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首页> 外文期刊>Journal of the European Ceramic Society >A versatile monazite-IPG glass-ceramic waste form with simulated HLW: Synthesis and characterization
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A versatile monazite-IPG glass-ceramic waste form with simulated HLW: Synthesis and characterization

机译:具有模拟HLW的多用途独居石-IPG玻璃陶瓷废料形式:合成与表征

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摘要

In Ca doped CePO4 monazite (viz., Ce0.8Ca0.2PO4) cerium exhibits mixed valence state (+3 and +4) and therefore can accommodate cations of any valence (by converting Ce3+ to Ce4+ or vice versa) subject to the size and other restrictions. A simulated waste form prepared based on the versatile monazite phase, Ce0.8Ca0.2PO4, showed higher leaching for Cs and Mo indicating that these elements do not enter the monazite lattice. Iron phosphate glass (IPG) is an alternate glass waste form considered for HLW immobilization. A glass-ceramic composite of crystalline monazite and IPG could have synergistic effects and can improve the leaching resistance. The preparation and characterization of a versatile monazite-IPG glass-ceramic waste form with 20 wt.% simulated HLW oxides and its leaching behavior are reported in this paper. The monazite-IPG glass-ceramic simulated waste form is found to have excellent chemical durability. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在Ca掺杂的CePO4独居石(即Ce0.8Ca0.2PO4)中,铈表现出混合价态(+3和+4),因此可以容纳任何价态的阳离子(通过将Ce3 +转换为Ce4 +或相反),取决于大小和其他限制。基于通用独居石相Ce0.8Ca0.2PO4制备的模拟废物形式显示出较高的Cs和Mo浸出,表明这些元素未进入独居石晶格。磷酸铁玻璃(IPG)是一种可替代的玻璃废料,可用于固定HLW。结晶独居石和IPG的玻璃陶瓷复合材料具有协同作用,可以提高耐浸出性。本文报道了一种含有20 wt。%的模拟HLW氧化物的通用独居石-IPG玻璃陶瓷废料的制备和表征,及其浸出行为。发现独居石-IPG玻璃陶瓷模拟废料具有出色的化学耐久性。 (C)2015 Elsevier Ltd.保留所有权利。

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