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Equations of state of dense hydrous magnesium silicates: results from single-crystal X-ray diffraction

机译:致密含水硅酸镁的状态方程:单晶X射线衍射的结果

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摘要

The equations of state of dense hydrous magnesium silicates (DHMS), determined from high-pressure single-crystal X-ray diffraction are reviewed, including hydroxylchondrodite, hydroxylclinohumite, phase A, phase B (anhydrous and hydrous), superhydrous phase B and phase E. The phases along the forsterite-brucite join, Mg_2SiO_4-Mg(OH)_2, display near (increasing) linearity in compressibility with respect to water content and increasing bulk moduli (K_T) with density. Such trends allow prediction of the as yet unknown bulk moduli of phases such as OH-Mg norbergite. The addition of water also reduces the bulk modulus of the B-phases and the anisotropy observed in axial compression. The alternating layers of octahedra and octahedra + tetrahedra completely control compression of the B phases, with the stacking direction becoming more compressible with addition of water. The enigmatic Phase E has the highest K_(T') yet measured for a hydrous silicate and one of the lowest K_T. In contrast with other DHMS, Phase E is only slightly anisotropic in axial compression and we attribute this to the role of the intralayer cations in the structure. The degree of hydration and the vacancy concentration appear to be coupled in Phase E.
机译:审查了由高压单晶X射线衍射确定的致密含水硅酸镁(DHMS)的状态方程,包括羟基软骨石,羟基斜辉石,A相,B相(无水和含水),超水相B和E相沿镁橄榄石-水铝石结合的相,Mg_2SiO_4-Mg(OH)_2,相对于水含量,可压缩性显示出接近(增加)的线性,并随密度增加了体积模量(K_T)。这样的趋势允许预测诸如OH-Mg钙锰矿的相的尚未知道的体积模量。加水还降低了B相的体积模量和轴向压缩中观察到的各向异性。八面体和八面体+四面体的交替层完全控制了B相的压缩,随着水的加入,堆叠方向变得更加可压缩。神秘的相E具有针对含水硅酸盐测量的最高K_(T'),也是最低的K_T之一。与其他DHMS相比,E相在轴向压缩方面仅略有各向异性,我们将其归因于层内阳离子在结构中的作用。水化程度和空位浓度似乎在E相中耦合。

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