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Effect of blastfurnace slag addition to Portland cement for cationic exchange resins encapsulation

机译:Blastfurnace Slag的影响加入阳离子交换树脂封装的波特兰水泥

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In the nuclear industry,cement-based materials are extensively used to encapsulate spent ion exchange resins (IERs) before their final disposal in a repository. It is well known that the cement has to be carefully selected to prevent any deleterious expansion of the solidified waste form,but the reasons for this possible expansion are not clearly established. This work aims at filling the gap. The swelling pressure of IERs is first investigated as a function of ions exchange and ionic strength. It is shown that pressures of a few tenths of MPa can be produced by decreases in the ionic strength of the bulk solution,or by ion exchanges (2Na~+ instead of Ca~(2+),Na~+ instead of K~+). Then,the chemical evolution of cationic resins initially in the Na~+ form is characterized in CEM I (Portland cement) and CEM III (Portland cement + blastfurnace slag) cements at early age and an explanation is proposed for the better stability of CEM III material.
机译:在核工业中,水泥基材料广泛用于在储存库中的最终处置之前封装废离子交换树脂(IERS)。众所周知,水泥必须仔细选择以防止凝固废物形式的任何有害膨胀,但不明确建立这种可能扩张的原因。这项工作旨在填补差距。首先作为离子交换和离子强度的函数研究IER的溶胀压力。结果表明,通过块状溶液的离子强度或通过离子交换(2NA〜+代替Ca〜(2 +),Na〜+而不是k〜+,可以通过降低来产生几十MPa的压力)。然后,最初在Na〜+形式中的阳离子树脂的化学进化的特征在于,在休息时期的CEM I(Portland Cement)和CEM III(Portland Cement + Blastfurnace渣)水泥中,提出了较为CEM III的稳定性的解释材料。

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