Development and Evaluation of Respirometric in Situ Corrosion Monitoring System

Ajala M.O., Ajide O.O, Idusuyi N.
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Abstract

There is a growing need for a system to be used for real-time in-situ monitoring of corrosion rates. This system/method allows the determination of real-time corrosion rates under realistic exposure conditions and is capable of following changing exposure conditions in situ. This is realized by a combination of optical Oxygen sensor measurements with either gravimetric volume sensitive techniques or pressure sensor based techniques in a closed chamber. This study was therefore aimed at developing and evaluating a low-cost, real-time corrosion monitoring system, using copper (Cu) as a test sample. Materials used were sourced locally, the circuitry was designed and used to develop the system with incorporation of sensors that can monitor temperature, humidity and pressure within an airtight glass bottle and placed in a housing which was fabricated. The developed system was then evaluated using a piece of Cu exposed to 5% Sodium Chloride (NaCl). Hydrogen evolution reaction (HER) and Oxygen Reduction Reaction (ORR) within the closed chamber were monitored; and thus Ideal gas and Henry laws were adopted to calculate the amount of gas molecules, and convert them to cathodic reactions. The methods were carried out in accordance with existing literature and standard procedure. Results of evaluation of the system showed that, the more Oxygen is being consumed, the higher the corrosion. Mass loss validation measurements carried out at the end of exposure showed a good correlation with the total recorded cathodic charge. Immersion corrosion kinetics can be monitored non-destructively and in real-time. Manometric approach showed that HER leads to a pressure increase while ORR leads to a decrease in pressure. ORR monitoring is possible based on the amount of consumed O2 by manometric and sensor-based approaches; sensitive, non-destructive corrosion rate measurements are possible on Cu and could be monitored remotely.
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呼吸法现场腐蚀监测系统的研制与评价
人们越来越需要一种用于实时监测腐蚀速率的系统。该系统/方法可以在实际暴露条件下实时测定腐蚀速率,并且能够跟踪现场暴露条件的变化。这是通过光学氧传感器测量与重力体积敏感技术或基于封闭室的压力传感器技术的组合来实现的。因此,本研究旨在开发和评估一种低成本、实时腐蚀监测系统,使用铜(Cu)作为测试样品。所使用的材料来自当地,电路被设计并用于开发系统,该系统结合了传感器,可以监测密封玻璃瓶内的温度、湿度和压力,并放置在制造的外壳中。然后使用一块暴露于5%氯化钠(NaCl)中的铜对所开发的体系进行评估。监测密闭腔内析氢反应(HER)和氧还原反应(ORR);因此,采用理想气体定律和亨利定律计算气体分子的数量,并将其转化为阴极反应。方法按照现有文献和标准程序进行。评价结果表明,系统耗氧量越大,腐蚀程度越高。在暴露结束时进行的质量损失验证测量显示与记录的总阴极电荷有很好的相关性。浸没腐蚀动力学可以非破坏性地实时监测。压力测量方法表明,HER导致压力增加,而ORR导致压力降低。通过压力测量和基于传感器的方法,可以根据消耗的氧气量进行ORR监测;可以对Cu进行敏感的、非破坏性的腐蚀速率测量,并且可以远程监控。
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