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Physico-chemical interactions at the concrete-bitumen interface of nuclear waste repositories

机译:核废料储存库混凝土筛选界面的物理化学相互作用

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This study investigates the fate of nitrate and organic acids at the bitumen-concrete-steel interface within a repository storage cell for long-lived,intermediate-level,radioactive wastes. The interface was simulated by a multiphase system in which cementitious matrices (CEM V-paste specimens) were exposed to bitumen model leachates consisting of nitrates and acetic acid with and without oxalic acid,chemical compounds likely to be released by bitumen. Leaching experiments were conducted with daily renewal of the solutions in order to accelerate reactions. C-steel chips,simulating the presence of steel in the repository,were added in the systems for some experiments. The concentrations of anions (acetate,oxalate,nitrate,and nitrite) and cations (calcium,potassium,ammonium) and the pH were monitored over time. Mineralogical changes of the cementitious matrices were analysed by XRD. The results confirmed the stability of nitrates in the absence of steel,whereas,reduction of nitrates was observed in the presence of steel (production of NH_4~+). The action of acetic acid on the cementitious matrix was similar to that of ordinary leaching; no specific interaction was detected between acetate and cementitious cations. The reaction of oxalic acid with the cementitious phases led to the precipitation of calcium oxalate salts in the outer layer of the matrix. The concentration of oxalate was reduced by 65% inside the leaching medium.
机译:本研究探讨硝酸盐和有机酸的命运在一个储存库存储单元内的沥青混凝土钢接口,用于长寿命的,中间级,放射性废料。该界面由多相系统模拟,其中水泥质基(CEM V粘贴样本)暴露于由硝酸盐和乙酸组成的沥青模型渗滤液,其中没有草酸,可能通过沥青释放化学化合物。通过每日更新溶液进行浸出实验,以加速反应。在储存库中模拟钢的存在,在系统中加入C钢芯片,以进行一些实验。随着时间的推移监测阴离子(醋酸盐,草酸盐,硝酸盐,硝酸盐)和阳离子(钙,钾,铵)和pH的浓度。通过XRD分析水泥基质的矿物学变化。结果证实了硝酸盐在没有钢的情况下的稳定性,而在钢存在下观察到硝酸盐的减少(NH_4〜+的产生)。乙酸对水泥基质的作用类似于普通浸出的作用;在乙酸盐和水泥阳离子之间没有检测到特异性相互作用。草酸与水泥阶段的反应导致了基质外层中草酸钙盐的沉淀。在浸出介质内,草酸盐的浓度降低了65%。

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