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The initial dissolution rates of simulated UK Magnox–ThORP blend nuclear waste glass as a function of pH, temperature and waste loading

机译:模拟英国Magnox-Thorp混合核废料玻璃的初始溶出速率作为pH,温度和废物负载的函数

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摘要

The first comprehensive assessment of the dissolution kinetics of simulant Magnox–ThORP blended UK high-level waste glass, obtained by performing a range of single-pass flow-through experiments, is reported here. Inherent forward rates of glass dissolution were determined over a temperature range of 23 to 70°C and an alkaline pH range of 8.0 to 12.0. Linear regression techniques were applied to the TST kinetic rate law to obtain fundamental parameters necessary to model the dissolution kinetics of UK high-level waste glass (the activation energy (E a), pH power law coefficient (η) and the intrinsic rate constant (k0)), which is of importance to the post-closure safety case for the geological disposal of vitreous products. The activation energies based on B release ranged from 55 ± 3 to 83 ± 9 kJ mol–1, indicating that Magnox–THORP blend glass dissolution has a surface-controlled mechanism, similar to that of other high-level waste simulant glass compositions such as the French SON68 and LAW in the US. Forward dissolution rates, based on Si, B and Na release, suggested that the dissolution mechanism under dilute conditions, and pH and temperature ranges of this study, was not sensitive to composition as defined by HLW-incorporation rate.
机译:在此报道,通过进行一系列单通流通实验获得的模拟Magnox-Thorp混合的溶出动力学的溶解动力学进行了第一综合评估。在23至70℃的温度范围和8.0至12.0的碱性pH范围内测定玻璃溶解的固有的前向速率。将线性回归技术应用于TST动力学法律,以获得模拟英国高级废玻璃的溶出动力学所需的基本参数(激活能量(E a),pH幂律系数(η)和本征率常数( K0))),这对玻璃产品的地质处理后的封闭件安全案件非常重要。基于B释放的激活能量范围为55±3至83±9 kJ摩尔-1,表明Magnox-Thorp混合玻璃溶解具有表面控制的机制,类似于其他高水平废物模拟玻璃组合物如法国SON68和美国的法律。基于Si,B和Na释放的正向溶出速率表明,稀释条件下的溶出机制和本研究的pH和温度范围,对由HLW掺入率定义的组合物不敏感。

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