首页> 外文会议>European workshop on modern developments and applications in microbean analysis >FROM EXPERIMENTS TO REACTION MECHANISM: APPLICATION OF MICROBEAM TECHNIQUES TO UNDERSTAND ALBITISATION REACTIONS
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FROM EXPERIMENTS TO REACTION MECHANISM: APPLICATION OF MICROBEAM TECHNIQUES TO UNDERSTAND ALBITISATION REACTIONS

机译:从实验到反应机制:使用微磁珠技术了解复血虫病反应

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One aim of this study was to investigate the mechanism behind the transformation of plagioclase to albite, as this is one of the most common fluid-mineral reactions that take place in the earth's shallow crust [1]. A field emission scanning electron microscopy (SEM) equipped with traditional energy-dispersive X-ray spectrometry (EDS) and electron probe microanalysis (EPMA) were used to examine reaction products after high temperature high pressure albitisation experiments, and as preliminary to advanced characterisation of product texture and porosity. In this study, preliminary plagioclase albitisation experiments were conducted at 600 °C and 2 kbar, with labradorite (Nao.4Cao.6Al1.6Si2.4O8). sodium metasilicate and water as basic reactants, but with varying activity of water and quartz in each experiment. EDS analysis was done with a FEI Quanta 3D FEG FIB, operated at 15kV and 16 nA. The products' texture and EDS spectra are shown in Fig. 1. With different amounts of water added into the system, reaction products remained the same, i.e., pectolite (NaCa_2Si_3O_8(OH)), and analcime (NaAlSi_2O_6?H_2O) (Figs, 1a and 1c). However, as the activity of quartz was increased in the system, albite formed as a reaction product (Figs, 1b and 1c).
机译:这项研究的目的之一是调查斜长石钠长石来改造背后的机制,因为这是发生在地球的地壳浅部[1]最常见的流体矿物反应之一。配备有传统的能量色散型X射线光谱(EDS)和电子探针显微分析(EPMA)的场致发射扫描电子显微镜(SEM)被用来研究反应产物经过高温高压albitisation实验,并作为初步的先进特性产品质地和孔隙度。在这项研究中,初步斜长石albitisation实验在600℃和2千巴进行的,以拉长(Nao.4Cao.6Al1.6Si2.4O8)。偏硅酸钠和水作为基本的反应物,但在每个实验中改变水和石英活性。 EDS分析用FEI广达3D FEG FIB,在15kV的操作和16 nA的完成。这些产品的质地和EDS光谱示于图1与不同量的加入到系统中的水,反应产物仍然是相同的,即,针钠钙石(NaCa_2Si_3O_8(OH)),方沸石和(NaAlSi_2O_6?H2O)(图, 1a和1c)。然而,由于石英的活性系统中的增加,钠长石形成为反应产物(图,1b和1c)。

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