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Developments in chlorine detection in concrete using NMR

机译:使用NMR混凝土氯检测的发展

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Monitoring chloride concentration and transport in concrete structures susceptible to corrosion of embedded steel reinforcement is a challenge as difficult as it is important. An embedded sensor based on nuclear magnetic resonance (NMR) would be a good solution to the problem because it would make a non-destructive atom-specific measurement of the presence and concentration of chloride. The important question is the scale of the device required to detect the chloride. Laboratory experiments to detect chloride in a cement matrix using pulse-NMR were conducted to assess the potential of this application; they provided a basis for projecting the scale of a device that would have a good chance of success. The coils were cm-scale and the magnetic field was 2.35 T. NMR signals were obtained from both aqueous chloride solution and samples of both regular and white portland cement. The experiments demonstrated that the signal-to-noise ratio (SNR) for a cm-scale cement sample volume is so small, even after averaging, that sample volumes much lower than that are unlikely to produce measurable signals at fields of 1 T or below. Thus the potential for realizing an embedded NMR-based sensor including the magnet is low. Parametric studies identify feasible alternative coil diameters and magnetic field strengths for detecting chloride ion concentrations in hardened concrete.
机译:监测氯化物浓度和混凝土结构的运输易受嵌入式钢筋腐蚀的腐蚀是一种挑战,因为它很重要。基于核磁共振(NMR)的嵌入式传感器是对问题的良好解决方案,因为它将产生非破坏性原子特异性测量氯化物的存在和浓度。重要问题是检测氯化物所需的装置的规模。进行使用脉冲NMR检测水泥基质中氯化物的实验室实验,以评估本申请的潜力;他们为投射了一个有很大成功机会的设备的规模提供了基础。线圈是Cm级,磁场为2.35吨。从氯化物水溶液和常规和白色波特泥浆的样品中获得NMR信号。实验表明,即使在平均值之后,CM级水泥样品体积的信噪比(SNR)也很小,该样本量远低于不太可能在1吨或下方产生可测量信号的样本量。因此,实现包括磁体的嵌入式基于NMR的传感器的可能性低。参数研究确定可行的替代线圈直径和用于检测硬化混凝土中氯离子浓度的可行替代线圈直径和磁场强度。

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