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Application of pure oxygen for the passivation of mild steel in high temperature and pressure Bayer liquor under conditions of disturbed flow

机译:纯氧在扰流条件下对高温高压拜耳液中低碳钢的钝化处理

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The passivation characteristics of sulfuric acid cleaned mild steel in spent Bayer liquor (pH 14.4 and 160 ℃) are examined using a high pressure nickel flow loop. An entrained atmosphere of 99.90% v/v oxygen gas is incorporated as an experimental variable along with Reynolds number (141,700 and 50,950) and intensity of fluid flow disturbance. State of passivation has been defined using criteria derived from transient polarisation resistance measurements and large-scale polarisation, linear sweep voltammetry. In the majority of cases, oxygenation introduces instantaneous passivation of the mild steel on contact with the Bayer liquor. In comparison to de-oxygenated and aerated electrolytes, this rapid rate of passivation can lead to up to an order of magnitude reduction in the quantity of charge associated with metal dissolution over 20 h. Although relative rates of corrosion when passive are low and largely independent of the level of flow disturbance, dissolution rates when passive are somewhat larger at the higher Reynolds number.
机译:使用高压镍流回路,对用过的拜耳溶液(pH 14.4和160℃)中经硫酸清洁的低碳钢的钝化特性进行了测试。将99.90%v / v氧气的夹带气氛与雷诺数(141,700和50,950)和流体流动扰动强度一起作为实验变量。使用瞬态极化电阻测量和大规模极化,线性扫描伏安法得出的标准定义了钝化状态。在大多数情况下,充氧会在与拜耳液接触时引入低碳钢的瞬时钝化。与脱氧和充气的电解质相比,这种快速的钝化速率可导致在20小时内与金属溶解相关的电荷量减少多达一个数量级。尽管被动时的相对腐蚀速率较低,并且在很大程度上与流动扰动程度无关,但被动时的溶蚀速率在较高的雷诺数下会较大。

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