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Detection of Chlorides in Pore Water of Cement Based Materials by Potentiometric Sensors

机译:电位传感器检测水泥基材料孔隙水中氯化物

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Free chloride ions dissolved in pore water of cement based materials initiate the corrosion of steel rebars used for reinforcement of concrete and thus pose serious constant danger to the safety of reinforced concrete structures. The in-situ monitoring of the content of chlorides in pore water with second order Ag/AgCl electrodes is an elegant approach which, however, suffers from poor stability of Ag/AgCl electrodes in highly alkaline environment like pore water. In this work the electrochemical stability of plain and stabilized electrodeposited Ag/AgCl sensors in extreme alkaline conditions are presented. The electrochemical processes were elucidated which govern the potentiometric response of Ag/AgCl sensors and determine their performance. The results have shown suitable stability and reproducibility of stabilized Ag/AgCl sensors over five months, which was sufficient for laboratory testing of chloride ingress into cement based materials. The embedded calibrated sensor elements were used to monitor the chloride uptake into cylindrical mortar specimen dipped into simulated pore water containing about 3 wt% of chloride ions. The velocity of diffusing front and the diffusion coefficient of chloride ions in pore water of cylindrical mortar sample were estimated from concentration-time profiles determined by chloride sensors positioned at defined positions in the sample wall.
机译:溶解在水泥基材料孔隙中的游离氯离子引发了用于加强混凝土的钢筋的腐蚀,从而对钢筋混凝土结构的安全构成严重持续危险。使用二阶AG / AGCl电极的孔隙水中氯化物含量的原位监测是一种优雅的方法,但是,在高度碱性环境中具有良好的Ag / AgCl电极的稳定性较差,如孔水。在这项工作中,提出了普通和稳定电沉积的电沉积Ag / AgCl传感器在极碱性条件下的电化学稳定性。阐明了电化学过程,其控制Ag / AgCl传感器的电位响应并确定其性能。结果表明了五个月内稳定的Ag / AgCl传感器的合适稳定性和再现性,足以用于氯化物进入的实验室测试到水泥基材料。嵌入式校准的传感器元件用于将氯化物摄取到圆柱形砂浆样本中浸入含有约3wt%的氯离子的模拟孔隙水中。从定位在样品壁中定位位置确定的浓度 - 时间曲线估计圆柱形砂浆样品孔隙水中孔水中氯离子的速度速度和扩散系数的速度。

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