From Food Preservation to Surface Protection: Enhanced Corrosion Protection by Fatty Acid Salts

被引:2
|
作者
Ein-Eli, Yair [1 ]
机构
[1] Technion Israel Inst Technol, Dept Mat Engn, IL-32000 Haifa, Israel
关键词
D O I
10.1560/IJC.48.3-4.319
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The ability of dissolved monocarboxylate salts, often used as food preservatives, to produce surface passivation and to inhibit aqueous corrosion of metals and alloys is discussed. Electrochemical measurements indicate that the inhibiting efficiency of these compounds, with a general formula Cn-1H2n-1COOK or CnK (n = 3...12), is dependent on the hydrocarbon chain length. Inhibiting efficiency was higher for a longer hydrocarbon chain of n-alkanoic acid. Copper corrosion protection level was found to increase with an increase in fatty acid salt concentration the optimum concentration of potassium dodecanoate (C12K) in sulfate solutions was found to be 70 mM. Protective layers formed at the copper surface Subsequent to exposure in various n-alkanoate solutions were characterized by all electrochemical impedance spectroscopy, X-ray photoelectron spectroscopy, Fourier transform infrared reflection spectroscopy, and contact angle measurements. Observed copper passivation is attributed to the growth of a protective film oil the copper surface, containing both copper oxides and copper carboxylate compounds. The organic molecules enhance copper protection by covering copper oxides with a thin and dense organic layer, which prevents water molecules or aggressive anions from interacting with the copper Surface.
引用
收藏
页码:319 / 332
页数:14
相关论文
共 50 条
  • [21] Corrosion Prevention and Surface Protection for Automobile Design
    Zhe, Zhang
    Ting, Wang
    RARE METAL MATERIALS AND ENGINEERING, 2012, 41 : 140 - 143
  • [22] Research laboratory for corrosion engineering and surface protection
    Curkovic, H. Otmacic
    KEMIJA U INDUSTRIJI-JOURNAL OF CHEMISTS AND CHEMICAL ENGINEERS, 2018, 67 (9-10): : 452 - 453
  • [23] Surface cleaning and corrosion protection with plasma treatment
    Torok Tamas
    Pataki Tibor
    Lassu Gabor
    KORROZIOS FIGYELO, 2013, 53 (02): : 41 - 45
  • [24] Green technology for sustainable surface protection of steel from corrosion: a review
    Al Shibli, Fatema Said Zahir Said
    Bose, Subrajit
    Kumar, P. Senthil
    Rajasimman, M.
    Rajamohan, N.
    Vo, Dai-Viet N.
    ENVIRONMENTAL CHEMISTRY LETTERS, 2022, 20 (01) : 929 - 947
  • [25] Green technology for sustainable surface protection of steel from corrosion: a review
    Fatema Said Zahir Said Al Shibli
    Subrajit Bose
    P. Senthil Kumar
    M. Rajasimman
    N. Rajamohan
    Dai-Viet N. Vo
    Environmental Chemistry Letters, 2022, 20 : 929 - 947
  • [26] Surface coatings: Latest developments in the protection of steels from corrosion and erosion
    Goyal, Khushdeep
    JOURNAL OF ELECTROCHEMICAL SCIENCE AND ENGINEERING, 2022, 12 (05): : 815 - 817
  • [27] ANODIC PROTECTION REDUCES CORROSION IN ACID TANKS
    REDDEN, JC
    MATERIALS PROTECTION, 1966, 5 (02): : 51 - &
  • [28] Corrosion protection of iron by α,ω-diphosphonic acid layers
    Felhösi, I
    Kálmán, E
    CORROSION SCIENCE, 2005, 47 (03) : 695 - 708
  • [29] Corrosion Protection by Octadecylphosphonic Acid in Flow Conditions
    Mioc, E. Kristan
    Curkovic, H. Otmacic
    CHEMICAL AND BIOCHEMICAL ENGINEERING QUARTERLY, 2019, 33 (03) : 395 - 403
  • [30] ACID CAR CORROSION MECHANISM, MONITORING, AND PROTECTION
    POHLMAN, SL
    ANDERSEN, TN
    MATERIALS PERFORMANCE, 1987, 26 (11) : 41 - 46