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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >First principles investigation of the structural and elastic properties of hydrous wadsleyite under pressure
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First principles investigation of the structural and elastic properties of hydrous wadsleyite under pressure

机译:压力下含水辉石的结构和弹性性质的第一性原理研究

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In order to clarify the effect of protonation of wadsleyite under high-pressureconditions, we determined defect structures of Mg _(1.875)SiO_4H_(0.25) (1Mg~(2+) V_(Mg)~(2-)+2H~+, 1.65 wt % H_2O), Mg_(1.75)SiO_4H_(0.5) (2Mg~(2+) 2V_(Mg) + 4H~-, 3.3 wt % H_2O) hydrous wadsleyite and their elastic properties by means of the density functional first principles method. Structural optimization calculations indicate that the most stable structures have monoclinic symmetry with magnesium M3 site vacancies. Protons are found to bond to the 01 site to align the OH dipoles along the edges of M3 vacancies. Calculated elastic constants, bulk and shear moduli, are found to decrease almost linearly with increasing water content but to increase linearly with increasing pressure. At 15 GPa and static 0 K condition, incorporation of 3.3 wt % H_i2nto wadsOleyite, which coresponds to the maximum solubility of hydrous wadsleyite, reduces V_P and V_S by about 3.9 and 4.8%, respectively. This indicates that 1 wt % H_ 2O hydration of wadsleyite corresponds to the temperature effects on bulk and shear moduli about 430 K (0 GPa) to 340 K (20 GPa) and 350 K (0 GPa) to 290 K (20 GPa), respectively. The transversely isotropic aggregates demonstrate largest positive polarization anisotropy V_(SH)-V_(SV) when the c axis aligns vertically in both dry and wet cases.
机译:为了阐明沃兹利特在高压条件下的质子化作用,我们确定了Mg _(1.875)SiO_4H_(0.25)(1Mg〜(2+)V_(Mg)〜(2-)+ 2H〜+的缺陷结构, 1.65 wt%H_2O),Mg_(1.75)SiO_4H_(0.5)(2Mg〜(2+)2V_(Mg)+ 4H〜-,3.3 wt%H_2O)含水辉石粉及其弹性性质。结构优化计算表明,最稳定的结构与镁M3位空位具有单斜对称性。发现质子键合到01位,使OH偶极子沿着M3空位的边缘对齐。发现计算出的弹性常数,体积模量和剪切模量随水含量的增加几乎呈线性下降,但随压力的增加呈线性增长。在15 GPa和静态0 K条件下,将3.3 wt%的H_i2n掺入wadsOleyite中,这与含水的辉绿石的最大溶解度相对应,分别将V_P和V_S降低了约3.9和4.8%。这表明,辉石矿的1 wt%H_2O水化对应于温度对体积模量和剪切模量的影响,约为430 K(0 GPa)至340 K(20 GPa)和350 K(0 GPa)至290 K(20 GPa),分别。在干湿情况下,当c轴垂直对齐时,横观各向同性聚集体表现出最大的正极化各向异性V_(SH)-V_(SV)。

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