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Review of the Lithium Isotope System as a Geochemical Tracer

机译:锂同位素系统作为地球化学示踪剂的综述

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摘要

Lithium isotopes have many advantageous characteristics as geochemical tracers for a wide range of geological processes, covering fluid/melt-mineral interactions from the Earth's surface to the mantle. The latest developments in Li isotope geochemistry, in terms of measuring techniques, major geochemical reservoirs, the contrasting behaviors during near-surface weathering, and crust/ mantle cycling of materials in subduction zones, as well as the signature of convective mantle, and controlling factors in Li isotopic fractionation are briefly reviewed in this article. With better quan tification of partition coefficients (mineral-melt/fluid) and fractionation factors (such as temperature and diffusion coefficients), the Li isotope system will become a powerful geochemical tracer in future studies.
机译:锂同位素具有许多有利的特征,可作为地球化学示踪剂用于多种地质过程,涵盖从地球表面到地幔的流体/熔体-矿物相互作用。锂同位素地球化学的最新进展,包括测量技术,主要地球化学储层,近地表风化作用下的对比行为,俯冲带中物质的地壳/幔幔循环,对流幔的特征以及控制因素本文简要回顾了锂同位素分馏技术中的应用。通过更好地量化分配系数(矿物熔体/流体)和分馏系数(例如温度和扩散系数),锂同位素系统将成为未来研究中强大的地球化学示踪剂。

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