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Modelisation of chloride reactive transport in concrete including thermodynamic equilibrium, kinetic control and surface complexation

机译:混凝土中氯反应性运输的型号,包括热力学平衡,动力控制和表面络合

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摘要

In this study, a new physically and chemically based model taking into account thermodynamic equilibrium, kinetics and surface complexation is proposed to predict the ingress of chloride ions into saturated concretes. The numerical results of this multi-ionic model are compared to experimental data such as total and free chloride concentration profiles and chloride binding isotherms. With only one set of parameters, the results show very good agreement for chloride binding isotherm of concretes with different w/b, types of binders (CEM I, CEM III, and CEM I with fly ash) and various exposure conditions (NaCl solution at different concentrations). Such a model overcomes the use of empirical chloride binding isotherms that can be difficult to asses for concretes with supplementary cementitious materials. The very good results underline the need to take into account all the physical and chemical phenomena included in the model.
机译:在本研究中,提出了一种考虑热力学平衡,动力学和表面络合的新的物理和化学基础模型,以预测氯离子进入饱和混凝土。 将该多离子模型的数值结果与实验数据进行比较,例如总和氯化物浓度谱和氯化物结合等温线。 只有一组参数,结果表明,氯化物结合等温仪的混凝剂与不同w / b的相吻合非常好,粘合剂类型(CEM I,CEM III和CEM I与粉煤灰)和各种暴露条件(NaCl溶液 不同浓度)。 这种模型克服了使用经验氯化物结合等温线,这可能难以赋予具有补充水泥材料的混凝土。 非常好的结果强调需要考虑模型中包含的所有物理和化学现象。

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