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变质磁铁矿中氧同位素比值的隐晶粒状不均匀性。

Cryptic grain-scale heterogeneity of oxygen isotope ratios in metamorphic magnetite.

出版信息

Science. 1993 Mar 19;259(5102):1729-33. doi: 10.1126/science.259.5102.1729.

Abstract

Oxygen isotope ratios measured by ion microprobe in magnetite from granulite-facies marble of the Adirondack Mountains, New York, range from +2 to +11 per mil (standard mean ocean water) across a single grain that measures 3 millimeters by 5 millimeters. Low values are concentrated in irregular domains near the grain boundary but also occur in the grain's interior. In contrast, grains 1 millimeter in diameter that are from a second nearby sample show no significant heterogeneity, except within 10 micrometers of the grain boundary. These data, including large gradients of up to 9 per mil per 10 micrometers, provide important new constraints on the nature and origins of intragrain isotopic heterogeneity and on oxygen isotope thermometry. The differences between these magnetite grains result from contrasting mechanisms of isotope exchange with fluids after the peak of regional metamorphism. Volume diffusion of oxygen through the crystal structure of magnetite contributed to isotope exchange in the rims of small grains, but larger grains are crosscut by healed cracks that are not readily detected and that short-circuited diffusion.

摘要

氧同位素比值由离子探针测量磁铁矿从麻粒岩相大理岩的阿迪朗达克山脉,纽约,范围从+2 到+11 每百万分之一(标准平均海水)在一个单一的颗粒,测量 3 毫米×5 毫米。低值集中在不规则的领域附近的颗粒边界,但也发生在颗粒的内部。相比之下,直径 1 毫米的颗粒,从第二个附近的样本显示没有明显的非均质性,除了在 10 微米的颗粒边界。这些数据,包括高达 9 每百万分之一的梯度每 10 微米,提供了重要的新的约束对性质和起源的颗粒内同位素非均质性和氧同位素测温。这些磁铁矿颗粒之间的差异是由于在区域变质峰后与流体的同位素交换的对比机制。氧通过磁铁矿的晶体结构的体积扩散有助于同位素交换的小颗粒的边缘,但较大的颗粒被愈合的裂缝切割,这些裂缝不易被发现,并缩短了扩散。

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