Synergistic corrosion inhibition of mild steel in aqueous chloride solutions by an imidazolinium carboxylate salt


Autoria(s): Chong, Alison L.; Mardel, James I.; MacFarlane, Douglas R.; Forsyth, Maria; Somers, Anthony E.
Data(s)

01/01/2016

Resumo

Mild steel infrastructure is constantly under corrosive attack in most environmental and industrial conditions. There is an ongoing search for environmentally friendly, highly effective inhibitor compounds that can provide a protective action in situations ranging from the marine environment to oil and gas pipelines. In this work an organic salt comprising a protic imidazolinium cation and a 4-hydroxycinnamate anion has been shown to produce a synergistic corrosion inhibition effect for mild steel in 0.01 M NaCl aqueous solutions under acidic, neutral, and basic conditions; an important and unusual phenomenon for one compound to support inhibition across a range of pH conditions. Significantly, the individual components of this compound do not inhibit as effectively at equivalent concentrations, particularly at pH 2. Immersion studies show the efficacy of these inhibitors in stifling corrosion as observed from optical, SEM, and profilometry experiments. The mechanism of inhibition appears to be dominated by anodic behavior where dissolution of the steel, and in particular the pitting process, is stifled. FTIR spectroscopy provides confirmation of a protective interfacial layer, with the observation of interactions between the steel surface and 4-hydroxycinnamate.

Identificador

http://hdl.handle.net/10536/DRO/DU:30083385

Idioma(s)

eng

Publicador

American Chemical Society

Relação

http://dro.deakin.edu.au/eserv/DU:30083385/somers-synergisticcorrosion-2016.pdf

http://www.dx.doi.org/10.1021/acssuschemeng.5b01725

Direitos

2016, ACS

Palavras-Chave #Science & Technology #Physical Sciences #Technology #Chemistry, Multidisciplinary #Engineering, Chemical #Chemistry #Engineering #Corrosion inhibitor #Organic salt #Mild steel #Acidic #Pitting #FTIR #SULFURIC-ACID-SOLUTION #IONIC LIQUIDS #CARBON-STEEL #CINNAMATE #SURFACTANTS #ENVIRONMENT #MECHANISM #CERIUM #ZINC
Tipo

Journal Article