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Corrosivity of Oxygen Scavenger in a Sea Water Environment

机译:海水环境中的氧气清除剂腐蚀性

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Sodium bisulfite (SBS) oxygen scavenger is being applied in several sea water flood injection systems in the Gulf of Mexico. High corrosion rates (CRs) were observed in one particular field during periods when oxygen scavenger injection rates were elevated. In an effort to establish a safe operating concentration for oxygen scavenger, testing was conducted over a range of conditions to determine the corrosivity of the oxygen scavenger in seawater. Initial test work identified corrosion rate spikes upon injection of SBS in the laboratory and all subsequent work was designed to determine the mechanism generating these corrosion spikes. Scavenger performance was studied with and without the presence of oxygen. Parameters included in this study were SBS concentration, tetrakis-hydroxymethyl-phosphonium (THPS) concentration, temperature, and pH. Electrolyte simulation software was used to determine the dominant aqueous reactions that may contribute to the corrosive environment. This paper outlines the test protocols and results of the lab tests as well as the aqueous modeling. According to the test results and aqueous simulations, the field dose rate of 49 ppm SBS appears to be safe with respect to corrosivity and effective at eliminating the dissolved oxygen.
机译:亚硫酸氢钠(SBS)氧气清道夫在墨西哥湾的几个海水喷射系统中应用。在氧气清除剂注射率升高时,在一个特定的场中观察到高腐蚀速率(CRS)。为了建立氧气清除剂的安全操作浓度,在一系列条件下进行测试以确定海水中氧气清除剂的腐蚀性。初始测试工作确定了在实验室注入SBS时腐蚀速率尖峰,并设计了所有后续工作以确定产生这些腐蚀尖峰的机制。在没有氧气的情况下使用和没有氧气进行清除术。本研究包括的参数是SBS浓度,四羟甲基 - 鏻(THPS)浓度,温度和pH。电解质仿真软件用于确定可能有助于腐蚀环境的主要水性反应。本文概述了实验室测试的测试协议和结果以及水性建模。根据试验结果和含水模拟,49ppm SBS的野外剂量率似乎是对腐蚀性和有效消除溶解氧的安全性。

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