Tian Yupeng, Zhang Peng, Zhao Kaiyue, Du Zhenxing, Zhao Tiejun
Center for Durability & Sustainability Studies, Qingdao University of Technology, Qingdao 266033, China.
Department of Civil Engineering, Qingdao University of Technology, Qingdao 266033, China.
Sensors (Basel). 2020 Mar 4;20(5):1394. doi: 10.3390/s20051394.
An Ag/AgCl electrode used as a corrosion sensor in a reinforced concrete structure isconsidered as having good application prospect. However, its performance under complexconditions, such as dry-wet cycle condition, is not affirmed. In the current study, the performanceof Ag/AgCl as chloride selective electrode in mortar exposed to dry-wet cycle condition wasinvestigated. A simple Ag/AgCl electrode was prepared and fabricated by electrochemicalanodization. These Ag/AgCl electrodes were embedded into a mortar specimen with temperaturesensors, humidity sensors and anode ladder monitoring system (ALS). After 28 d curing time, theupper surface of mortar specimen was wetted (with 5% NaCl solution) and dried regularly. Theobtained results indicate that Ag/AgCl electrode responds to the ingress of chloride ion, sensitively.The chloride ion concentration variation can be reflected by the potential trend. Furthermore, thebalance potential of Ag/AgCl electrodes is influenced by dry-wet cycles. Compared with ALS, itdemonstrates that Ag/AgCl electrodes are more sensitive to chloride. The research provides the keyelement for the specific application of Ag/AgCl electrode for corrosion monitoring in the future.
用作钢筋混凝土结构腐蚀传感器的银/氯化银电极具有良好的应用前景。然而,其在干湿循环等复杂条件下的性能尚未得到确认。在本研究中,对银/氯化银作为暴露于干湿循环条件下的砂浆中氯离子选择性电极的性能进行了研究。通过电化学阳极氧化制备了一种简单的银/氯化银电极。将这些银/氯化银电极与温度传感器、湿度传感器和阳极梯监测系统(ALS)一起嵌入砂浆试件中。养护28 d后,定期对砂浆试件上表面进行湿润(用5%氯化钠溶液)和干燥处理。所得结果表明,银/氯化银电极对氯离子的侵入反应灵敏。氯离子浓度变化可通过电位趋势反映出来。此外,银/氯化银电极的平衡电位受干湿循环影响。与ALS相比,表明银/氯化银电极对氯离子更敏感。该研究为银/氯化银电极未来在腐蚀监测中的具体应用提供了关键要素。