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Lessons Learned from Residual Corrosion Inhibitor Measurements by LC-MS in a Mature North Sea Gas/Condensate/MEG Production System

机译:在成熟的北海气/冷凝水/ MEG生产系统中,LC-MS的残留腐蚀抑制剂测量的经验教训

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Measurement and interpretation of corrosion inhibitor residuals in a mature offshore gas/condensate field could not be reconciled with field data leading to the identification of a potential infrastructure integrity threat that mandated understanding.The field had recently transitioned from buffered pH operation to "natural" pH operation of the monoethylene glycol (MEG) loop (alongside addition of corrosion inhibitor) due to carbonate scaling caused by formation water influx.An investigation was initiated to determine the corrosion inhibitors behavior throughout the production system with focus on demonstrating the effectiveness of the inhibitor.The investigation included extensive laboratory corrosion testing using field and synthetic fluids,residual determination in field samples using liquid-chromatography massspectrometry (LC-MS),field implementation and confirmation of appropriate actions. Upon completion of the investigation it was found that the intended corrosion inhibitor active components were not concentrating up in the MEG loop but were strongly partitioning to the natural gas condensate phase.This was leaving the topside facilities "under-inhibited".Obscuring this conclusion was the concentration of other benign (not corrosion inhibitor) active components present in the inhibitor formulation at very low concentrations which were giving falsely high inhibitor residuals. After changing the inhibitor injection philosophy from batch-wise to continuous,LC-MS residuals have continued to confirm the partitioning behavior in field operation without the introduction of an unmanageable secondary property concern due to the inhibitor.Further online and laboratory corrosion studies have confirmed the integrity of the production system as proof of the effectiveness of the inhibitor. These key lessons learned challenge operators and chemical vendors to consider the MEG circuit chemistry more carefully during chemical qualification to ensure that chemical behavior is understood both before field application and that it is confirmed once applied.
机译:在一个成熟的海上天然气/凝析气田测量和缓蚀剂残差的解释无法与现场数据,导致该规定understanding.The领域的潜在基础设施完整性的威胁的识别不甘心最近从缓冲PH操作转变为“自然” pH值单乙二醇(MEG)环(并排除了腐蚀抑制剂)由于由地层水influx.An调查碳酸盐结垢的操作开始,以确定在展示抑制剂的效力与焦点在整个生产系统中的腐蚀抑制剂的行为。调查包括广泛的实验室腐蚀使用液相色谱massspectrometry(LC-MS),现场执行和适当的行动的确认使用字段样品中字段和合成流体,残余的判定测试。一旦完成调查发现,预期的腐蚀抑制剂的活性成分并没有集中起来在MEG循环,但强烈分区将天然气冷凝物phase.This离开“下,抑制”的上部设施.Obscuring这个结论是其他良性的(非腐蚀抑制剂)活性存在于所述制剂中的抑制剂在非常低的浓度部件,其被给予错误的高抑制剂残差的浓度。从分批连续改变抑制剂注射后的理念,LC-MS残差继续确认在现场操作的分配行为,而不因inhibitor.Further引进不可收拾的二手房关注的在线和实验室腐蚀研究证实生产系统作为抑制剂的有效性的证据的完整性。据悉挑战运营商和化学品供应商,这些主要经验化学鉴定过程中更仔细地考虑MEG电路化学以确保化学行为之前都应用领域和应用一次确认清楚。

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