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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Inter-mineral Fe isotope variations in mantle-derived rocks and implications for the Fe geochemical cycle
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Inter-mineral Fe isotope variations in mantle-derived rocks and implications for the Fe geochemical cycle

机译:地幔衍生岩石的矿物间铁同位素变化及其对铁地球化学循环的影响

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Iron isotope and major- and minor-element compositions of coexisting olivine, clinopyroxene, and orthopyroxene from eight spinel peridotite mantle xenoliths; olivine, magnetite, amphibole, and biotite from four andesitic volcanic rocks and garnet and clinopyroxene from seven garnet peridotite and eclogites have been measured to evaluate if inter-mineral Fe isotope fractionation occurs in high-temperature igneous and metamorphic minerals and if isotopic fractionation is related to equilibrium Fe isotope partitioning or a result of open-system behavior. There is no measurable fractionation between silicate minerals and magnetite in andesitic volcanic rocks, nor between olivine and orthopyroxene in spinel peridotite mantle xenoliths. There are some inter-mineral differences (up to 0.2parts per thousand in Fe-56/Fe-54) in the Fe isotope composition of coexisting olivine and clinopyroxene in spinel peridotites. The Fe isotope fractionation observed between clinopyroxene and olivine appears to be a result of open-system behavior based on a positive correlation between the Delta(56)Fe(clinopyroxene-olivine) fractionation and the delta(56)Fe value of clinopyroxene and olivine. There is also a significant difference in the isotopic compositions of garnet and clinopyroxene in garnet peridotites and eclogites, where the average Delta(56)Fe(clinopyroxene-garnet) fractionation is +0.32 +/- 0.07parts per thousand for six of the seven samples. The one sample that has a lower Delta(56)Fe(clinopyroxene-garnet) fractionation of 0.08parts per thousand has a low Ca content in garnet, which may reflect some crystal chemical control on Fe isotope fractionation. The Fe isotope variability in mantle-derived minerals is interpreted to reflect subduction of isotopically variable oceanic crust, followed by transport through metasomatic fluids. Isotopic variability in the mantle might also occur during crystal fractionation of basaltic magmas within the mantle if garnet is a liquidus phase. The isotopic variations in the mantle are apparently homogenized during melting processes, producing homogenous Fe isotope compositions during crust formation. Copyright (C) 2004 Elsevier Ltd.
机译:来自八个尖晶石橄榄岩地幔异种岩中的橄榄石,斜辉石和邻辉石共存的铁同位素以及主要和次要元素组成;测量了来自四个安山岩火山岩的橄榄石,磁铁矿,闪石和黑云母以及来自七个石榴石橄榄岩和榴辉岩的石榴石和斜辉石,以评估在高温火成岩和变质矿物中是否发生矿物间铁同位素分馏,以及是否与同位素分馏相关达到平衡的铁同位素分配或开放系统行为的结果。安第斯火山岩中的硅酸盐矿物和磁铁矿之间没有可测量的分馏,尖晶石橄榄岩地幔异岩中的橄榄石和邻二甲苯之间没有可测量的分馏。尖晶石橄榄岩中橄榄石和斜辉石共存的铁同位素组成存在矿物间差异(Fe-56 / Fe-54中的千分之千)。斜柏石和橄榄石之间观察到的Fe同位素分馏似乎是基于Delta(56)Fe(斜柏木-橄榄石)馏分与斜柏木和橄榄石的del(56)Fe值之间呈正相关的开放系统行为的结果。石榴石橄榄岩和榴辉岩中石榴石和斜发ino的同位素组成也存在显着差异,其中七个样品中的六个,平均Delta(56)Fe(斜发rox-石榴石)的分馏率为+0.32 +/- 0.07千分之几。一个具有较低的Delta(56)Fe(斜环茂铁-石榴石)分数为千分之0.08的样品,石榴石中的Ca含量较低,这可能反映出对Fe同位素分馏的某些晶体化学控制。地幔衍生矿物中的Fe同位素变异性被解释为反映了同位素变化的大洋地壳的俯冲,然后通过交代流体运移。如果石榴石是液相线相,则在地幔内玄武岩浆的晶体分离过程中也可能发生地幔同位素变化。地幔中的同位素变化在熔化过程中显然被均化了,在地壳形成过程中产生了均质的Fe同位素组成。版权所有(C)2004 Elsevier Ltd.

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