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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Inclusions of nanocrystalline hydrous aluminium silicate 'Phase Egg' in superdeep diamonds from Juina (Mato Grosso State, Brazil)
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Inclusions of nanocrystalline hydrous aluminium silicate 'Phase Egg' in superdeep diamonds from Juina (Mato Grosso State, Brazil)

机译:来自Juina(巴西马托格罗索州)的超深钻石中的纳米晶水合硅酸铝铝“相鸡蛋”的内含物

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摘要

Inclusions in alluvial diamond from Juina (Mato Grosso, Brazil) have been investigated by TEM methods (electron diffraction, HRTEM, AEM, HAADF, EELS) and Raman spectroscopy. The inclusion paragenesis of Juina diamonds is dominated by ultrahigh-pressure ("superdeep") phases. One of these diamonds, sample # 1. 1/4, contains several micrometer-sized (approximately 200 mu m by 50-70 mu m) inclusions, which have been studied. TEM foils prepared applying Focused Ion Beam (FIB) technique revealed that these inclusions consist of a porous, nanocrystalline groundmass, which is composed of nanometre-sized crystals of a hydrous aluminium silicate phase with Al: Si approximately 1: 1 and chemical composition of phase "Egg" (AlSiO3(OH)), a minor volume fraction of nanocrystalline stishovite and pore space, which was originally filled with a fluid or gas. The nanocrystalline hydrous aluminium silicate phase is idiomorphic, randomly oriented (approximately 20-30 nm in size) predominantly with tetragonal crystal structure (a(0)=0.743 nm, c(0)=0.706 nm). The monoclinic structure of synthetic phase "Egg" determined at ambient conditions [M.W. Schmidt, L.W. Finger, R.J. Ross, R.E. Dinnebier, Synthesis, crystal structure, and phase relations of AlSiO3OH, a high-pressure hydrous phase, American Mineralogist 83 (1998) 881 - 888] is only occasionally observed. The fluid filling in the porosity has been released into the vacuum of the FIB during TEM specimen preparation. Quench products of the fluid containing minor concentrations of F- P- S- Cl- K-Ca and Ba were detected at the walls of the pores. In addition phase "Egg" is identified by mu-Raman spectroscopy within a second sample (RS 43a) from the same location. The presence of Phase "Egg" in the inclusions in diamond may suggest that crustal material has been subducted to a depth of the lower Transition Zone. Although, metastable growth of nanocrystalline high-pressure phases or extension of their respective stability fields to lower pressure can not ruled out completely. (c) 2007 Elsevier B.V. All rights reserved.
机译:已通过TEM方法(电子衍射,HRTEM,AEM,HAADF,EELS)和拉曼光谱法研究了来自Juina(巴西马托格罗索州)的冲积钻石中的夹杂物。 Juina钻石的包裹体共生以超高压(“超深”)阶段为主。其中一颗钻石,样品#1。1/4,包含数微米大小(约200微米乘以50-70微米)的夹杂物。使用聚焦离子束(FIB)技术制备的TEM箔片显示,这些夹杂物由多孔的纳米晶体磨碎物组成,该磨碎物由含水硅酸铝相的纳米级晶体组成,其中Al:Si约为1:1,且相的化学组成“ Egg”(AlSiO3(OH)),少量的纳米晶细晶石和孔隙,最初填充有流体或气体。纳米晶含水硅酸铝相是独特的,随机取向的(大小约为20-30 nm),主要具有四方晶体结构(a(0)= 0.743 nm,c(0)= 0.706 nm)。在环境条件下确定的合成相“ Egg”的单斜晶结构[M.W.施密特(L.W.)手指,R.J。罗斯(R.E.高压水相AlSiO3OH的Dinnebier,合成,晶体结构和相关系,美国矿物学家83(1998)881-888]只是偶尔观察到。在TEM样品制备过程中,孔隙中填充的流体已释放到FIB的真空中。在孔壁处检测到含有少量F-P-S-Cl-K-Ca和Ba的流体的淬灭产物。另外,在同一位置的第二个样品(RS 43a)中,通过mu-Raman光谱法识别“ Egg”相。钻石夹杂物中存在“鸡蛋”相可能表明地壳物质已被俯冲到较低过渡带的某个深度。虽然,不能完全排除纳米晶高压相的亚稳态生长或将其各自的稳定性场扩展至低压。 (c)2007 Elsevier B.V.保留所有权利。

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