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Temperature and common-ion effect on magnesium oxide (MgO) hydration

机译:温度和离子对氧化镁(MgO)水化的影响

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摘要

MgO based refractory castables draw wide technological interest because they have the versatility and installation advantages of monolithic refractories with intrinsic MgO properties, such as high refractoriness and resistance to basic slag corrosion. Nevertheless, MgO easily reacts with water to produce Mg(OH)_2, which is followed by a large volumetric expansion, limiting its application in refractory castables. In order to develop solutions to minimize this effect, a better understanding of the main variables involved in this reaction is required. In this work, the influence of temperature, as well as the impact of the chemical equilibrium shifting (known as the common-ion effect), on MgO hydration was evaluated. Ionic conductivity measurements at different temperatures showed that the MgO hydration reaction is accelerated with increasing temperature. Additionally, different compounds were added to evaluate their influence on the reaction rate. Among them, CaCl_2 delayed the reaction, whereas KOH showed an opposite behavior. MgCl_2 and MgSO_4 presented similar results and two other distinct effects, reaction delay and acceleration, which depended on their concentration in the suspensions. The results were evaluated by considering the kinetics and the thermodynamics of the reaction, and the mechanical damages in the samples that was caused by the hydration reaction.
机译:基于MgO的耐火浇注料具有广泛的技术意义,因为它们具有具有固有MgO特性(例如高耐火度和耐碱性渣腐蚀)的整体式耐火材料的通用性和安装优势。然而,MgO容易与水反应生成Mg(OH)_2,随后其体积膨胀大,限制了其在耐火浇注料中的应用。为了开发使这种影响最小化的解决方案,需要更好地理解此反应涉及的主要变量。在这项工作中,评估了温度对MgO水化的影响以及化学平衡偏移的影响(称为共离子效应)。在不同温度下的离子电导率测量结果表明,随着温度的升高,MgO水化反应会加速。另外,添加了不同的化合物以评估它们对反应速率的影响。其中,CaCl_2延迟反应,而KOH表现出相反的行为。 MgCl_2和MgSO_4表现出相似的结果,另外两个不同的效果,即反应延迟和加速,取决于悬浮液中的浓度。通过考虑反应的动力学和热力学以及水合反应引起的样品机械损伤来评估结果。

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