首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >The kinetics and mechanisms of simulated British Magnox waste glass dissolution as a function of pH, silicic acid activity and time in low temperature aqueous systems
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The kinetics and mechanisms of simulated British Magnox waste glass dissolution as a function of pH, silicic acid activity and time in low temperature aqueous systems

机译:在低温水系统中模拟英国Magnox废玻璃溶解的动力学和机理与pH,硅酸活性和时间的关系

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摘要

Dissolution of a simulated British Magnox waste glass is governed by two pH-dependent processes. At low pH, dissolution is governed by reactions occurring predominantly at non-Si sites and residual Si-rich gels develop at the glass surface as B, Al and modifier cations are selectively leached. Here, extensive proton promoted hydrolysis of B-O and Al-O bonds is coupled with hydration and ion exchange processes. Hydrolysis of siloxane bonds governs the rate of dissolution at high pH and the glass dissolves congruently as the silicate network breaks down extensively. Differences in the surface chemistries and morphologies of glass samples reacted in strongly acidic and highly alkaline media reflect the net effects of these processes. The rate of the congruent dissolution process is influenced by the activity of silicic acid, The results are compared with published data for other glass formulations and are discussed in the context of proposed kinetic dissolution models. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 53]
机译:模拟的英国Magnox废玻璃的溶解取决于两个pH依赖的过程。在低pH值下,溶解受主要发生在非Si位点的反应控制,并且随着B,Al和改性剂阳离子的选择性浸出,残留的富Si凝胶在玻璃表面形成。在此,大量的质子促进的B-O和Al-O键水解与水合和离子交换过程结合在一起。硅氧烷键的水解决定了在高pH条件下的溶解速率,并且随着硅酸盐网络的大量破坏,玻璃会完全溶解。在强酸性和强碱性介质中反应的玻璃样品的表面化学和形态的差异反映了这些过程的净效应。完全溶解过程的速率受硅酸活性的影响。将结果与其他玻璃配方的公开数据进行比较,并在提出的动力学溶解模型的背景下进行讨论。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:53]

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