlations between water depth and Mn/Co, Fe/Co, Ce/Co, Co, and the PGEs. Fractionation of the PGE-Au from seawater during colloidal precipitation of the major-oxide phases is indicated by well-defined linear positive correlations (r > 0.8) of Co and Ce with Ir, Ru, Rh, and Pt; Au/Co with Mn/Co; and by weak or no correlations of Pd with water depth, Co-normalized major-element ratios, and with the other PGE (r < 0.5). The strong enrichment of Pt (up to 1 ppm) relative to the other PGE and its positive correlations with Ce and Co demonstrate a common link for the high concentrations of all three elements, which likely involves an oxidation reaction on the Mn-oxide and Fe-oxyhydroxide surfaces. The documented fractionation of PGE-Au and their positive association with redox sensitive Co and Ce may have applications in reconstructing past-ocean redox conditions and water masses.
机译:赤道东印度洋Afanasiy-Nikitin海山(ANS)的锰铁(Fe-Mn)地壳中的主要元素关系似乎是非典型的。 Mn / Co和Fe / Co比值之间的正相关性高(r = 0.99),而这些比值与Co,Ce和Ce / Co的相关性不足,表明ANS Fe-Mn地壳与太平洋海山Fe- Mn结皮,并反映特定于区域的化学特征。 ANS Fe-Mn地壳中的铂族元素(PGE:Ir,Ru,Rh,Pt和Pd)和Au来自海水,主要来自陆地,具有少量的成因成分。 Ru / Rh(0.5-2)和Pt / Ru比(7-28)与大陆玄武岩的比值非常接近,而Pd / Ir比的值(<2)与CI球粒陨石(〜1)相似。球粒陨石归一化的PGE模式与火成岩相似,不同之处在于Pd相对耗尽。 Fe-Mn结壳形成的水深似乎对主要元素和PGE富集都具有一级控制。这些关系通过水深与Mn / Co,Fe / Co,Ce / Co,Co和PGE之间的显着(r> 0.75)相关性进行统计学定义。主要氧化物相的胶体沉淀过程中,海水中PGE-Au的分馏由Co和Ce与Ir,Ru,Rh和Pt的明确定义的线性正相关关系(r> 0.8)表示。 Au / Co与Mn / Co;以及Pd与水深,共归一化的主要元素比率以及与其他PGE的相关性弱或没有相关性(r <0.5)。相对于其他PGE,Pt的强富集(高达1 ppm)及其与Ce和Co的正相关性证明了所有三种元素的高浓度都有共同的联系,这很可能涉及Mn-氧化物和Fe上的氧化反应-羟基氧化物表面。 PGE-Au的分馏及其与氧化还原敏感的Co和Ce的正相关性可能在重建过去的海洋氧化还原条件和水团中具有应用。

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