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首页> 外文期刊>Fluid Phase Equilibria >Contribution to the quaternary system H2O-Al3+, Ca2+//O2-, SO42- : Solid-liquid equilibria in the ternary systems Al-2(SO4)(3)-CaSO4-H2O and Al2O3-SO3-H2O at 25 degrees C
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Contribution to the quaternary system H2O-Al3+, Ca2+//O2-, SO42- : Solid-liquid equilibria in the ternary systems Al-2(SO4)(3)-CaSO4-H2O and Al2O3-SO3-H2O at 25 degrees C

机译:对25°C的三元体系Al-2(SO4)(3)-CaSO4-H2O和Al2O3-SO3-H2O中四元体系H2O-Al3 +,Ca2 + // O2-,SO42-的固液平衡

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摘要

During the acid processing of aluminosilicate ores, the temporary precipitation of a white solid phase principally consisting in calcium sulfate and aluminium hydroxide and/or sulfates may be observed. This study aimed to determine the nature of the solid phases, their stability and their solubility. Understanding why precipitation occurs and being able to prevent it would help avoid the clogging that may occur during acid ore mining. Thus the solid liquid equilibria of the two ternary systems Al-2(SO4)(3) -Ca5O4-H2O and Al2O3-SO3 H2O were defined. The first ternary highlights very low gypsum solubility, which explains why this mineral is observed so often during acid mining. However no double Al Ca compound, in equilibrium with a liquid phase, was found. The determination of the second system was more complex as a large number of aluminium hydroxysulfates, which could appear during the ore processing, have been reported in the literature. Most of these solid phases are poorly crystallised and not well defined as they decompose rapidly and are often metastable. The use of different techniques of characterisation (X-ray diffraction, thermogravimetry, scanning electron microscopy...) enabled the chemical composition of the solid phases to be found and also their solubility curves to be delimited. One of the aluminium hydroxysulfates decomposes rapidly when the mother solution is removed. This underlines the poor aluminium hydroxysulfate stability, which explains the difficulties in characterising them. (C) 2015 Elsevier B.V. All rights reserved.
机译:在硅铝酸盐矿石的酸处理期间,可以观察到主要由硫酸钙和氢氧化铝和/或硫酸盐组成的白色固相的临时沉淀。这项研究旨在确定固相的性质,稳定性和溶解度。了解为什么会发生沉淀并能够防止沉淀将有助于避免在酸性矿石开采过程中可能发生的堵塞。因此,定义了两个三元体系Al-2(SO4)(3)-Ca5O4-H2O和Al2O3-SO3 H2O的固液平衡。第一个三元组突出显示了非常低的石膏溶解度,这解释了为什么在酸开采过程中经常观察到这种矿物。然而,未发现与液相平衡的双Al Ca化合物。第二系统的测定更为复杂,因为文献中已经报道了在矿石加工过程中可能出现的大量羟基硫酸铝。这些固相中的大多数结晶性差,并且定义不清,因为它们会迅速分解并且通常是亚稳态的。使用不同的表征技术(X射线衍射,热重分析,扫描电子显微镜等),可以找到固相的化学成分,并可以确定固溶度曲线。当除去母液时,一种羟基硫酸铝迅速分解。这表明羟基硫酸铝的稳定性差,这说明了表征它们的困难。 (C)2015 Elsevier B.V.保留所有权利。

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