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Intermineral oxygen three-isotope systematics of silicate minerals in equilibrated ordinary chondrites

机译:平衡普通球粒陨石中硅酸盐矿物的矿物间氧三同位素体系

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摘要

High precision oxygen three-isotope ratios were measured for four mineral phases (olivine, low-Ca and high-Ca pyroxene, and plagioclase) in equilibrated ordinary chondrites (EOC) using a secondary ion mass spectrometer. Eleven EOCs were studied that cover all groups (H, L, LL) and petrologic types (4, 5, 6), including S1–S4 shock stages, as well as unbrecciated and brecciated meteorites. SIMS analyses of multiple minerals were made in close proximity (mostly <100 μm) from several areas in each meteorite thin section, to evaluate isotope exchange among minerals.Oxygen isotope ratios in each mineral become more homogenized as petrologic type increases with the notable exception of brecciated samples. In type 4 chondrites, oxygen isotope ratios of olivine and low-Ca pyroxene are heterogeneous in both δ18O and Δ17O, showing similar systematics to those in type 3 chondrites. In types 5 and 6 chondrites, oxygen isotope ratios of the four mineral phases plot along mass dependent fractionation lines that are consistent with the bulk average Δ17O of each chondrite group. The δ18O of three minerals, low-Ca and high-Ca pyroxene and plagioclase, are consistent with equilibrium fractionation at temperatures of 700–1000°C. In most cases the δ18O values of olivine are higher than those expected from pyroxene and plagioclase, suggesting partial retention of premetamorphic values due to slower oxygen isotope diffusion in olivine than pyroxene during thermal metamorphism in ordinary chondrite parent bodies.
机译:使用二次离子质谱仪测量了平衡的普通球粒陨石(EOC)中四个矿物相(橄榄石,低钙和高钙辉石以及斜长石)的高精度氧三同位素比。研究了11种EOC,它们涵盖了所有组(H,L,LL)和岩石学类型(4、5、6),包括S1-S4震荡阶段以及未角砾和角砾陨石。在每个陨石薄片的多个区域中,进行了近距离(大多数<100μm)的多种矿物的SIMS分析,以评估矿物之间的同位素交换。随着岩石学类型的增加,每种矿物中的氧同位素比变得更加均质化,除了烧成的样品。在4型球粒陨石中,橄榄石和低钙辉石的氧同位素比在δ 18 O和Δ 17 O中均不均匀,显示出与3型球粒类似的系统。 。在5型和6型球粒陨石中,四个矿物相的氧同位素比沿质量相关的分馏线绘制,这些分馏线与每个球粒陨石组的体积平均Δ 17 O一致。低钙和高钙辉石和斜长石三种矿物的δ 18 O与在700–1000°C的温度下的平衡分馏相符。在大多数情况下,橄榄石的δ 18 O值高于辉石和斜长石所预期的值,这表明在普通球粒陨石母体的热变质过程中,橄榄石中氧的同位素扩散比辉石慢,部分保留了亚变质值身体。

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