Pregled bibliografske jedinice broj: 18094
Effect Of Cysteine And Methionine On The Corrosion Of Tin In 3 % Sodium Chloride Solution
Effect Of Cysteine And Methionine On The Corrosion Of Tin In 3 % Sodium Chloride Solution // Meeting Abstracts, The 1997 Joint International Meeting / . (ur.).
Singapur : London : München : Ženeva : Tokyo : Hong Kong : Taipei : Peking : Šangaj : Tianjin : Chennai: The Electrochemical Society (ECS), 1997. (poster, međunarodna recenzija, sažetak, znanstveni)
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Naslov
Effect Of Cysteine And Methionine On The Corrosion Of Tin In 3 % Sodium Chloride Solution
(.)
Autori
Ciković, Nada ; Galić, Kata
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
Meeting Abstracts, The 1997 Joint International Meeting
/ . - Singapur : London : München : Ženeva : Tokyo : Hong Kong : Taipei : Peking : Šangaj : Tianjin : Chennai : The Electrochemical Society (ECS), 1997
Skup
The 1997 Joint International Meeting: 48th Annual Meeting of I.S.E., 192nd Meeting E.C.S.
Mjesto i datum
Pariz, Francuska, 31.08.1997. - 05.09.1997
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
cysteine; methionine; tin corrosion
Sažetak
The effect of cysteine and methionine on the electrochemical and corrosion behaviour of tin in salt solution was investigated.
For this purpose, model salt solutions containing sodium chloride (3 wt %) and sodium chloride with cysteine / methionine, at the concentrations from 10-3 to 10-5 M, were prepared.
The system was chosen to perform the corrosion processes which could take place in canned fish products.
Electrochemical investigation was prepared using potentiostatic polarisation method. From the experimental data, the corrosion current, corrosion potential, and polarisation resistance were calculated.
Redox potential, pH and electrical conductivity of test solutions were also determined.
Both cysteine and methionine act as corrosion inhibitors. Methionine showed higher inhibition efficiency (with 96 % confidence) compared with cysteine (with 68 % confidence) for the anodic reaction.
Izvorni jezik
Engleski