橄榄石中磷的广泛过剩、晶体的快速生长以及对岩浆动力学的影响

IF 2.5 Q2 Earth and Planetary Sciences
Cin-Ty A. Lee, Chenguang Sun, Eytan Sharton-Bierig, P. Phelps, J. Borchardt, Boda Liu, G. Costin, A. Johnston
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引用次数: 1

摘要

微量元素分带常用于揭示岩浆系统中斑晶的结晶历史,但解释需要量化平衡与不平衡的相对重要性。已公布的橄榄石中磷(P)的分配系数相差十倍以上。在考虑动力学效应后,通过对自然系统和实验系统的重新检验,推断出一个新的平衡分配系数,表明橄榄石中的P分配系数明显高估。这些新的划分约束使我们能够为中洋脊玄武岩(morb)建立一个理论的P平衡分馏阵列(PEFA),揭示了morb中的大多数橄榄石具有过量的P(2-15倍PEFA),因此处于不平衡状态。通过对天然枝晶橄榄石的独立案例研究,我们发现这种P富集可以通过快速晶体生长过程中P的扩散限制来解释。如果生长速度与冷却有关,那么橄榄石的快速生长速度对岩浆系统动力学有影响,例如岩浆体的大小或结晶发生在岩浆体内的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Widespread phosphorous excess in olivine, rapid crystal growth, and implications for magma dynamics
Trace element zoning is often used to unravel the crystallization history of phenocrysts in magmatic systems, but interpretation requires quantifying the relative importance of equilibrium versus disequilibrium. Published partition coefficients for phosphorous (P) in olivine vary by more than a factor of ten. After considering kinetic effects, a new equilibrium partition coefficient was extrapolated from a re-examination of natural and experimental systems, indicating that P partition coefficients in olivine are significantly over-estimated. These new partitioning constraints allow us to establish a theoretical P Equilibrium Fractionation Array (PEFA) for mid-ocean ridge basalts (MORBs), revealing that most olivines from MORBs have excess P (2–15 times PEFA) and are thus in disequilibrium. Using an independent case study of natural dendritic olivines, we show that such P enrichments can be explained by diffusion-limited incorporation of P during rapid crystal growth. If growth rate can be related to cooling, the rapid growth rates of olivines have implications for magma system dynamics, such as the size of magma bodies or where crystallization occurs within the body.
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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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