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CORROSION ASSESSMENT IN KARAN GAS FIELD DEVELOPMENT

机译:卡兰气田开发中的腐蚀评估

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The Karan offshore development is expected to produce a large quantity of natural gas but no hydrocarbon condensate. Liquid water is, however, projected to be present through condensation and the presence of CO_2 (8%) and H_2S (4%) will lead to aggressive corrosion environments. Different inhibition techniques will be implemented to control bottom of the line corrosion. Top of the line corrosion (TLC) is also a potential issue in specific locations in the field as large quantities of organic acids are present in the produced water. This paper presents a comprehensive assessment of the corrosion risk through laboratory simulations performed in a large scale flow loop as well as in a specially designed autoclave equipped for corrosion studies under dewing conditions. Corrosion rates are obtained through weight loss methods and the surface layer is analysed with XRD (X-ray diffraction), EDS (Energy Dispersive Spectroscopy) and SEM (Scanning Electron Microscopy). The TLC rate was found to be low in all conditions tested and no indications of localized corrosion was observed. Mackinawite, cubic iron sulfide, and troilite (stoichiometric pyrrhotite) were identified in the corrosion product layer. The results are used to guide the required corrosion management measures, which are also presented.
机译:预计Karan近海开发项目可生产大量天然气,但不会产生碳氢化合物冷凝物。然而,预计液态水会通过冷凝而存在,并且CO_2(8%)和H_2S(4%)的存在将导致腐蚀性的腐蚀环境。将采用不同的抑制技术来控制管线底部的腐蚀。由于采出水中存在大量有机酸,因此在现场的特定位置,最重要的腐蚀(TLC)也是潜在的问题。本文通过在大型流动回路以及为结露条件下进行腐蚀研究而配备的专门设计的高压釜中进行的实验室模拟,对腐蚀风险进行了全面评估。通过重量损失方法获得腐蚀速率,并通过XRD(X射线衍射),EDS(能量分散光谱)和SEM(扫描电子显微镜)分析表面层。发现在所有测试条件下,TLC速率均较低,并且未观察到局部腐蚀的迹象。在腐蚀产物层中发现了马氏体,立方硫化铁和tr石(化学计量黄铁矿)。结果将用于指导所需的腐蚀管理措施,并介绍了这些措施。

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