对LNG工业中单质汞对铝合金Aa 5083腐蚀的综合研究贡献

.. D.Zerouali, .. Z.Derriche, .. M.Y.Azri
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引用次数: 0

摘要

采用旋转汞化圆盘电极线性扫描伏安法研究了水介质中单质汞对天然气液化换热器用工业铝合金AA5083的腐蚀作用。腐蚀过程取决于:•铝与汞的化学混合过程。•铝在汞合金中的扩散过程。•铝在汞化界面/水中的电化学氧化。扩散步骤与通常在水腐蚀研究中发现的不同,它不依赖于电极的旋转,而是依赖于汞合金中溶解的铝在汞合金电化学氧化之前的扩散。这是化学汞化固定相过程的限制步骤。当汞铝接触时间超过36分钟时,就会发生这种情况。对于短于30分钟的时间,化学汞齐控制了这一过程。研究了汞合金电极电化学行为的特征参数:阴极沉积汞的时间、极化前电极在电解液中的浸泡时间以及电位扫描速率。化学研究Vol. 10, 2005: 39-48
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contribution to comprehensive study of aluminium alloy Aa 5083 corrosion induced by elemental mercury in LNG industries
Corrosion induced by elemental mercury in aqueous media of industrial Aluminium alloys AA5083 used in heat exchanger industries of natural gas liquefaction has been studied by linear sweep voltammetry on rotating amalgamated disk electrode. Corrosion process depends on: • Chemical processes of amalgamation of aluminium with mercury. • Diffusion process of aluminium in amalgam. • Electrochemical oxidation of aluminium on amalgamated Interface/water. The diffusion step appears different from that usually found in studies of aqueous corrosion and was not dependent on rotation of electrode but on diffusion of dissolved aluminium in the amalgam before the electrochemical oxidation of amalgamated metal. This is the limiting step of the process at stationary phase of the chemical amalgamation. This occurs at contact time mercury-aluminium longer than 36 min .For shorter times less than 30 min, chemical amalgamation controlled the process. Characteristic parameters of electrochemical behaviour of amalgamated electrodes were investigated: time of cathodic deposit of mercury, time of immersion of electrode in electrolyte before polarisation as well as potential scanning rate. Nigerian Journal of Chemical Research Vol. 10, 2005: 39-48
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