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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Experimental studies of metal-silicate partitioning of Sb: Implications for the terrestrial and lunar mantles
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Experimental studies of metal-silicate partitioning of Sb: Implications for the terrestrial and lunar mantles

机译:Sb的金属硅酸盐分配的实验研究:对地幔和月幔的影响

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The terrestrial mantle has a well defined Sb depletion of ~7 ± 1 (Jochum and Hofmann, 1997), and the lunar mantle is depleted relative to the Earth by a factor of ~50 ± 5 (Wolf and Anders, 1980). Despite these well defined depletions, there are few data upon which to evaluate their origin-whether due to volatility or core formation. We have carried out a series of experiments to isolate several variables such as oxygen fugacity, temperature, pressure, and silicate and metallic melt compositions, on the magnitude of D _(Sb) ~(met / sil). The activity of Sb in FeNi metal is strongly composition dependent such that solubility of Sb as a function of fO _2 must be corrected for the metal composition. When the correction is applied, Sb solubility is consistent with 3+ valence. Temperature series (at 1.5 GPa) shows that D _(Sb) ~(met) / sil decreases by a factor of 100 over 400 °C, and a pressure series exhibits an additional decrease between ambient pressure (100 MPa) and 13 GPa. A strong dependence upon silicate melt composition is evident from a factor of 100 decrease in D _(Sb) ~(met) / sil between nbo/t values of 0.3 and 1.7. Consideration of all these variables indicates that the small Sb depletion for the Earth's mantle can be explained by high PT equilibrium partitioning between metal and silicate melt D _(Sb) ~(met) / sil. The relatively large lunar Sb depletion can also be explained by segregation of a small metallic core, at lower pressure conditions where D _(Sb) ~(met) / sil is much higher (2500).
机译:地幔的Sb损耗约为-7±1(Jochum和Hofmann,1997),而月幔相对于地球的损耗约为50±5(Wolf和Anders,1980)。尽管存在这些定义明确的损耗,但很少有数据可用来评估其起源,无论是由于挥发性还是由于岩心形成。我们进行了一系列实验,以D_(Sb)〜(met / sil)的大小隔离几个变量,例如氧气逸度,温度,压力以及硅酸盐和金属熔体成分。 Sb在FeNi金属中的活性与组成密切相关,因此必须针对金属组成校正Sb的溶解度与fO _2的关系。进行校正后,Sb的溶解度与3+价一致。温度序列(在1.5 GPa时)表明D _(Sb)〜(met)/ sil在400°C上下降了100倍,压力序列在环境压力(100 MPa)和13 GPa之间表现出额外的下降。从D_(Sb)〜(met)/ sil的nbo / t值在0.3和1.7之间降低100倍,可以明显看出对硅酸盐熔体成分的强烈依赖性。对所有这些变量的考虑表明,地球地幔中的Sb损耗很小,可以用金属和硅酸盐熔体D _(Sb)〜(met)/ sil之间的高PT平衡分配来解释。相对较大的月球Sb耗竭也可以通过在D_(Sb)〜(met)/ sil高得多(2500)的较低压力条件下隔离小的金属芯来解释。

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