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Kinetics of Zinc Corrosion in Concrete as a Function of Water and Oxygen Availability

机译:混凝土中锌腐蚀动力学与水和氧气利用率的关系

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摘要

This paper studies the effect of water as an oxidation agent and also of oxygen on zinc corrosion kinetics in active state in concrete, using high-sensitivity electrical resistance sensors. It was proven that zinc corrosion in active state is strongly affected by the presence of water at its surface. Zinc corrosion in real concrete in the absence of water can be misinterpreted as salt passivity. The presence of oxygen results in an increase of zinc corrosion rate, however at pH 12.6, passivity can occur. It was verified that corrosion products consisting primarily of Ca[Zn(OH)3]2·2H2O cannot effectively passivate zinc surface in concrete, even after 1800 h of exposure and zinc, or hot-dip galvanized steel can corrode at an unacceptable corrosion rate (more than 4 µm·a−1).
机译:本文使用高灵敏度电阻传感器研究了水作为氧化剂以及氧对活性状态下的锌腐蚀动力学的影响。事实证明,活性状态的锌腐蚀受到其表面水的存在的强烈影响。在没有水的情况下,真实混凝土中的锌腐蚀可被误认为是盐钝化。氧气的存在会导致锌腐蚀速率增加,但是在pH 12.6时会发生钝化。事实证明,即使在暴露了1800 h和锌后,主要由Ca [Zn(OH)3] 2·2H2O组成的腐蚀产物也不能有效地钝化混凝土中的锌表面,或者热浸镀锌钢会以不可接受的腐蚀速率腐蚀。 (大于4 µm·a -1 )。

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