酸雨侵蚀下水泥基注浆材料劣化的宏观动力学及其使用寿命预测

IF 2.6 1区 艺术学 Q2 CHEMISTRY, ANALYTICAL
Wenjing Hu, Shiqiang Fang, Lina Xie, Xueqiang Chen, Bingjian Zhang
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引用次数: 0

摘要

水泥基注浆材料被广泛应用于不安全岩石的加固和岩刻文物的防渗,但在古遗址保护中被认为是不合适的。由于这种方法是不可逆的,因此需要更长的使用寿命,需要预测使用寿命的方法。在此,我们提出了一个基于钙离子溶解量的通用公式来预测水泥基浆液因酸沉降引起的劣化率。实验结果表明,钙离子的溶解量与lnT和pH值呈线性关系,pH值大于3.0时准确度较好。本研究为预测室外酸雨侵袭下水泥基注浆材料的使用寿命提供了一种简便、定量的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Macrokinetics of the deterioration of cement-based grouting material for predicting its service life under acid rain attack

Macrokinetics of the deterioration of cement-based grouting material for predicting its service life under acid rain attack

Cement-based grouting material is widely used to reinforce the unsafe rock and control seepage of rock-carved relics although it is considered inappropriate in protection of ancient sites. As this approach is irreversible, a longer service life is desirable for the grouting material and methods to predict the service life are needed. Here we propose a universal formula based on the dissolved amount of calcium ion to predict the deterioration rate of cement-based grout caused by acid deposition in the laboratory. The experimental results showed that the dissolved amount of calcium ion had a linear relationship with lnT and the pH value, with better accuracy when the pH value was greater than 3.0. This work maybe could provide a facile and quantitative method to help us predict the service life of cement-based grouting material under acid rain attack outdoors.

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来源期刊
Heritage Science
Heritage Science Arts and Humanities-Conservation
CiteScore
4.00
自引率
20.00%
发文量
183
审稿时长
19 weeks
期刊介绍: Heritage Science is an open access journal publishing original peer-reviewed research covering: Understanding of the manufacturing processes, provenances, and environmental contexts of material types, objects, and buildings, of cultural significance including their historical significance. Understanding and prediction of physico-chemical and biological degradation processes of cultural artefacts, including climate change, and predictive heritage studies. Development and application of analytical and imaging methods or equipments for non-invasive, non-destructive or portable analysis of artwork and objects of cultural significance to identify component materials, degradation products and deterioration markers. Development and application of invasive and destructive methods for understanding the provenance of objects of cultural significance. Development and critical assessment of treatment materials and methods for artwork and objects of cultural significance. Development and application of statistical methods and algorithms for data analysis to further understanding of culturally significant objects. Publication of reference and corpus datasets as supplementary information to the statistical and analytical studies above. Description of novel technologies that can assist in the understanding of cultural heritage.
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