硫酸和柠檬酸溶液对水泥硬化浆体的腐蚀及机理
作者:
作者单位:

1.同济大学 先进土木工程材料教育部重点实验室,上海 201804;2.同济大学 材料科学与工程学院,上海 201804;3.上海市水务局城市管网智能评估与修复工程技术研究中心,上海 201900;4.乌兰浩特市圣益商砼有限公司,内蒙古 乌兰浩特 137400;5.云南氟业环保科技股份有限公司,云南 昆明 650011

作者简介:

金惠玲(1998—),女,吉林延吉人,同济大学硕士生.E-mail:2357868615@qq.com

通讯作者:

孙振平(1969—),男,新疆奇台人,同济大学教授,博士生导师,博士.E-mail: grtszhp@163.com

中图分类号:

TU528.33

基金项目:

国家自然科学基金资助项目(52278272,52108240);上海市科委项目(19DZ1202702,19DZ1201404);上海市建委专项课题(住建管2021-001-002);上海市科委(上海市外专局)项目(22WZ2502400);重庆市科技局专项项目(cstc2020kqjscx-phxm1594);内蒙古自治区科技计划项目(2022YFDZ0063);云南省科技厅专家工作站项目(202105AF150243)


Corrosion and Mechanism of Sulfuric Acid and Citric Acid Solution on Cement Hardened Paste
Author:
Affiliation:

1.Key Laboratory of Advanced Civil Engineering Materials of Ministry of Education, Tongji University, Shanghai 201804, China;2.School of Materials Science and Engineering, Tongji University, Shanghai 201804, China;3.Research Center of Intelligent Evaluation and Restoration Engineering Technology of Urban Pipe Network of Shanghai Water Bureau, Shanghai 201900, China;4.Ulanhot Shengyi Commercial Concrete Co., Ltd., Ulanhot 137400, China;5.Yunnan Fluorine Industry Environmental Protection Technology Co., Ltd., Kunming 650011, China

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    摘要:

    通过分析砂浆的外观、质量损失率和耐蚀系数,结合X射线衍射(XRD)、扫描电镜(SEM)和元素能谱分析(EDS)等微观测试手段,对比研究了硅酸盐水泥、铝酸盐水泥浆体在硫酸、柠檬酸溶液中的腐蚀规律与机理.结果表明:与硫酸溶液相比,柠檬酸溶液对两种水泥砂浆的腐蚀能力更强;与硅酸盐水泥相比,铝酸盐水泥表现出了较好的耐酸腐蚀性能,主要原因在于铝酸盐水泥硬化浆体中含有大量铝胶,在硫酸溶液中能够中和更多H+,在柠檬酸溶液中能够延缓H+向硬化浆体内部扩散的速率.

    Abstract:

    The corrosion laws and the mechanisms of Portland cement hardened paste and aluminate cement hardened paste in sulfuric acid and citric acid solutions were studied by analyzing the appearance change of mortar, measuring the mass loss rate and corrosion resistance coefficient of mortar in acid solutions combined with X-ray diffraction(XRD), scanning electron microscopy (SEM) and elemental energy spectroscopy (EDS). The results show that compared with sulfuric acid solution, citric acid solution has stronger corrosion ability for two cement mortars. Compared with Portland cement, aluminate cement shows better acid corrosion resistance, mainly because the hardened paste of aluminate cement contains a large amount of aluminum glue, which can neutralize more H+ in sulfuric acid solution and delay the diffusion rate of H+ to the inside of the hardened paste in citric acid solution.

    表 1 水泥的化学组成Table 1 Chemical composition(by mass) of cement
    图1 酸腐蚀60 d后的净浆横截面Fig.1 Cross section of paste after acid corrosion for 60 d
    图2 硫酸溶液中硅酸盐水泥砂浆外观随腐蚀时间的变化Fig.2 Appearance change of Portland cement mortar in sulfuric acid with corrosion time
    图3 柠檬酸溶液中硅酸盐水泥砂浆外观随腐蚀时间的变化Fig.3 Appearance change of Portland cement mortar in citric acid with corrosion time
    图4 硫酸溶液中铝酸盐水泥砂浆外观随腐蚀时间的变化Fig.4 Appearance change of aluminate cement mortar in sulfuric acid with corrosion time
    图5 柠檬酸溶液中铝酸盐水泥砂浆外观随腐蚀时间的变化Fig.5 Appearance change of aluminate cement mortar in citric acid with corrosion time
    图6 砂浆在酸溶液中的质量损失率随腐蚀时间的变化Fig.6 Changes of mass loss rates of mortars in acid solutions with corrosion time
    图7 砂浆在酸溶液中的耐蚀系数随腐蚀时间的变化Fig.7 Changes of corrosion resistance coefficients of mortars in acid solutions with corrosion time
    图8 受硫酸溶液腐蚀60 d的硅酸盐水泥净浆腐蚀层的微观表征Fig.8 Microscopic tests of Portland cement paste corrosion layer corroded by sulfuric acid for 60 d
    图9 受柠檬酸溶液腐蚀60 d的硅酸盐水泥净浆腐蚀层的微观表征Fig.9 Microscopic tests of Portland cement paste corrosion layers corroded by citric acid for 60 d
    图10 受硫酸溶液腐蚀60 d的铝酸盐水泥浆体腐蚀层的微观表征Fig.10 Microscopic tests of aluminate cement paste corrosion layers corroded by sulfuric acid for 60 d
    图11 受柠檬酸溶液腐蚀60 d的铝酸盐水泥浆体腐蚀层的微观表征Fig.11 Microscopic tests of aluminate cement paste corrosion layers corroded by citric acid for 60 d
    表 2 砂浆的配合比Table 2 Mix proportions of mortars
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金惠玲,孙振平,杨海静,马跃飞,李志林.硫酸和柠檬酸溶液对水泥硬化浆体的腐蚀及机理[J].建筑材料学报,2024,27(1):58-66

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  • 收稿日期:2023-02-01
  • 最后修改日期:2023-05-25
  • 在线发布日期: 2024-01-26
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