Non-destructive analysis of concrete for corrosion studies using nuclear technique

A. Naqvi, M. M. Nagadi, M. Garwan, O. Al-Amoudi, M. Maslehuddin, Khateeb-ur-Rehman Khateeb-ur-Rehman, M. Raashid
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Abstract

Chloride-induced reinforcement corrosion is the principal cause of deterioration of concrete structures in the Arabian Gulf and the world over. Preventive measures against corrosion require maintaining the chloride and sulphate concentration in concrete below the threshold limits specified by the standards. This requires monitoring the chloride and sulphate concentration in concrete, and a nondestructive technique is preferable for this purpose. The Prompt-Gamma Neutron Activation Analysis (PGNAA) technique can be used to monitor the concentration of corrosive elements in concrete specimens. An accelerator-based PGNAA setup has been developed to measure the chloride and sulphate concentration in concrete. The PGNAA technique has been utilised successfully to measure the elemental composition of concrete. In this regard, several studies were undertaken to determine the calcium, silicon, chloride and sulphate concentration in the concrete specimens. Furthermore, the concentration of compounds, such as lime and silica was also determined. The results of these studies along with a description of the facility are presented in this paper.
用核技术进行混凝土腐蚀无损分析
氯化物引起的钢筋腐蚀是阿拉伯湾和世界各地混凝土结构恶化的主要原因。防止腐蚀的措施要求将混凝土中的氯化物和硫酸盐浓度保持在标准规定的阈值范围以下。这就需要监测混凝土中的氯化物和硫酸盐浓度,而非破坏性技术是实现这一目的的首选方法。快速中子活化分析(PGNAA)技术可用于监测混凝土试样中腐蚀元素的浓度。研制了一种基于加速剂的PGNAA装置,用于测量混凝土中氯化物和硫酸盐的浓度。PGNAA技术已成功地用于测量混凝土的元素组成。在这方面,进行了几项研究,以确定混凝土样品中的钙、硅、氯化物和硫酸盐浓度。此外,还测定了石灰和二氧化硅等化合物的浓度。本文介绍了这些研究的结果以及对该设施的描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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