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首页> 外文期刊>Contributions to Mineralogy and Petrology >Iron isotope variations in spinel peridotite xenoliths from North China Craton: implications for mantle metasomatism
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Iron isotope variations in spinel peridotite xenoliths from North China Craton: implications for mantle metasomatism

机译:华北克拉通尖晶石橄榄岩异岩中的铁同位素变化:对地幔交代作用的影响

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Iron isotopes, together with mineral elemental compositions of spinel peridotite xenoliths and clinopyroxenites from Hannuoba and Hebi Cenozoic alkaline basalts, were analyzed to investigate iron isotopic features of the lithospheric mantle beneath the North China Craton. The results show that the Hannuoba spinel peridotite xenoliths have small but distinguishable Fe isotopic variations. Overall variations in δ57Fe are in a range of −0.25 to 0.14‰ for olivine, −0.17 to 0.17‰ for orthopyroxene, −0.21 to 0.27‰ for clinopyroxene, and −0.16 to 0.26‰ for spinel, respectively. Clinopyroxene has the heaviest iron isotopic ratio and olivine the lightest within individual sample. No clear linear relationships between the mineral pairs on “δ-δ” plot suggest that iron isotopes of mineral separates analyzed have been affected largely by some open system processes. The broadly negative correlations between mineral iron isotopes and metasomatic indexes such as spinel Cr#, (La/Yb)N ratios of clinopyroxenes suggest that iron isotopic variations in different minerals and peridotites were probably produced by mantle metasomatism. The Hebi phlogopite-bearing lherzolite, which is significantly modified by metasomatic events, appears to be much heavier isotopically than clinopyroxene-poor lherzolite. This study further confirms previous conclusions that the lithospheric mantle has distinguishable and heterogeneous iron isotopic variations at the xenoliths scale. Mantle metasomatism is the most likely cause for the iron isotope variations in mantle peridotites.
机译:分析了铁同位素以及汉诺巴和鹤壁新生代碱性玄武岩的尖晶石橄榄石异种岩和斜辉石的矿物元素组成,以研究华北克拉通下方岩石圈地幔的铁同位素特征。结果表明,汉诺巴尖晶石橄榄岩异种岩具有较小但可区分的铁同位素变化。橄榄石中δ 57 Fe的总体变化范围为-0.25至0.14‰,邻位邻苯二酚的总体变化范围为-0.17至0.17‰,斜生环烯的总体分布范围为-0.21至0.27‰,尖晶石的范围为-0.16至0.26‰ , 分别。亚铁氰化物的铁同位素比重最高,橄榄石最轻。 “δ-δ”图上的矿物对之间没有明确的线性关系,表明分析的矿物分离物的铁同位素在很大程度上受某些开放系统过程的影响。矿物铁同位素与尖晶石的尖晶石Cr#,(La / Yb) N 比等交代指数之间的广泛负相关性表明,不同矿物和橄榄岩中铁同位素的变化可能是由地幔交代作用产生的。含鹤壁金云母的锂铁矿经交代反应显着修饰,同位素分布似乎比贫斜ino石的锂铁矿重得多。这项研究进一步证实了先前的结论,即岩石圈地幔在异种岩规模上具有可区分的异质铁同位素变化。地幔交代作用是地幔橄榄岩中铁同位素变化的最可能原因。

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