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Komatiites constrain molybdenum isotope composition of the Earth's mantle

机译:Komatiites约束地球地幔中的钼同位素组成

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摘要

In order to estimate the Mo isotope composition and Mo abundance in the Bulk Silicate Earth (BSE), a total of thirty komatiite samples from five localities on three continents were analyzed using an isotope dilution double spike technique. Calculated Mo concentrations of the emplaced komatiite lavas range from 25±325±3 to 66±22 ng/g66±22 ng/g, and the inferred Mo concentrations in the deep mantle sources of the komatiites range between 17±417±4 and 30±12 ng/g30±12 ng/g, with an average value of 23±7 ng/g23±7 ng/g (2SE). This average value represents our best estimate for the Mo concentration in the BSE; it is identical, within the uncertainty, to published previous estimates of 39±16 ng/g39±16 ng/g, but is at least a factor of 2 more precise.\ud\udThe Mo isotope compositions of the komatiite mantle sources overlap within uncertainty and range from View the MathML sourceδMo98=−0.04±0.28 to 0.11±0.10‰0.11±0.10‰, with an average of 0.04±0.06‰0.04±0.06‰ (2SE). This value is analytically indistinguishable from published Mo isotope compositions of ordinary and enstatite chondrites and represents the best estimate for the Mo isotope composition of the BSE. The inferred δ98Mo for the BSE is therefore lighter than the suggested average of the upper continental crust (0.3 to 0.4‰). Thus, from the mass balance standpoint, a reservoir with lighter Mo isotope composition should exist in the Earth's mantle; this reservoir can potentially be found in subducted oceanic crust.\ud\udThe similarity of δ98Mo between chondritic meteorites and estimates for the BSE from this study indicates that during the last major equilibration between Earth's core and mantle, i.e., the one that occurred during the giant impact that produced the Moon, chemical and isotopic equilibrium of Mo between Fe metal of the core and the silicate mantle was largely achieved.
机译:为了估算块状硅酸盐地球(BSE)中的Mo同位素组成和Mo丰度,使用同位素稀释双尖峰技术分析了来自三大洲五个地区的总共30个科马提石样品。推算的科马蒂岩熔岩中的Mo浓度范围为25±325±3至66±22 ng / g 66±22 ng / g,推断出的科马蒂岩深地幔源Mo浓度范围为17±417±4至30 ±12 ng / g 30±12 ng / g,平均值为23±7 ng / g 23±7 ng / g(2SE)。该平均值代表我们对BSE中Mo浓度的最佳估算;在不确定性范围内,它与先前公布的39±16 ng / g 39±16 ng / g的估计值相同,但至少精确了2倍。\ ud \ udKomatiite地幔源的Mo同位素组成在不确定性和范围从δMo98= −0.04±0.28到0.11±0.10‰0.11±0.10‰,平均值为0.04±0.06‰0.04±0.06‰(2SE)。该值与普通和顽辉陨石球粒陨石的Mo同位素组成在分析上没有区别,代表了BSE的Mo同位素组成的最佳估计。因此,推断出的疯牛病的δ98Mo比建议的上地壳平均水平轻(0.3至0.4‰)。因此,从质量平衡的观点来看,地幔中应该存在一个具有更轻的钼同位素组成的储层。 \ ud \ ud粒状陨石之间的δ98Mo与本研究估计的BSE的相似性表明,在地球核心与地幔之间的最后一次主要平衡期间,即在在很大程度上实现了产生月球的巨大撞击,在芯部的铁金属与硅酸盐幔之间形成了Mo的化学和同位素平衡。

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