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    The effects of Cr/Mo micro-alloying on the corrosion behavior of carbon steel in CO2-saturated (Sweet) brine under hydrodynamic control

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    Sk_2018_J._Electrochem._Soc._165_C278.pdf (3.129Mb)
    Date
    2018
    Author
    Sk, M. Hassan
    Abdullah, A. M.
    Qi, J.
    Ko, M.
    Ingham, B.
    Laycock, N.
    Ryan, M. P.
    Williams, D. E.
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    Abstract
    The effects of micro-alloying of plain carbon steel with Cr and Mo on the corrosion behavior in CO2-saturated (sweet) brine (0.5 M NaCl, pH 6.6) environment, under hydrodynamic conditions, at 80°C were investigated. Crystalline siderite/chukanovite scales formed on all the alloys. Analysis of potentiostatic current transient data suggest that there exists a synergistic interaction between Cr and Mo, which induces more rapid crystallization of the scale compared to Mo-free steels. Increasing the Mo content also suppressed the transport-dependent dissolution current passing through the initially-present amorphous surface film. TEM images of the FIB-sectioned corrosion scales confirm that the corrosion scale formed on 1Cr0.7Mo is comparatively thinner and yet offers greater protectiveness when compared to the plain carbon steel.
    DOI/handle
    http://dx.doi.org/10.1149/2.1011805jes
    http://hdl.handle.net/10576/66509
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