中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Chloride-binding capacity of mortars composed of marine sand subjected to external chloride penetration

文献类型:CNKI期刊论文

作者Congtao SUN; Ming SUN; Tao TAO; Feng QU; Gongxun WANG; Peng ZHANG; Yantao LI; Jizhou DUAN
发表日期2022-07-15
出处Journal of Oceanology and Limnology
关键词marine sand mortar chloride binding Friedel's salt pore structure
英文摘要In order to explore the interactional relations of internal chloride and external chloride-binding amongst the cementitious materials, the chloride-binding capacity of mortars composed of marine sand(MS) or washed marine sand(WMS) were investigated. Results indicate that more external chloride can penetrate and diffuse more deeply into the WMS mortar than that in the MS mortar. This phenomenon suggests that the external chloride migration resistance due to WMS is lower than that caused by MS. The distribution trends of the bound chloride content in the two types of mortars are the same at different immersion times. However, a significantly decreased area of the bound chloride content exists at the border of the external penetration area(EPA) and the external unaffected area(EUA) at the immersion ages of 3 and 7 d, and then it disappears gradually with immersion time. The WMS mortar can bind more external chloride, whereas the MS mortar can bind more internal chloride, at different immersion times. The distributions of bound chloride conversion rate in the EPAs of the two types of mortars differ across immersion times. The distribution firstly decreases, and then it increases at the immersion ages of 3 and 7 d. The distribution was from increase, then decreases, and increase again at the immersion ages of 28 and 56 d. The bound chloride conversion rate in the WMS mortar is affected more greatly by external chloride penetration than that in the MS mortar. The amounts of the Friedel's salt tend to increase with prolonged immersion time. Finally, the penetration of external chloride can increase the amount of fine capillary pores smaller than 100 nm in the WMSmortar exposed for 56 d in the chloride salt solution(WMS-E) specimen.
文献子类CNKI期刊论文
资助机构Supported by the Natural Science Key Foundation of Shandong Province (No. ZR2020KE046) ; the National Natural Science Foundation of China for Exploring Key Scientific Instrument (No. 41827805) ; the Basic Science Research Project of Nantong City (No. JC2020125) ; the Strategic Priority Project of CAS (No. XDA13040402)
v.40期:04页:176-185
语种英文;
分类号TU528
ISSN号2096-5508
源URL[http://ir.qdio.ac.cn/handle/337002/187374]  
专题中国科学院海洋研究所
作者单位1.SchoolofCivilEngineering,QingdaoUniversityofTechnology
2.KeyLaboratoryofMarineEnvironmentalCorrosionandBio-fouling,InstituteofOceanology,ChineseAcademyofSciences
3.OpenStudioforMarineCorrosionandProtection,PilotNationalLaboratoryforMarineScienceandTechnology(Qingdao)
4.NantongResearchandDevelopmentCenterofMarineScienceandTechnology,InstituteofOceanology,ChineseAcademyofSciences
5.SchoolofCivilEngineering,HunanUniversityofScienceandTechnology
推荐引用方式
GB/T 7714
Congtao SUN,Ming SUN,Tao TAO,et al. Chloride-binding capacity of mortars composed of marine sand subjected to external chloride penetration. 2022.

入库方式: OAI收割

来源:海洋研究所

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