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A Novel Method to Mitigate the Top of the Line Corrosion in Wet Gas Pipelines by Corrosion Inhibitor within a Foam Matrix

机译:一种新的方法,可以在泡沫基质内腐蚀抑制剂减轻湿气管道线腐蚀的顶部

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Top of the Line Corrosion (TLC) has been a serious issue for the Oil & Gas industry. Conventional inhibition techniques are expensive and often do not seem to provide enough protection to the steel surface at the top of the pipe. A novel idea is to inject the corrosion inhibitor within a foam matrix. The foam slug is first formed at an injection port and carried along the pipe by the gas phase. This process ensures homogeneous delivery of the inhibitor to the pipe wall along pipe sections suffering from TLC. This paper presents more comprehensive study performed in an innovative glass cell setup which consisted of a foaming cell and a corrosion cell in order to simulate intermittent contact between the foam and the steel surface. Corrosion measurements were performed using electrochemical techniques (EIS, LPR, potentiodynamic sweep) and electrical resistance (ER) measurements, in order to determine the inhibitive performance of investigated inhibitor talloil diethylenetriamine imidazoline (TOFA/DETA imidazoline) within a foam matrix (sodium C14-16 olefin sulfonate).
机译:腐蚀线(TLC)的顶部是石油和天然气行业的严重问题。传统的抑制技术是昂贵的,并且通常似乎似乎没有向管道顶部的钢表面提供足够的保护。一种新颖的想法是在泡沫基质内注射腐蚀抑制剂。首先在喷射口形成泡沫块并通过气相沿管道携带。该方法确保沿患有TLC的管道部分均匀地将抑制剂输送到管壁。本文在创新的玻璃单元设置中呈现了更全面的研究,该研究由发泡电池和腐蚀细胞组成,以模拟泡沫和钢表面之间的间歇接触。使用电化学技术(EIS,LPR,电位动力学扫描)和电阻(ER)测量来进行腐蚀测量,以确定泡沫基质内研究抑制剂Takeoil二亚乙基三胺(TOFA / DETA咪唑啉)的抑制性能(C14- 16烯烃磺酸盐)。

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