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C10H18N2Na2O10 inhibition and adsorption mechanism on concrete steel-reinforcement corrosion in corrosive environments

机译:C10H18N2Na2O10在腐蚀环境下对钢筋混凝土腐蚀的抑制和吸附机理

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摘要

C10H18N2Na2O10 (ethylenediaminetetra-acetic acid disodium salt) inhibition and adsorption mechanism on the corrosion of steel-reinforcement corrosion in concrete immersed in corrosive environments were investigated in this paper. For this, seven different concentrations ranging from 0% to 0.667% C10H18N2Na2O10 per weight of cement were admixed in steel-reinforced concretes immersed in saline and in acidic sulphate test-media and these were monitored using electrochemical techniques. Statistical analyses of the scatter of measured data from these, as per ASTM G16-95 R04, showed that C10H18N2Na2O10 > 0% admixtures portrayed excellent efficiency at inhibiting steel-reinforcement corrosion in the saline environment. However, attaining comparably high inhibition of steel-reinforcement corrosion in concrete immersed in the acidic sulphate environment exhibited greater dependency on high C10H18N2Na2O10 admixture concentration in the steel-reinforced concretes. Different models of adsorption isotherms bear indications of chemical adsorption, chemisorptions, as the prevalent adsorption mechanism of C10H18N2Na2O10 on steel-reinforcement in both of the corrosive environments.
机译:研究了C10H18N2Na2O10(乙二胺四乙酸二钠盐)对腐蚀环境下混凝土中钢筋腐蚀的抑制和吸附机理。为此,将七种不同浓度的C10H18N2Na2O10水泥从0%到0.667%的每重量比掺入浸泡在盐水和酸性硫酸盐测试介质中的钢筋混凝土中,并使用电化学技术进行监测。根据ASTM G16-95 R04对来自这些测量数据的分散性进行统计分析,结果表明,C10H18N2Na2O10> 0%的混合物在盐水环境中具有出色的抑制钢筋腐蚀的效率。但是,在酸性硫酸盐环境中浸入混凝土中获得对钢筋腐蚀的抑制作用比较高时,表现出对钢筋混凝土中高C10H18N2Na2O10外加剂浓度的更大依赖性。吸附等温线的不同模型具有化学吸附,化学吸附的迹象,这是由于C10H18N2Na2O10在两种腐蚀环境下对钢筋的普遍吸附机理。

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    Okeniyi, Joshua Olusegun;

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  • 年度 2016
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