A Review on Green Corrosion Inhibitors for Protection of Archeological Metal Artifacts
暂无分享,去创建一个
[1] Y. Reda,et al. Microstructural and mechanical properties of Al-Zn alloy 7075 during RRA and triple aging , 2022, Egyptian Journal of Petroleum.
[2] M. M. Khalaf,et al. Synthesis, experimental, and computational studies of water soluble anthranilic organoselenium compounds as safe corrosion inhibitors for J55 pipeline steel in acidic oilfield formation water , 2021 .
[3] A. Abdo,et al. The consequence of magnetic field on the parameters of brackish water in batch and continuous flow system , 2021 .
[4] A. El-Shamy,et al. Polyamide Coating as a Potential Protective Layer Against Corrosion of Iron Artifacts , 2021, Egyptian Journal of Chemistry.
[5] R. El-sherif,et al. Corrosion and Passivation Behaviors of Tin in Aqueous Solutions of Different pH , 2021, Journal of Bio- and Tribo-Corrosion.
[6] A. El-Shamy,et al. Ionic Liquid as Water Soluble and Potential Inhibitor for Corrosion and Microbial Corrosion for Iron Artifacts , 2021 .
[7] Y. Reda,et al. Fortification performance of polyurethane coating in outdoor historical ironworks , 2021 .
[8] M. M. Khalaf,et al. Synergistic inhibition effect of novel counterion-coupled surfactant based on rice bran oil and halide ion on the C-steel corrosion in molar sulphuric acid: Experimental and computational approaches , 2021 .
[9] R. El-sherif,et al. Quantum and electrochemical studies of the hydrogen evolution findings in corrosion reactions of mild steel in acidic medium , 2021, Upstream Oil and Gas Technology.
[10] S. D. Abayazeed,et al. Spheroidal weathering of basalt from Gebel Qatrani, Fayum Depression, Egypt , 2021 .
[11] M. M. Khalaf,et al. Advanced self-healing coatings based on ZnO, TiO2, and ZnO-TiO2/polyvinyl chloride nanocomposite systems for corrosion protection of carbon steel in acidic solutions containing chloride , 2020 .
[12] M. M. Khalaf,et al. Investigation of anti-corrosive potentials of Cu(II)–Schiff base complex assembled on magnetic Fe3O4, Fe3O4/TiO2 and Fe3O4/SiO2 nanocubes on carbon steel pipelines in 3.0 N HCl , 2020 .
[13] M. M. Khalaf,et al. Fabrication and characterization of alumina-silica/poly(o-toluidine) nanocomposites as novel anticorrosive epoxy coatings films on carbon steel , 2020 .
[14] K. Soliman,et al. Synthesis, assessment and corrosion protection investigations of some novel peptidomimetic cationic surfactants: Empirical and theoretical insights , 2020 .
[15] A. Nassef,et al. Statistical Analysis of the Inhibition of Carbon Steel Corrosion in 3.5 wt.% NaCl Solution Using Lawsonia Extract , 2020 .
[16] A. El-Shamy,et al. Selective Formula as A Corrosion Inhibitor to Protect the Surfaces of Antiquities Made of Leather-Composite Brass Alloy , 2020 .
[17] A. El-Shamy. A Review on: Biocidal Activity of Some Chemical Structures and Their Role in Mitigation of Microbial Corrosion , 2020, Egyptian Journal of Chemistry.
[18] H. M. El-Lateef,et al. Carboxymethyl cellulose/metal (Fe, Cu and Ni) nanocomposites as non-precious inhibitors of C-steel corrosion in HCl solutions: synthesis, characterization, electrochemical and surface morphology studies , 2020, Cellulose.
[19] A. Nassef,et al. Box-Behnken design to enhance the corrosion resistance of high strength steel alloy in 3.5 wt.% NaCl solution , 2020 .
[20] A. Nassef,et al. Optimization of the Influencing Variables on the Corrosion Property of Steel Alloy 4130 in 3.5 wt.% NaCl Solution , 2020, Journal of Chemistry.
[21] K. Soliman,et al. Novel synthesized cationic surfactants based on natural piper nigrum as sustainable-green inhibitors for steel pipeline corrosion in CO2-3.5%NaCl: DFT, Monte Carlo simulations and experimental approaches , 2020 .
[22] M. M. Khalaf,et al. Cationic gemini-surfactants based on waste cooking oil as new ‘green’ inhibitors for N80-steel corrosion in sulphuric acid: A combined empirical and theoretical approaches , 2020 .
[23] Y. Reda,et al. Instrument of chloride ions on the pitting corrosion of electroplated steel alloy 4130 , 2020 .
[24] El-Sayed M. Sherif,et al. Studies on the Antibacterial Influence of Two Ionic Liquids and their Corrosion Inhibition Performance , 2020, Applied Sciences.
[25] S. Z. E. Abedin,et al. Utilization of 1-butylpyrrolidinium Chloride Ionic Liquid as an Eco-friendly Corrosion Inhibitor and Biocide for Oilfield Equipment: Combined Weight Loss, Electrochemical and SEM Studies , 2019 .
[26] E. Gad,et al. The corrosion inhibition of (2Z,2′Z)-4,4′-(1,2-phenylene bis(azanediyl))bis(4-oxobut-2-enoic acid) for carbon steel in acidic media using DFT , 2019 .
[27] S. Mouneir,et al. Reno-protective effect of linagliptin against gentamycin nephrotoxicity in rats. , 2019, Pharmacological reports : PR.
[28] Y. Reda,et al. Effect of Plating Materials on the Corrosion Properties of Steel Alloy 4130 , 2019, Egyptian Journal of Chemistry.
[29] M. Mahmoud,et al. Comparative study of synergistic inhibition of mild steel and pure iron by 1-hexadecylpyridinium chloride and bromide ions , 2019, Corrosion Science.
[30] E. Abdel-Sattar,et al. Anti-obesity effect of argel (Solenostemma argel) on obese rats fed a high fat diet. , 2019, Journal of ethnopharmacology.
[31] S. Mouneir,et al. Phytochemical studies and anti-ulcerative colitis effect of Moringa oleifera seeds and Egyptian propolis methanol extracts in a rat model , 2019, Asian Pacific Journal of Tropical Biomedicine.
[32] Y. Reda,et al. Effect of hydrogen embrittlement on the microstructures of electroplated steel alloy 4130 , 2018, Ain Shams Engineering Journal.
[33] M. Lavorgna,et al. Chitosan-based coatings for corrosion protection of copper-based alloys: A promising more sustainable approach for cultural heritage applications , 2018, Progress in Organic Coatings.
[34] M. Mobin,et al. Boswellia serrata gum as highly efficient and sustainable corrosion inhibitor for low carbon steel in 1 M HCl solution: Experimental and DFT studies , 2018, Journal of Molecular Liquids.
[35] O. I. Elshafey,et al. Potential removal of organic loads from petroleum wastewater and its effect on the corrosion behavior of municipal networks. , 2018, Journal of environmental management.
[36] H. Ali,et al. Effects of the food additives sodium acid pyrophosphate, sodium acetate, and citric acid on hemato-immunological pathological biomarkers in rats: Relation to PPAR-α, PPAR-γ and tnfα signaling pathway. , 2018, Environmental toxicology and pharmacology.
[37] G. Deacon,et al. New, environmentally friendly, rare earth carboxylate corrosion inhibitors for mild steel , 2018, Corrosion Science.
[38] S. Mouneir,et al. Heterocyclization of polarized system: synthesis, antioxidant and anti-inflammatory 4-(pyridin-3-yl)-6-(thiophen-2-yl) pyrimidine-2-thiol derivatives , 2018, Chemistry Central Journal.
[39] Kyle K. Shimabuku,et al. Utilities Lead the Way in Lead Corrosion Control , 2018 .
[40] H. Ibrahim,et al. Crude Glycerol as an Innovative Corrosion Inhibitor , 2018 .
[41] A. El-Shamy,et al. Corrosion and Corrosion Inhibition of Steel Pipelines in Montmorillonitic Soil Filling Material , 2018, Silicon.
[42] S. Mouneir,et al. Zileuton alleviates acute cisplatin nephrotoxicity: Inhibition of lipoxygenase pathway favorably modulates the renal oxidative/inflammatory/caspase-3 axis. , 2018, Prostaglandins & other lipid mediators.
[43] N. Scharnagl,et al. Chitosan coatings crosslinked with genipin for corrosion protection of AZ31 magnesium alloy sheets. , 2018, Carbohydrate polymers.
[44] M. Ebn Touhami,et al. Corrosion Protection for Cast Iron in Sulfamic Acid Solutions and Studies of the Cooperative Effect Between Cationic Surfactant and Acid Counterions , 2018, Journal of Bio- and Tribo-Corrosion.
[45] H. Lgaz. Corrosion Inhibition Behavior of 9-Hydroxyrisperidone as a Green Corrosion Inhibitor for Mild Steel in Hydrochloric Acid: Electrochemical, DFT and MD Simulations Studies , 2018 .
[46] Gunawarman,et al. Theobroma Cacao Peels Extract as the Eco-Friendly Corrosion Inhibitor for Mild Steel , 2018 .
[47] O. S. Shehata,et al. Green Corrosion Inhibitors, Past, Present, and Future , 2018 .
[48] Ricardo M. Souto,et al. Propolis as a green corrosion inhibitor for bronze in weakly acidic solution , 2017 .
[49] R. Salghi,et al. Eco friendly green inhibitor Gum Arabic (GA) for the corrosion control of mild steel in hydrochloric acid medium , 2017 .
[50] M. Migahed,et al. Inhibition of Acid Corrosion of Carbon Steel Using Amine Surfactants Based on Cellulose , 2017, Journal of Bio- and Tribo-Corrosion.
[51] Y. Shacham-Diamand,et al. A method of conserving ancient iron artefacts retrieved from shipwrecks using a combination of silane self-assembled monolayers and wax coating , 2017 .
[52] R. Prakash,et al. Electrochemical investigation of Irbesartan drug molecules as an inhibitor of mild steel corrosion in 1 M HCl and 0.5 M H2SO4 solutions , 2017 .
[53] E. Ebenso,et al. Ionic liquids as green and sustainable corrosion inhibitors for metals and alloys: An overview , 2017 .
[54] S. Mouneir,et al. Benzodioxole–Pyrazole Hybrids as Anti‐Inflammatory and Analgesic Agents with COX‐1,2/5‐LOX Inhibition and Antioxidant Potential , 2017, Archiv der Pharmazie.
[55] M. Mobin,et al. Non toxic biodegradable cationic gemini surfactants as novel corrosion inhibitor for mild steel in hydrochloric acid medium and synergistic effect of sodium salicylate: Experimental and theoretical approach , 2017 .
[56] A. A. Abdelhamid,et al. Novel Quaternary Ammonium-Based Cationic Surfactants: Synthesis, Surface Activity and Evaluation as Corrosion Inhibitors for C1018 Carbon Steel in Acidic Chloride Solution , 2017 .
[57] S. Mouneir,et al. Synthesis and Antitumor/Antiviral Evaluation of 6-Thienyl-5-cyano-2-thiouracil Derivatives and Their Thiogalactosides Analogs , 2017 .
[58] M. Amirnasr,et al. Enhanced corrosion resistance of mild steel in 1 M HCl solution by trace amount of 2-phenyl-benzothiazole derivatives: Experimental, quantum chemical calculations and molecular dynamics (MD) simulation studies , 2017 .
[59] M. D. Keersmaecker,et al. Inhibition of the corrosion of iron heritage objects after treatment with long-chain monocarboxylic acids in ethanolic solutions , 2016 .
[60] E. Hart. Corrosion Inhibitors: Principles, Mechanisms and Applications , 2016 .
[61] A. Fathi. The Inhibiting Effect of Non Toxic 4-Amino antipyrine and 4,6- Dimethyl-1H-pyrazolo[3,4-b]pyridin-3-amine on Mild steel Corrosion in Sulphuric acid , 2016 .
[62] M. Casaletto,et al. Corrosion inhibition of iron in acidic solution by a green formulation derived from Nigella sativa L. , 2016 .
[63] I. MacLeod. In-situ Corrosion Measurements of WWII Shipwrecks in Chuuk Lagoon, Quantification of Decay Mechanisms and Rates of Deterioration , 2016, Front. Mar. Sci..
[64] M. Abdulwahab,et al. Inhibitive Behaviour of Acacia senegalensis on Corrosion Resistance of Mild Steel-Acidic Environment , 2016 .
[65] N. Brosse,et al. The capability of ultrafiltrated alkaline and organosolv oil palm (Elaeis guineensis) fronds lignin as green corrosion inhibitor for mild steel in 0.5 M HCl solution , 2016 .
[66] A. M. El-Shamy,et al. SYNTHESIS AND EVALUATION OF ETHYL (4-(N-(THIAZOL-2-YL) SULFAMOYL) PHENYL)CARBAMATE (TSPC) AS A CORROSION INHIBITOR FOR MILD STEEL IN 0.1M HCL , 2016 .
[67] Susanna Bracci,et al. A multi-analytical approach to monitor three outdoor contemporary artworks at the Gori Collection (Fattoria di Celle, Santomato, Pistoia, Italy) , 2016 .
[68] S. Z. E. Abedin,et al. Anti-bacterial and anti-corrosion effects of the ionic liquid 1-butyl-1-methylpyrrolidinium trifluoromethylsulfonate , 2015 .
[69] Dawei Zhang,et al. Preparation and characterization of a chitosan-based low-pH-sensitive intelligent corrosion inhibitor , 2015, International Journal of Minerals, Metallurgy, and Materials.
[70] G. Ingo,et al. Inhibition of bronze corrosion in 3%NaCl media by novel non-toxic 3-phenyl-1,2,4-triazole thione formulation , 2015 .
[71] E. Chrześcijańska,et al. Tannic acid as corrosion inhibitor for metals and alloys , 2015 .
[72] El-Sayed M. Sherif,et al. Corrosion of High Strength Steel in Concentrated Sulfuric Acid Pickling Solutions and Its Inhibition by 3-Amino-5-mercapto-1,2,3-triazole , 2015, International Journal of Electrochemical Science.
[73] A. Kalmouch,et al. Mitigation of Sulfide Attach on α-Brass Surface by Using Sodium (Z)-4-Oxo-4-p-Tolyl-2-Butenoate , 2015 .
[74] Suprihatin,et al. Utilization of Natural Tannin Extract for Copper Corrosion Inhibitor in Hydrochloric Acid Solution , 2015 .
[75] S. Varvara,et al. Antibacterial drugs as corrosion inhibitors for bronze surfaces in acidic solutions , 2014 .
[76] S. Varvara,et al. Thiadiazole derivatives as inhibitors for acidic media corrosion of artificially patinated bronze , 2014 .
[77] P. Ropret,et al. Raman investigation of artificial patinas on recent bronze protected by different azole type inhibitors in an outdoor environment , 2014 .
[78] Mattia Merlin,et al. On the degradation factors of an archaeological bronze bowl belonging to a private collection , 2014 .
[79] El-Sayed M. Sherif,et al. Corrosion and Corrosion Inhibition of High Strength Low Alloy Steel in 2.0 M Sulfuric Acid Solutions by 3-Amino-1,2,3-triazole as a Corrosion Inhibitor , 2014 .
[80] Thomas F. Garrison,et al. Matrices from vegetable oils, cashew nut shell liquid, and other relevant systems for biocomposite applications , 2014 .
[81] A. Galio,et al. Corrosion Inhibitors – Principles, Mechanisms and Applications , 2014 .
[82] M. Arenas,et al. Corrosion inhibition with rare earth metal compounds in aqueous solutions , 2014 .
[83] Majid Sharifi,et al. Application of eco-friendly products as corrosion inhibitors for metals in acid pickling processes - A review , 2013 .
[84] Emma Paola Maria Virginia Angelini,et al. Corrosion and conservation of cultural heritage metallic artefacts , 2013 .
[85] Mohd Hanafi Ani,et al. Natural Corrosion Inhibitor for Corrosion Protection of Metal Artefact: An Overview , 2013 .
[86] E. Cano,et al. Corrosion inhibitors for the preservation of metallic heritage artefacts , 2013 .
[87] A. Gandini,et al. Chitosan as a Smart Coating for Controlled Release of Corrosion Inhibitor 2-Mercaptobenzothiazole , 2013 .
[88] T. Kosec,et al. An electrochemical impedance study of the corrosion protection of artificially formed patinas on recent bronze , 2012 .
[89] S. Varvara,et al. Evaluation of some phenothiazine derivatives as corrosion inhibitors for bronze in weakly acidic solution , 2012 .
[90] M. A. Hegazy,et al. Synergistic inhibition effect between Cu2+ and cationic gemini surfactant on the corrosion of downhole tubing steel during secondary oil recovery of old wells , 2012 .
[91] P. Sirois,et al. An investigation into the cause of corrosion on indoor bronze sculpture , 2012 .
[92] Mari Gravgaard,et al. Cysteine as a non-toxic corrosion inhibitor for copper alloys in conservation , 2012 .
[93] N. Sulochana,et al. Green Inhibitors for Corrosion of Metals: A Review , 2012 .
[94] H. Takenouti,et al. Inhibiting effect of 4-methyl-1-p-tolylimidazole to the corrosion of bronze patinated in sulphate medium , 2011 .
[95] W. Hussien,et al. The Inhibitive Effect of Some Amino Acids on the Corrosion Behaviour of 316L Stainless Steel in Sulfuric Acid Solution , 2011 .
[96] Xianlong Cao,et al. Effect of carbon dioxide on corrosion of tubular steel in high hydrogen sulfide and carbon dioxide environments , 2011 .
[97] A. Satpati,et al. Electrochemical Study on Corrosion Inhibition of Copper in Hydrochloric Acid Medium and the Rotating Ring-Disc Voltammetry for Studying the Dissolution , 2011 .
[98] Zadar. International Centre for Underwater Archaeology in Zadar CONSERVATION OF UNDERWATER ARCHAEOLOGICAL FINDS MANUAL , 2011 .
[99] T. Kosec,et al. Investigation of the corrosion protection of chemically and electrochemically formed patinas on recent bronze , 2010 .
[100] M. A. Hegazy,et al. Novel quaternary ammonium hydroxide cationic surfactants as corrosion inhibitors for carbon steel and as biocides for sulfate reducing bacteria (SRB) , 2010 .
[101] R. Vera,et al. Characterisation and properties of synthetic patina on copper base sculptural alloys , 2010 .
[102] I. Milošev,et al. Inhibition of copper corrosion by 1,2,3-benzotriazole: A review , 2010 .
[103] G. Ingo,et al. Production of reference alloys for the conservation of archaeological silver-based artifacts , 2010 .
[104] David M. Bastidas,et al. Use of EIS for the evaluation of the protective properties of coatings for metallic cultural heritage: a review , 2010 .
[105] E. Stupnišek-lisac,et al. Corrosion inhibitors for bronze protection in polluted atmosphere , 2010 .
[106] David Watkinson,et al. Preservation of metallic cultural heritage , 2010 .
[107] S. Ezzat,et al. Chemical and Biological Investigation of Araucaria heterophylla Salisb. Resin , 2009, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[108] H. Takenouti,et al. Comparative studies of chemical and electrochemical preparation of artificial bronze patinas and their protection by corrosion inhibitor , 2009 .
[109] K. Rahmouni,et al. Protection of ancient and historic bronzes by triazole derivatives , 2009 .
[110] A. El-shamy,et al. Electrochemical desulfurization of geothermal fluids under high temperature and pressure , 2009 .
[111] Ateya,et al. Effect of 3-aminotriazole on the corrosion of copper in polluted and unpolluted media , 2009 .
[112] A. Awaad,et al. New alkaloids from Casimiroa edulis fruits and their pharmacological activity , 2007, Chemistry of Natural Compounds.
[113] H. Matthiesen,et al. Corrosion of Metallic Heritage Artefacts: Investigation, Conservation and Prediction of Long Term Behavior (EFC 48) , 2007 .
[114] P. Marcus,et al. 19 – Surface characterisation of corrosion inhibitors on bronzes for artistic casting , 2007 .
[115] K. Rahmouni,et al. Protection of bronze covered with patina by innoxious organic substances , 2007 .
[116] E. Angelini,et al. Innovative conservation approaches for monitoring and protecting ancient and historic metals collections from the Mediterranean basin , 2004 .
[117] C. Ránninger,et al. Microbial induced corrosion of metallic antiquities and works of art: a critical review , 1992 .
[118] D. Scott. PERIODIC CORROSION PHENOMENA IN BRONZE ANTIQUITIES , 1985 .
[119] R. F. Tylecote,et al. The effect of soil conditions on the long-term corrosion of buried tin-bronzes and copper , 1979 .
[120] R. Tylecote. Durable materials for sea water: the archaeological evidence , 1977 .