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Resistance to carbonation of concrete after re-alkalization by absorption of sodium carbonate solution

机译:通过吸收碳酸钠溶液而重新碱化后的混凝土抗碳化性

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The paper presents experimental research on the durability of a non-conventional technique for the repair of reinforced concrete damaged by carbonation-induced corrosion of steel reinforcement. The technique is called electrochemical re-alkalization and is often considered as an option for the repair of buildings, structures, and other artefacts made of reinforced concrete, for which conservation requirements are becoming increasingly important, in spite of their relatively young age. Absorption of a sodium carbonate solution is one of the processes that lead to concrete re-alkalization. The aim of the work is to investigate the contribution of this process to preventing future carbonation of re-alkalized concrete. Concrete specimens with six different compositions were initially carbonated, then re-alkalized through absorption of a sodium carbonate solution, and then exposed again to carbonation (re-carbonation). The results showed that the pH of concrete after re-carbonation was only slightly lower compared to that of re-alkalized concrete, highlighting a contribution of the treatment in preventing future pH reduction.
机译:本文提出了一种非常规技术的耐久性研究,该技术用于修复碳化引起的钢筋腐蚀而损坏的钢筋混凝土。该技术称为电化学再碱化,通常被认为是修复由钢筋混凝土制成的建筑物,结构和其他文物的一种选择,尽管其年龄相对较小,但对于养护的要求却越来越重要。碳酸钠溶液的吸收是导致混凝土重新碱化的过程之一。这项工作的目的是调查此过程对防止将来再碱化混凝土碳化的贡献。首先将具有六种不同成分的混凝土标本进行碳酸盐化,然后通过吸收碳酸钠溶液将其重新碱化,然后再次暴露于碳酸盐化(重新碳酸盐化)。结果表明,与重新碱化的混凝土相比,重新碳化后的混凝土的pH值仅略低,这突出了该处理对防止将来pH值降低的贡献。

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