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包括电极过程的标准迁移试验中氯离子传输的建模。

Modelling of Chloride Transport in the Standard Migration Test including Electrode Processes.

作者信息

Kribes Zine-Eddine, Cherif Rachid, Aït-Mokhtar Abdelkarim

机构信息

LaSIE UMR CNRS 7356, La Rochelle University, 17000 La Rochelle, France.

出版信息

Materials (Basel). 2023 Sep 14;16(18):6200. doi: 10.3390/ma16186200.

Abstract

The modelling of chloride transport in concrete under an electrical field requires taking into account the electrode processes. These processes are very rarely introduced into the literature, despite their impact on chloride migration and the electroneutrality of the pore solution of the material. This paper aims to propose a multi-ion model for chloride migration that takes into consideration the electrode processes. The model is applied to simulate the standard chloride migration test. The generation of OH in the cathode and H in the anode allows for the monitoring of the electroneutrality. The model considers all of the ions in the pore solution. Ion fluxes are calculated using the Nernst-Planck equation. The Langmuir model is used to simulate the chloride isotherms. The thermodynamic equilibrium in the material is considered, which reflects the ion-solid interactions during the migration. Measurements of water porosity and the chemical composition of the pore solution are essential to provide input data and the initial and boundary conditions. The numerical results of the ion profiles in the material studied confirm the electroneutrality at any point within the material, in contrast with models that do not take the electrode processes into account. The proposed model allows for the more accurate simulation of the chloride migration test and electrochemical chloride extraction in reinforced concrete structures subjected to NaCl as part of maintenance and repair strategies.

摘要

在电场作用下混凝土中氯离子传输的建模需要考虑电极过程。尽管这些过程对氯离子迁移和材料孔隙溶液的电中性有影响,但在文献中很少被提及。本文旨在提出一种考虑电极过程的氯离子迁移多离子模型。该模型用于模拟标准氯离子迁移试验。阴极处OH的生成和阳极处H的生成有助于监测电中性。该模型考虑了孔隙溶液中的所有离子。离子通量使用能斯特-普朗克方程计算。朗缪尔模型用于模拟氯离子等温线。考虑了材料中的热力学平衡,这反映了迁移过程中的离子-固体相互作用。测量水孔隙率和孔隙溶液的化学成分对于提供输入数据以及初始和边界条件至关重要。所研究材料中离子分布的数值结果证实了材料内任何一点的电中性,这与未考虑电极过程的模型形成对比。所提出的模型能够更准确地模拟作为维护和修复策略一部分的钢筋混凝土结构中氯离子迁移试验和电化学氯离子提取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da29/10532969/153825115ffb/materials-16-06200-g001.jpg

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