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Improvement corrosion properties of reinforcement concrete by corrosion inhibitors: A brief review


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Meira G.R.; Andrade C.; Alonso C; Padaratz I; Borba J.; Modelling sea-salt transport and deposition in marine atmosphere zone – A tool for corrosion studies. Corrosion Science 2008, 50. Search in Google Scholar

Shaymaa A. A.; Bak R.; Heczel A.; Tamás I.T.; Corrosion studies on XD3 reinforced concrete samples prepared by using calcium nitrate as inorganic corrosion inhibitor with different superplasticizers. KOM – Corrosion and Material Protection Journal 2020, 64, 11-18. Search in Google Scholar

Söylev T.A.; Richardson M.; Corrosion inhibitors for steel in concrete: State-of-the-art report. Construction and Building Materials 2008, 22, 609-22. Search in Google Scholar

Ghahari S.; Ramezanianpour A.; Ramezanianpour A.; Esmaeili M.; An accelerated test method of simultaneous carbonation and chloride ion ingress: durability of silica fume concrete in severe environments. Advances in Materials Science and Engineering 2016, 2016. Search in Google Scholar

Shaymaa A. A.; Al-Mosawi A. I.; Analysis of corrosion rate; inhibition efficiency; and economic cost of XD3 reinforced concrete related to inhibitor and plasticiser types. Eng. Res. Express 2023. Search in Google Scholar

Shaymaa A. A.; Tamás I.T.; Éva F.; Preliminary corrosion testing of steel rebar samples in 3.5%NaCl solution with and without a green inhibitor. Építőanyag-Journal of Silicate Based and Composite Materials 2018, 70, 48-53. Search in Google Scholar

Shaymaa A. A.; Éva F.; Tamás I.T.; Corrosion testing on steel reinforced XD3 concrete samples prepared with a green inhibitor and two different superplasticizers; Materials and Corrosion 2019, 70. Search in Google Scholar

Peter C. H.; Harald J.; Rodney M. E.; 14 – Cement and Concrete Admixtures; Editor(s): Peter C. Hewlett; Martin L.; Lea’s Chemistry of Cement and Concrete (5th Edition), Butterworth-Heinemann 2019, 641-698, ISBN 9780081007730. Search in Google Scholar

Shaymaa A. A.; Éva F.; Tamás I.T.; Corrosion studies of steel rebar samples in neutral sodium chloride solution also in presence of a bio-based (green) inhibitor, International Journal of Corrosion and Scale Inhibition 2018, 7. Search in Google Scholar

Garcés P.; Saura P.; Zornoza E.; Andrade C.; Influence of pH on the nitrite corrosion inhibition of reinforcing steel in simulated concrete pore solution. Corrosion Science 2011, 53, 3991-4000. Search in Google Scholar

Aguiar J.B.; Júnior C.; Carbonation of surface protected concrete. Construction and Building Materials 2013, 49, 478-83. Search in Google Scholar

Marques P.F.; Chastre C.; Nunes Â.; Carbonation service life modelling of RC structures for concrete with Portland and blended cements. Cement and Concrete Composites 2013, 37, 171-84. Search in Google Scholar

Šavija B.; Luković M.; Carbonation of cement paste: Understanding; challenges; and opportunities. Construction and Building Materials 2016, 117, 285-301. Search in Google Scholar

Marie-Victoire E.; Cailleux E.; Texier A. editors; Carbonation and historical buildings made of concrete. Journal de Physique IV (Proceedings), 2006: EDP sciences. Search in Google Scholar

Jiang J-y. et al.; The passive film growth mechanism of new corrosion-resistant steel rebar in simulated concrete pore solution: Nanometer structure and electrochemical study. Materials 2017, 10, 412. Search in Google Scholar

Li Z.; Jin Z.; Wang P.; Zhao T.; Corrosion mechanism of reinforced bars inside concrete and relevant monitoring or detection apparatus: A review. Construction and Building Materials 2021, 279, 122432. Search in Google Scholar

Kim J.; McCarter W.J.; Suryanto B.; Nanukuttan S.; Basheer P.M.; Chrisp T.M. Chloride ingress into marine exposed concrete: A comparison of empirical-and physically-based models. Cement and Concrete Composites 2016, 72, 133-45. Search in Google Scholar

Shaymaa A. A.; Tamás I.T.; Studying chloride ions and corrosion properties of reinforced concrete with a green inhibitor and plasticizers; Structural Concrete 2020, 21, 1894-1904. Search in Google Scholar

Association P.C.; Types and causes of concrete deterioration. Portland Cement Association: Skokie; IL; USA. 2002. Search in Google Scholar

Koleva D.; Van Breugel K.; De Wit J.; Van Westing E.; Boshkov N.; Fraaij A.; Electrochemical behavior; microstructural analysis; and morphological observations in reinforced mortar subjected to chloride ingress. Journal of the Electrochemical Society 2007, 154, E45. Search in Google Scholar

Li C.; Lawanwisut W.; Zheng J.; Kijawatworawet W.; Crack width due to corroded bar in reinforced concrete structures. International Journal of Materials & Structural Reliability 2005, 3, 87-94. Search in Google Scholar

Shaymaa A. A.; Tamás I.T.; Investigations on the resistivity of XD3 reinforced concrete for chloride ions and corrosion with calcium nitrate inhibitor and superplasticizers; Cement Wapno Beton 2020, 25, 330-343. Search in Google Scholar

Bjegovic D.; Miksic B.; Migrating corrosion inhibitor protection of concrete. Materials Performance 1999, 38. Search in Google Scholar

Shen M.; Furman A.; Hansen A. editors; Protecting Concrete Reinforcement Using Admixture with Migrating Corrosion Inhibitor and Water Repellent Component. NACE CORROSION, 2014: NACE. Search in Google Scholar

Bavarian B.; Reiner L.; Migrating corrosion inhibitor protection of steel rebar in concrete. Materials Performance 2003, 42, 3-5. Search in Google Scholar

Shaymaa A. A.; Ferenc K.; Tamás I. T.; Distribution of corrosion products at the steel-concrete interface of XD3 concrete samples. Magazine of Civil Engineering 2020, 100, 10005. Search in Google Scholar

Lee H-S.; Saraswathy V.; Kwon S-J.; et al.; Corrosion Inhibitors for Reinforced Concrete: A Review. Corrosion Inhibitors; Principles and Recent Application, 2018, ISBN978-953-51-3918-8 Search in Google Scholar

Umoren S.A.; Solomon M.M.; Obot I.B.; Suleiman R.K.; A critical review on the recent studies on plant biomaterials as corrosion inhibitors for industrial metals. Journal of Industrial and Engineering Chemistry 2019, 76, 91-115. Search in Google Scholar

Liu Y.; Song Z.; Wang W.; Jiang L.; Zhang Y.; Guo M. et al.; Effect of ginger extract as green inhibitor on chlorideinduced corrosion of carbon steel in simulated concrete pore solutions. Journal of Cleaner Production 2019, 214, 298-307. Search in Google Scholar

Shaymaa A. A.; Al-Mosawi A. I.; Using of nucleus dates waste with a nanoscale particles as a green inhibitor; International Journal of Mechanical & Mechatronics Engineering 2016, 16, 27-32. Search in Google Scholar

Miralrio A.; Espinoza Vázquez A.; Plant extracts as green corrosion inhibitors for different metal surfaces and corrosive media: a review. Processes 2020, 8, 942. Search in Google Scholar

Faiz M.; Zahari A.; Awang K.; Hussin H.; Corrosion inhibition on mild steel in 1 M HCl solution by Cryptocarya nigra extracts and three of its constituents (alkaloids). RSC Advances 2020, 10, 6547-62. Search in Google Scholar

Zhang Z.; Wang F.; Liu Y.; Wu S.; Li W.; Sun W.; Guo D.; Jiang J.; Molecule adsorption and corrosion mechanism of steel under protection of inhibitor in a simulated concrete solution with 3.5% NaCl; RSC Advances 2018, 8, 20648-20654. Search in Google Scholar

Baitule P.; Victoria S.; Manivannan R.; editors; Review on assessment of corrosion of mild steel in alkaline environment by using plant extract. IOP Conference Series: Materials Science and Engineering 2021: IOP Publishing. Search in Google Scholar

Majd M..T; Ramezanzadeh M.; Bahlakeh G.; Ramezanzadeh B.; Steel corrosion lowering in front of the saline solution by a nitrogen-rich source of green inhibitors: Detailed surface; electrochemical and computational studies. Construction and Building Materials 2020, 254, 119266. Search in Google Scholar

Batis G.; Pantazopoulou P.; Routoulas A.; Corrosion protection investigation of reinforcement by inorganic coating in the presence of alkanolamine-based inhibitor. Cement and Concrete Composites 2003, 25, 371-7. Search in Google Scholar

Sun C.; Chen M.; Zheng H.; Zhang P.; Li Y.; Hou B.; The effect of amino-alcohol-based corrosion inhibitors on concrete durability. Canadian Journal of Civil Engineering 2019, 46, 771-6. Search in Google Scholar

Mechmeche L.B.; Dhouibi L.; Ouezdou M.B.; Triki E.; Zucchi F.; Investigation of the early effectiveness of an amino-alcohol based corrosion inhibitor using simulated pore solutions and mortar specimens. Cement and Concrete Composites 2008, 30, 167-73. Search in Google Scholar

Trépanier S.; Hope B.; Hansson C.; Corrosion inhibitors in concrete: Part III. Effect on time to chloride-induced corrosion initiation and subsequent corrosion rates of steel in mortar. Cement and concrete research 2001, 31, 713-8. Search in Google Scholar

Wombacher F.; Maeder U.; Marazzani B.; Aminoalcohol based mixed corrosion inhibitors. Cement and Concrete Composites 2004, 26, 209-16. Search in Google Scholar

Shi J-j; Sun W.; Electrochemical and analytical characterization of three corrosion inhibitors of steel in simulated concrete pore solutions. International Journal of Minerals; Metallurgy; and Materials 2012, 19, 38-47. Search in Google Scholar

Tritthart J.; Transport of a surface-applied corrosion inhibitor in cement paste and concrete. Cement and Concrete Research 2003, 33, 829-34. Search in Google Scholar

Osial M.; Wiliński D.; Organic substances as corrosion inhibitors for steel in concrete – an overview; Journal of Building Chemistry 2016, 1, 43-53. Search in Google Scholar

Monteiro E.B.; de Melo H.J.B.; da Silva Bezerra J.; de Moura Barros É.P.; de Azevêdo Demétrio Filho A.; A case study about a patch repair with aminoalcohol inhibitor in a concrete structure. EJGE 2015, 20, 4417-28. Search in Google Scholar

Sagoe-Crentsil K.; Yilmaz V.; Glasser F.P.; Corrosion inhibition of steel in concrete by carboxylic acids. Cement and Concrete Research 1993, 23, 1380-8. Search in Google Scholar

eISSN:
1804-1213
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Industrial Chemistry, Chemical Engineering, Materials Sciences, Ceramics and Glass