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Influence of Calcium Scaling on Corrosion Behavior of Steel and Aluminum Alloys

机译:钙缩放对钢和铝合金腐蚀行为的影响

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摘要

Calcium scaling is a serious problem encountered in the oil and gas industry because it is common that brines produced alongside oil and gas exhibit high concentrations of calcium ions, among others, which is expensive to remedy. The precipitation of calcium salts on the internal wall of the pipelines may occur because of the physical and chemical changes as fluids are produced from downhole to surface facilities. Although different researchers have address scaling and corrosion in the oil and gas industry, there are few reports in the literature relating the corrosion and scaling phenomena simultaneously. Despite there being indications that scales may produce corrosion problems, affecting the mechanical integrity of the infrastructure, there is minimal research in the literature addressing such relations. Previous studies presented aluminum alloys as excellent and reliable materials for applications in the petroleum industry, such as drilling activities. In this work, we evaluate the corrosion behavior of steel and aluminum alloys under highly scaling environments using supersaturated brines. Our results show that the presence of calcium carbonate and calcium sulfate as a scaling environment increases the corrosion rates for aluminum alloys and carbon steel; however, the same environments do not affect the corrosion behavior of stainless steel.
机译:钙缩放是石油和天然气行业遇到的严重问题,因为伴随着油气和天然气的盐水呈现出高浓度的钙离子,其中包括昂贵的补救措施。由于流体从井下到表面设施生产,因此可能发生管道内壁上钙盐的析出。虽然不同的研究人员在石油和天然气行业中具有解决缩放和腐蚀,但在文献中有很少的报道与腐蚀和缩放现象同时。尽管存在尺度可能产生腐蚀问题,影响基础设施的机械完整性,但在寻求这种关系的文献中存在最小的研究。以前的研究将铝合金作为石油工业应用的优异和可靠的材料,如钻井活动。在这项工作中,我们使用超饱和盐水评估高缩放环境下钢和铝合金的腐蚀行为。我们的研究结果表明,作为缩放环境的碳酸钙和硫酸钙的存在增加了铝合金和碳钢的腐蚀速率;然而,相同的环境不会影响不锈钢的腐蚀行为。

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