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Interaction Of Bentonite With Supercritically Carbonated Concrete

机译:膨润土与超临界碳化混凝土的相互作用

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Bentonite and concrete are essential components in construction of a geological high level nuclear waste (HLNW) repository. Conventional Ordinary Portland Cement (OPC) used for concretes gives a pore water leachate with a pH as high as 13.5 in contact with ground water. This alkaline plume of leaching waters might perturb the engineered barrier system, which might include bentonite buffer, backfill material or the near-field host rock. The accepted solution to maintain the bentonite stability, which is controlled by the pH, is to develop cementitious materials with pore water pH around 11. Four lixiviation experiments representative of long-term interaction of solids and pore fluids at the concrete/bentonite interface were performed with two types of cement paste, Portland and calcium aluminate cement, before and after being carbonated under supercritical conditions, with granite water at 80 °C. The evolution of the pH indicates that the supercritical carbonation reduced the alkalinity of the cement pastes and calcite likely controls the equilibrium of Ca at the end of the experiments. The bentonite helps to buffer the alkalinity of concrete leachates through several reactions such as dissolution of montmorillonite and precipitation of secondary products as trioctahedral smectite, zeolites (gismondine), and presumably Mg hydroxides and amorphous gels. Carbonation may reduce propagation of the alkaline plume and enhance the barrier performance.
机译:膨润土和混凝土是地质高级核废料(HLNW)储存库建设中必不可少的组成部分。用于混凝土的常规普通波特兰水泥(OPC)与地下水接触后,可提供pH值高达13.5的孔隙水渗滤液。浸出水的这种碱性羽状流可能会扰动工程屏障系统,其中可能包括膨润土缓冲液,回填材料或近场基质岩。维持膨润土稳定性的可接受方法是,用pH值控制膨润土的发展,以开发胶结性材料,孔隙水的pH值约为11。进行了四个浸透实验,这些实验代表了固体/孔隙流体在混凝土/膨润土界面的长期相互作用在80°C的花岗岩水中,在超临界条件下进行碳化之前和之后,均使用波特兰水泥和铝酸钙水泥两种水泥浆。 pH的变化表明,超临界碳酸化作用降低了水泥浆的碱度,在实验结束时方解石可能控制了Ca的平衡。膨润土可通过多种反应来缓冲混凝土渗滤液的碱度,例如蒙脱石的溶解和副产物的沉淀,如次八面体蒙脱石,沸石(吉斯达宁)以及大概的氢氧化镁和无定形凝胶。碳酸化可以减少碱性羽流的扩散并增强阻隔性能。

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