Identifying crystal nucleation mechanisms in a synthetic trachybasalt: a multimodal approach

IF 3.5 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Stefano Peres, Thomas A. Griffiths, Fabio Colle, Stefano Iannini Lelarge, Matteo Masotta, Alessio Pontesilli, Lucia Mancini, Rainer Abart
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Abstract

To develop new criteria to distinguish different crystal nucleation mechanisms in silicate melts, we performed crystallization experiments using a synthetic hydrous (2 wt% H2O) trachybasalt and combined three-dimensional information from synchrotron X-ray computed microtomography with two-dimensional mapping of crystallographic orientation relationships (CORs) using electron backscatter diffraction. Crystallization experiments were performed at 400 MPa by cooling the melt from 1300 °C to resting temperatures of 1150 and 1100 °C and maintaining isothermal conditions for 30 min and 8 h. Three distinct titanomagnetite (Tmt) populations formed: (1) skeletal crystals, isolated or partially embedded in clinopyroxene (Cpx); (2) anhedral crystals, always attached to Cpx; (3) flattened needle-shaped crystals, embedded in Cpx. These morphologically different Tmt populations formed in response to one cooling event, with varying nucleation mechanisms and at different undercooling conditions. The clustered three-dimensional distribution of population 2 and 3 Tmt grains and the high proportion of Tmt-Cpx interfaces sharing CORs indicate that these Tmt grains heterogeneously nucleated on Cpx. The near-random three-dimensional distribution of (often isolated) population 1 Tmt grains, together with the low proportion of Tmt-Cpx interfaces sharing CORs, imply their isolated, possibly homogeneous nucleation, potentially followed by heterogeneous nucleation of Cpx on population 1 Tmt. Heterogeneous nucleation in slightly to moderately undercooled magmas should affect the sequence of crystallization as well as morphology and clustering of crystals, which may actively contribute to the variation of rheological parameters like viscosity. Finally, observed intra- and inter-sample variations in Tmt-Cpx COR frequencies indicate the potential for this parameter to record further petrological information.

Abstract Image

识别合成三基性玄武岩中的晶体成核机制:一种多模式方法
为了制定新的标准来区分硅酸盐熔体中不同的晶体成核机制,我们使用合成的含水(2 wt% H2O)三基玄武岩进行了结晶实验,并将同步辐射 X 射线计算显微层析成像的三维信息与使用电子反向散射衍射绘制的晶体取向关系(COR)二维图结合起来。结晶实验是在 400 MPa 的压力下进行的,将熔体从 1300 °C 冷却到 1150 和 1100 °C 的静止温度,并保持等温条件 30 分钟和 8 小时。这些形态各异的 Tmt 群体是在一次冷却过程中形成的,其成核机制和过冷条件各不相同。群 2 和群 3 Tmt 晶粒的成簇三维分布以及 Tmt-Cpx 界面共享 COR 的高比例表明,这些 Tmt 晶粒是在 Cpx 上异质成核的。种群 1 Tmt 晶粒(通常是孤立的)近乎随机的三维分布,以及 Tmt-Cpx 界面共享 COR 的比例较低,意味着它们是孤立的、可能是均质的成核,随后可能在种群 1 Tmt 上形成 Cpx 的异质成核。轻度至中度低温岩浆中的异质成核应该会影响结晶顺序以及晶体的形态和聚集,这可能会对粘度等流变参数的变化起到积极作用。最后,观察到的 Tmt-Cpx COR 频率在样本内和样本间的变化表明,该参数有可能记录更多的岩石学信息。
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来源期刊
Contributions to Mineralogy and Petrology
Contributions to Mineralogy and Petrology 地学-地球化学与地球物理
CiteScore
6.50
自引率
5.70%
发文量
94
审稿时长
1.7 months
期刊介绍: Contributions to Mineralogy and Petrology is an international journal that accepts high quality research papers in the fields of igneous and metamorphic petrology, geochemistry and mineralogy. Topics of interest include: major element, trace element and isotope geochemistry, geochronology, experimental petrology, igneous and metamorphic petrology, mineralogy, major and trace element mineral chemistry and thermodynamic modeling of petrologic and geochemical processes.
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