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Analysis of Surface Alteration after Leaching Test of Simulated Radioactive Waste Glass Forms

机译:模拟放射性废玻璃形态浸出试验后的表面变化分析

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Leaching behavior is the major waste characteristic that is critical for a long-term assessment prior to disposal. The extent of leaching depends on the initial contact of the glass surface with leachant. There is a need to analyze the behavior of glass materials on surfaces altered after the leaching test to prove the leaching mechanism. Based on the results of SIMS, the postleaching penetration depth for sodium and lithium was larger than those of silicon and calcium while hydrogen concentration was gradually decreasing. Such analysis agreed with their grouping into two categories by leaching mechanisms, one by initial wash-off and diffusion control and another by dissolution associated with diffusion. Single and multilayer terraces on the surface of waste glass were found and characterized by SEM. In the XRD results, a crystallized precipitation layer was not detected. Results of a leaching mechanism model and EPMA measurements were also consistent in explaining the leaching behavior of glass materials. For sodium and lithium, diffusion was the dominant leaching mechanism, while dissolution associated with diffusion affects the leaching of silicon and calcium.
机译:浸出行为是主要的废物特征,这对于处置前的长期评估至关重要。浸出的程度取决于玻璃表面与浸出剂的初始接触。需要分析在浸出试验后改变的表面上的玻璃材料的行为,以证明浸出机理。根据SIMS的结果,钠和锂的浸出后渗透深度大于硅和钙的浸出后渗透深度,而氢浓度逐渐降低。此类分析通过浸出机理将其分为两类,一类是通过初始冲洗和扩散控制,另一类是与扩散相关的溶解。在废玻璃表面上发现了单层和多层平台,并用SEM进行了表征。在XRD结果中,未检测到结晶的沉淀层。浸出机理模型的结果和EPMA测量结果也与玻璃材料的浸出行为一致。对于钠和锂,扩散是主要的浸出机理,而与扩散相关的溶解会影响硅和钙的浸出。

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