首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Could sedimentary carbonates be recycled into the lower mantle? Constraints from Mg isotopic composition of Emeishan basalts
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Could sedimentary carbonates be recycled into the lower mantle? Constraints from Mg isotopic composition of Emeishan basalts

机译:可以将沉积碳酸盐再循环到较低的地幔中? 峨眉山玄武岩镁同位素组成的约束

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AbstractWhether or not sedimentary carbonates can be recycled into the lower mantle through subduction remains unclear. To further elucidate this issue, we investigate the Mg isotopic composition of Permian basalts from the Emeishan large igneous province (ELIP). Emeishan basalts can be divided into two major groups: the low-Ti and high-Ti basalts, which exhibit distinct major, trace element, and Sr–Nd–Pb isotopic compositions. However, they both possess mantle-like Mg isotopic compositions with δ26Mg values of ?0.33 to ?0.19‰ and ?0.35 to ?0.19‰, respectively. Both the low-Ti and high-Ti basalts have experienced compositional evolution, e.g., fractional crystallization or crustal contamination, because their Mg#(39.8–61.1) values are significantly lower than that of primary melt (~72.0). However, their δ26Mg values do not vary with Mg#, indicating that the Mg isotopic compositions of the basalts were inherited from their mantle source. The low-Ti basalts are enriched in light rare earth elements with low εNd(t) values (mostly ranging from ?10.5 to ?8.8) and low Ce/Pb, high Ba/Th ratios, suggesting that they were derived from the lithospheric mantle that was metasomatized by slab-derived fluids. Their mantle-like Mg isotopic composition suggests that the metasomatism of slab-derived fluids did not affect their Mg isotopic composition. This is consistent with most of the reported Arc basalts with mantle-like Mg isotopic compositions. On the other hand, the high-Ti basalts display an OIB-like trace element pattern and positive εNd(t) values (+0.2~+2.1), which were possibly derived from a mantle plume that originated from the lower mantle. Their mantle-like Mg isotopic composition indicates that sedimentary carbonates recycled into the lower mantle beneath the ELIP were limited (<2%).Highlights?Basalts from the Emeishan large igneous province exhibit mantle-like Mg isotopic compositions.?Mantle metasomatized by fluids may not modify Mg isotopic composition.?Sedimentary carbonates involved in the lower mantle source of the Emeishan plume were limited.?Sedimentary carbonates are unlikely directly recycled into the low mantle.]]>
机译:<![cdata [ 抽象 无论是否通过俯视将沉积碳酸盐再循环到较低的地幔中尚不清楚。为了进一步阐明这个问题,我们研究了峨眉山大火省(Elip)的二叠纪玄武岩的Mg同位素组成。 Emeishan Basalts可分为两个主要群体:低TI和高TI底座,其表现出明显的主要,痕量元素和SR-ND-PB同位素组合物。然而,它们均具有含有类似型碎屑的Mg同位素组合物,其δ 26> mg值分别为0.33至0.19°+ 0.19°+ 0.19‰。低TI和高TI玄武岩都经历了成分演进,例如分数结晶或地壳污染,因为它们的mg (39.8-61.1)值是显着低于初级熔体(〜72.0)。但是,它们的Δ 26 mg值不会随mg ,表示mg基础的同位素组合物从其地幔源遗传。低TI底座在轻的稀土元素中富集,低ε nd (t)值(主要是从?10.5到?8.8)和低ce / PB,高BA /乙多率,表明它们源自由板状衍生的流体弥思的岩石罩。它们的披风式Mg同位素组成表明,植物衍生的流体的弥撒不影响其Mg同位素组合物。这与大多数报告的弧形沼气与搭式的MG同位素组合物一致。另一方面,高TI底座显示oib样迹线元素图案和正ε nd (t)值(+ 0.2〜+ 2.1),这可能来自于源自下部地幔的披风羽毛。它们的甲状腺同位素组合物表明,沉积碳酸酯再循环到Elip下方的下部罩子(<2%)。 < CE:抽象XMLNS:CE =“http://www.elsevier.com/xml/common/dtd”xmlns =“http://www.elsevier.com/xml/ja/dtd”id =“ab0010”class = “作者 - 突出显示”XML:lang =“en”查看=“全部”> 亮点 来自峨眉山大的火油省的底座展示披露的mg同位素组成。 沉积碳酸盐株emeishan羽流下的较低地幔源的Olved。 沉积碳酸盐不太可能直接被再循环到低地幔中。 ]]>

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