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    Influence of Sulfates on Chloride Diffusion and Chloride-Induced Reinforcement Corrosion in Limestone Cement Materials at Low Temperature

    Source: Journal of Materials in Civil Engineering:;2017:;Volume ( 029 ):;issue: 008
    Author:
    Konstantinos Sotiriadis
    ,
    Eleni Rakanta
    ,
    Maria Eleni Mitzithra
    ,
    George Batis
    ,
    Sotirios Tsivilis
    DOI: 10.1061/(ASCE)MT.1943-5533.0001895
    Publisher: American Society of Civil Engineers
    Abstract: An ordinary portland cement and two portland limestone cements [15 and 35% weight-to-weight ratio (w/w) limestone content] were used for concrete and reinforced mortar specimens preparation. The specimens were exposed to two corrosive solutions (chloride sulfate and chloride) at 5°C. Total (acid-soluble) and free (water-soluble) chloride contents, and apparent chloride diffusion coefficients, were determined in concrete specimens. Reinforcement corrosion half-potential and current density, mass loss of steel rebars, and carbonation depth were measured in mortar specimens. Limestone cements showed very good behavior, although the environments were very corrosive. Total and free chloride ions concentration increased with exposure time and limestone content. Limestone cements showed less capability of binding chlorides than pure portland cement. The cement with low limestone content was the most effective in preventing reinforcement corrosion during mortar exposure to the combined chloride-sulfate solution, although it allowed the most intensive corrosion in the case of the chloride-bearing solution. The presence of sulfates led to higher chloride ion concentrations, less chloride binding and, generally, higher values of chloride diffusion coefficient, and also promoted reinforcement corrosion to a greater extent. Low temperature conditions retained a relatively low corrosion rate.
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      Influence of Sulfates on Chloride Diffusion and Chloride-Induced Reinforcement Corrosion in Limestone Cement Materials at Low Temperature

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    contributor authorKonstantinos Sotiriadis
    contributor authorEleni Rakanta
    contributor authorMaria Eleni Mitzithra
    contributor authorGeorge Batis
    contributor authorSotirios Tsivilis
    date accessioned2017-12-16T09:02:23Z
    date available2017-12-16T09:02:23Z
    date issued2017
    identifier other%28ASCE%29MT.1943-5533.0001895.pdf
    identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4237760
    description abstractAn ordinary portland cement and two portland limestone cements [15 and 35% weight-to-weight ratio (w/w) limestone content] were used for concrete and reinforced mortar specimens preparation. The specimens were exposed to two corrosive solutions (chloride sulfate and chloride) at 5°C. Total (acid-soluble) and free (water-soluble) chloride contents, and apparent chloride diffusion coefficients, were determined in concrete specimens. Reinforcement corrosion half-potential and current density, mass loss of steel rebars, and carbonation depth were measured in mortar specimens. Limestone cements showed very good behavior, although the environments were very corrosive. Total and free chloride ions concentration increased with exposure time and limestone content. Limestone cements showed less capability of binding chlorides than pure portland cement. The cement with low limestone content was the most effective in preventing reinforcement corrosion during mortar exposure to the combined chloride-sulfate solution, although it allowed the most intensive corrosion in the case of the chloride-bearing solution. The presence of sulfates led to higher chloride ion concentrations, less chloride binding and, generally, higher values of chloride diffusion coefficient, and also promoted reinforcement corrosion to a greater extent. Low temperature conditions retained a relatively low corrosion rate.
    publisherAmerican Society of Civil Engineers
    titleInfluence of Sulfates on Chloride Diffusion and Chloride-Induced Reinforcement Corrosion in Limestone Cement Materials at Low Temperature
    typeJournal Paper
    journal volume29
    journal issue8
    journal titleJournal of Materials in Civil Engineering
    identifier doi10.1061/(ASCE)MT.1943-5533.0001895
    treeJournal of Materials in Civil Engineering:;2017:;Volume ( 029 ):;issue: 008
    contenttypeFulltext
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