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首页> 外文期刊>材料と環境 >Passivation of Carbon Steel in a High Temperature Concentrated LiBr Solution Containing Hydroxide and Molybdate Ions
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Passivation of Carbon Steel in a High Temperature Concentrated LiBr Solution Containing Hydroxide and Molybdate Ions

机译:碳钢在含有氢氧化物和钼酸盐离子的高温浓缩溴化锂溶液中的钝化

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Carbon steel has been utilized well as a structural material in a commercial adsorption refrigerating system with help of corrosion inhibitors: most typically, hydroxide and molybdate ions. In this study, X-ray photoelectron spectroscopy (XPS) analysis has been carried out on the films formed on carbon steel exposed in the 17.3 mol kg~(-1) LiBr+ 0.1 mol kg~(-1) LiOH+ 0.01 mol kg~(-1) Na_2MoO_4 solution at 393 and 433 K. Carbon steel passivates well in the solution at 433 K, forming a doubly layered film. The inner layer is mainly composed of Fe_3O_4 and the outer one of MoO_x, where the value of x decreases from 3 to 2 with immersion time. The film thickness increases in proportion to the cubic root of immersion time suggesting that movement of ions through inner oxide layer is governing the film formation process. Carbon steel exposed in the solution at 393 K suffers from pitting occasionally. The film formed on a specimen without pits shows incorporation of Mo species within it whereas that with pits shows no incorporation. Molybdate ion would inhibit corrosion through 1) competitive adsorption with Br~-, 2) acceleration in formation of the protective inner layer and 3) restriction for anions to permeate trough the outer layer. It can be concluded that higher temperature is advantageous for molybdate ion to work better because the chemical process for 2) proceeds more efficiently.
机译:碳钢已经在商业吸附制冷系统中作为腐蚀抑制剂(最典型的是氢氧根和钼酸根离子)的辅助材料被很好地利用。在这项研究中,X射线光电子能谱(XPS)分析已对在17.3 mol kg〜(-1)LiBr + 0.1 mol kg〜(-1)LiOH + 0.01 mol kg〜( -1)在393和433 K的Na_2MoO_4溶液中。碳钢在433 K的溶液中很好地钝化,形成双层膜。内层主要由Fe_3O_4和MoO_x的外层组成,其中x的值随浸入时间从3减小到2。膜厚与浸入时间的立方根成比例增加,表明离子通过内部氧化物层的运动决定了膜的形成过程。在393 K下暴露在溶液中的碳钢有时会出现点蚀。在没有凹坑的样品上形成的膜表明其中含有Mo物种,而有凹坑的膜表明没有结合。钼酸根离子将通过以下方式抑制腐蚀:1)具有Br〜-的竞争性吸附,2)保护性内层形成过程中的加速作用,以及3)限制阴离子渗透通过外层的腐蚀。可以得出结论,较高的温度有利于钼酸根离子更好地工作,因为2)的化学过程更有效地进行。

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