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Corrosion behaviour and characterisation of iron in hot flowing Bayer liquors

机译:热流动的拜耳液中铁的腐蚀行为和表征

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摘要

The flow-induced corrosion of iron, in spent Bayer liquor at high temperatures, was investigated using a rotating cylinder electrode (RCE) in an autoclave facility. A temperature range of 100 ℃ to 230 ℃ and equivalent pipe velocities between 0.84 ms{sup}(-1) to 3 ms{sup}(-1) were used in this work. Techniques, such as, weight loss, ac impedance, potential measurements and electron microscopy were used to characterise corrosion behaviour during the experiments and also any surface corrosion products formed. Corrosion rates measured by weight loss were in good agreement with those obtained through ac impedance measurements. The results showed evidence of a peak in the corrosion rate with increasing temperature for iron. Such peaks were also observed as a function of incrcasing velocity. The effects of these variables were demonstrated by constructing a corrosion map in which regions of "high", "medium" and "low" corrosion rate for the material, under specific conditions, were identified. This method may be a useful way of providing a guide to optimise the process conditions when using materials in high temperature alkaline flowing environments such as those found in Bayer plants.
机译:使用高压釜设备中的旋转圆柱电极(RCE),研究了高温下拜耳废液中铁的流动诱导腐蚀。这项工作使用的温度范围为100℃至230℃,等效管道速度在0.84 ms {sup}(-1)至3 ms {sup}(-1)之间。实验中使用了重量损失,交流阻抗,电势测量和电子显微镜等技术来表征实验过程中的腐蚀行为以及形成的任何表面腐蚀产物。通过重量损失测量的腐蚀速率与通过交流阻抗测量获得的腐蚀速率非常一致。结果表明,随着温度的升高,铁的腐蚀速率达到峰值。还观察到这些峰是增加速度的函数。通过构建腐蚀图可以证明这些变量的效果,其中确定了在特定条件下材料的“高”,“中”和“低”腐蚀速率区域。当在高温碱性流动环境(如拜耳工厂中发现的材料)中使用材料时,此方法可能是提供指导以优化工艺条件的有用方法。

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