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Measuring the Performance of Corrosion Inhibitors to Prevent Black Powder Formation Using a Novel Quartz Crystal Microbalance Technique

机译:测量腐蚀抑制剂的性能,以防止使用新型石英晶微观技术进行黑粉形成

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Black powder formation is an oxidative corrosion process that over time can cause operational problems as the solids collect within the system. There is a net weight gain within the system as molecular oxygen becomes incorporated as part of the solid materials. A novel quartz crystal microbalance (QCM) test apparatus has been developed to determine the effectiveness of various corrosion inhibitors to prevent black powder formation in sales gas pipelines. The QCM measures minute changes in frequency of a quartz crystal with weight gain/loss. For our test apparatus, the QCM crystal was coated with iron where small increases in mass due to oxidation of the iron layer were recorded as a drop in frequency. Using the Sauerbrey equation, the drop in frequency observed during corrosion testing can be converted to a corrosion rate. Several inhibitor chemistries were tested using the QCM apparatus. In this study it was found that a new oil-soluble corrosion inhibitor is the most effective for preventing black powder ormation under the sales gas conditions.
机译:黑色粉末形成是一种氧化腐蚀过程,随着时间的推移可能导致操作问题,因为固体在系统内收集。系统内有净重的净重增加,因为分子氧作为固体材料的一部分结合。已经开发了一种新型石英晶体微稳定(QCM)测试装置以确定各种腐蚀抑制剂的有效性,以防止销售气体管道中的黑色粉末形成。 QCM测量Quartz晶体频率的微小变化,重量增益/损耗。对于我们的测试装置,QCM晶体涂覆有铁,其中由于铁层的氧化由于铁层的氧化而质量的小增加被记录为频率下降。使用Sauerbrey方程,腐蚀测试期间观察到的频率下降可以转换为腐蚀速率。使用QCM装置测试几种抑制剂化学物质。在这项研究中,发现新的油溶性腐蚀抑制剂是防止销售气体条件下的黑色粉末ormation最有效的腐蚀抑制剂。

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