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Sodium-aluminum-iron phosphate glasses as legacy high level waste forms

机译:磷酸铝铝铁玻璃是传统的高放废物形式

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Legacy liquid high level wastes (HLW) generated at former defense programs, which are under storage in stainless steel tanks at PA Mayak have high Fe/Al contents. They will be vitrified in a new EP-500J-heated ceramic melter, which is planned to be commissioned in 2016. Like previous melters of the same type, the new melter will produce aluminophosphate based glass. Due to high content of iron oxides in the HLW the glass obtained will have base sodium aluminum iron phosphate composition. Complex sodium aluminum iron phosphate glassy materials with various Al2O3 to Fe2O3 ratio containing high level waste (HLW) surrogate were designed, produced, and characterized by X-ray diffraction and scanning electron microscopy. The samples were annealed by a canister centerline cooling regime at the EP-500 plant. Addition of B2O3 and partial Fe2O3 substitution for Al2O3 in the materials increases resistance to devitrification whereas further substitution and Ni0 incorporation increase significantly tendency to devitrification. All the glasses had low leachability satisfying to Russian standard R 52126-2003 (similar to MCC-1 at 25 degrees C) but the glasses at Al2O3:Fe2O3 ratio close to 1 were found to be the highest chemically durable. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在国防部以前的计划中产生的传统液态高放废物(HLW)储存在PA Mayak的不锈钢罐中,铁/铝含量很高。它们将在新的EP-500J加热陶瓷熔化器中进行玻璃化,该熔化器计划于2016年投入使用。与以前相同类型的熔化器一样,新熔化器将生产基于铝磷酸盐的玻璃。由于HLW中氧化铁的含量高,所以所获得的玻璃将具有碱式钠铝磷酸铁组成。通过X射线衍射和扫描电子显微镜,设计,生产了具有高废铁含量的多种Al2O3与Fe2O3比的复合钠铝铁磷酸盐玻璃态材料。在EP-500工厂中,通过罐中心线冷却机制对样品进行退火。材料中B2O3的添加和部分Fe2O3替代Al2O3增强了抗失透性,而进一步的替代和Ni0的引入则显着提高了失透性。所有玻璃的浸出性均低,满足俄罗斯标准R 52126-2003(类似于25摄氏度下的MCC-1),但Al2O3:Fe2O3比接近1的玻璃具有最高的化学耐久性。 (C)2016 Elsevier Ltd.保留所有权利。

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