Page 10 - April-Month
P. 10

TECHNICAL PAPER



             amino alcohol-based inhibitors used to control corrosion of   [27]  Monticelli, C., Frignani, A., Balbo, A., &Zucchi, F. (2011).
             reinforcing steel”. Electrochimicaacta, Vol. 49, No. 17-18,    “Influence of two specific inhibitors on steel corrosion in a
             pp. 2753-2760.                                         synthetic solution simulating a carbonated concrete with
                                                                    chlorides”. Materials and Corrosion, Vol. 62, No. 2,
         [13]  Holloway, L., Nairn, K., & Forsyth, M. (2004). “Concentration
             monitoring and performance of a migratory corrosion    pp. 178-186.
             inhibitor in steel-reinforced concrete”. Cement and concrete   [28]  Nmai, C. K. (2004). “Multi-functional organic corrosion
             research, Vol.34, No. 8, pp. 1435-1440.                inhibitor”. Cement and Concrete Composites, Vol. 26,
                                                                    No. 3, pp. 199-207.
         [14]  Rakanta, E., Zafeiropoulou, T., &Batis, G. (2013). “Corrosion
             protection of steel with DMEA-based organic inhibitor”.    [29]  Montemor, M. F., Cunha, M. P., Ferreira, M. G., & Simões, A.
             Construction and Building Materials, Vol. 44,  pp. 507-513.  M. (2002). “Corrosion behaviour of rebars in fly ash mortar
         [15]  Gaidis, J. M. (2004). “Chemistry of corrosion inhibitors.    exposed to carbon dioxide and chlorides”. Cement and
             Cement and Concrete Composites”, Vol. 26, No. 3,       Concrete Composites, Vol. 24, No. 1, pp. 45-53.
             pp. 181-189.                                       [30]  Jamil, H. E., Shriri, A., Boulif, R., Bastos, C., Montemor, M.
                                                                    F., & Ferreira, M. G. S. (2004). “Electrochemical behaviour of
         [16]  Ormellese, M., Bolzoni, F., Perez, E. R., &Goidanich, S. (2007).   amino alcohol-based inhibitors used to control corrosion of
             “Migrating Corrosion Inhibitors for Reinforced Concrete
             Structures”. In Int. Conf. Corrosion/07, NACE, pp. 1-16.  reinforcing steel”. Electrochimica acta, Vol. 49, No.17-18,
                                                                    pp.  2753-2760.
         [17]  Vyrides, E. Rakanta, T. Zafeiropoulou and G. Batis. (2013)
             “Efficiency of Amino Alcohols as Corrosion Inhibitors in   [31]  IS 1786- 1985. (Reconfirmed 2004). “Indian Standard
                                                                    Specification for High Strength Deformed Steel Bars and
             Reinforced Concrete”.  Open Journal of Civil Engineering,   Wires for Concrete Reinforcement.” Bureau of Indian
             Vol. 3, No. 2A, pp. 1-8.
                                                                    Standards, New Delhi, India.
         [18]  Gaidis M. J. (2004).“Chemistry of corrosion inhibitors”. Cement
             and Concrete Composites. Vol. 26, No. 3, pp. 181-189.   [32]  ASTM G 109 -99a. (Reapproved 2005). “Standard test
                                                                    method for determining the effects of chemical admixtures
         [19]  Yohai, L., Valcarce, M. B., &Vázquez, M. (2016). “Testing   on the corrosion of embedded steel reinforcement in
             phosphate ions as corrosion inhibitors for construction steel   concrete exposed to chloride environments.” American
             in mortars”. ElectrochimicaActa, Vol. 202, pp. 316-324.  Society of Testing and Materials, Philadelphia.
         [20]  Söylev, T. A., & Richardson, M. G. (2008). “Corrosion inhibitors   [33]  ASTM C 876-91. (Reapproved 1999). “Standard Test Method
             for steel in concrete: State-of-the-art report”. Construction   for Half-cell Potentials of Uncoated Reinforcing Steel in
             and Building Materials, Vol. 22, No. 4, pp. 609-622.   Concrete.” American Society of Testing and Materials,
         [21]  Söylev, T. A., McNally, C., & Richardson, M. (2007). “Effectiveness     Philadelphia.
             of amino alcohol-based surface-applied corrosion inhibitors  [34]  Kapat, C., Pradhan, B., &Bhattacharjee, B. (2006).
             in chloride-contaminated concrete”. Cement and concrete   “Potentiostatic study of reinforcing steel in chloride
             research, Vol. 37, No. 6, pp. 972-977.                 contaminated concrete powder solution extracts”. Corrosion
         [22]  Saraswathy, V., Muralidharan, S., Kalyanasundaram, R. M.,    science, Vol. 48,No. 7, pp. 1757-1769.
             Thangavel, K., &Srinivasan, S. (2001). “Evaluation of   [35]  Pradhan, B., & Bhattacharjee, B. (2009). Half-cell potential as
             a composite corrosion-inhibiting admixture and its     an indicator of chloride-induced rebar corrosion initiation in
             performance in concrete under macrocell corrosion      RC. Journal of Materials in Civil Engineering, Vol. 21,No. 10,
             conditions”. Cement and Concrete Research, Vol. 31,    pp. 543-552.
             No. 5, pp. 789-794.
                                                                [36]  Sheban, M., Abu-Dalo, M., Ababneh, A. and Andreescu, S.,
         [23]  Trabanelli, G., Monticelli, C., Grassi, V., &Frignani, A. (2005).   (2007). “Effect of benzotriazole derivatives on the corrosion
             “Electrochemical study on inhibitors of rebar corrosion in   of steel in simulated concrete pore solutions”. Anti-Corrosion
             carbonated concrete”. Cement and Concrete Research,    Methods and Materials, Vol. 54, No. 3, pp.135-147.
             Vol. 35, No. 9, pp. 1804-1813.
                                                                [37]  Ababneh, Ayman N., Mashal A. Sheban, and Muna A. Abu-
         [24]  IS 8112- 1989. (Reconfirmed 2013). “Specification for 43   Dalo. (2012). “Effectiveness of Benzotriazole as Corrosion
             Grade Ordinary Portland Cement.” Bureau of Indian      Protection Material for Steel Reinforcement in Concrete.”
             Standards, New Delhi, India.                           Journal of Materials in Civil Engineering, Vol. 24, No. 2,
         [25]  IS 383-1970. (Reconfirmed 2002) “Specification for Coarse   pp. 141–51.
             and Fine Aggregates from Natural sources for concrete”.   [38]  Trabanelli, G., C. Monticelli, V. Grassi, and A. Frignani. (2005).
             Bureau of Indian Standards, New Delhi, India.          “Electrochemical Study on Inhibitors of Rebar Corrosion in
         [26]  Heiyantuduwa, R., Alexander, M. G., &Mackechnie,     Carbonated Concrete.” Cement and Concrete Research,
             J. R. (2006). “Performance of a penetrating corrosion   Vol.  35, No. 9, pp. 1804-13.
             inhibitor in concrete affected by carbonation-induced   [39]  Nmai, Charles K. (2004). “Multi-Functional Organic Corrosion
             corrosion”. Journal of materials in civil engineering, Vol. 18,   Inhibitor.” Cement and Concrete Composites, Vol.  26, No. 3,
             No. 6, pp. 842-850.                                    pp. 199–207.


      36    THE INDIAN CONCRETE JOURNAL | APRIL 2021
   5   6   7   8   9   10   11   12