2013
DOI: 10.1016/j.egypro.2013.07.201
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I-129 Waste form Using Bi-Zn-P-Oxide Glass

Abstract: I-129 is a problematic nuclide generated from the recycling of spent fuel by pyroprocess. Gaseous form of radiogenic iodine is trapped by using silver exchanged zeolite (AgX) at Korea Atomic Energy Research Institute (KAERI). We developed the low melting temperature glass system based on Bi 2 O 3 -P 2 O 5 composition. Various additives were added to modify glass properties. We found that ingots containing AgI are formed with ZnO, CaCO 3 , MgO, and Na 2 CO 3 at around 600Analysis of microstructure and chemical … Show more

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“…The durability of phosphate glasses can be improved without significantly raising melt temperatures, by substitution of a portion of the P 2 O 5 with Bi 2 O 3 (<40 mol%) or ZnO [Shih 2001, Takebe 2006. For example, the KAERI group published a study on 129 I waste encapsulation using Bi-M-P (M = Zn, Ca, Mg, Na) oxide glasses [Yang 2013]. Compositions were varied to identify the glass-forming regimes: Bi 2 O 3 between 0-30 mol%, ZnO between 0-30%, and P 2 O 5 <60%.…”
Section: Phosphate Glassmentioning
confidence: 99%
“…The durability of phosphate glasses can be improved without significantly raising melt temperatures, by substitution of a portion of the P 2 O 5 with Bi 2 O 3 (<40 mol%) or ZnO [Shih 2001, Takebe 2006. For example, the KAERI group published a study on 129 I waste encapsulation using Bi-M-P (M = Zn, Ca, Mg, Na) oxide glasses [Yang 2013]. Compositions were varied to identify the glass-forming regimes: Bi 2 O 3 between 0-30 mol%, ZnO between 0-30%, and P 2 O 5 <60%.…”
Section: Phosphate Glassmentioning
confidence: 99%