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The effectuation of seawater on the microstructural features and the compressive strength of fly ash blended cement at early and later ages | |
Yaseen,Sarah Abduljabbar1,2; Yiseen,Ghadah Abdaljabar3; Poon,Chi Sun1; Leung,Christopher K.2; Li,Zongjin4 | |
2023-03-30 | |
Source Publication | Journal of the American Ceramic Society |
ISSN | 0002-7820 |
Volume | 106Issue:8Pages:4967-4986 |
Abstract | The current work scrutinizes the effectuation of seawater on morphological properties, pore structure, and compressive strength during the hydration process of fly ash blended cement at 3, 7, 28, 56, and 90 days to better understand the influence of salinity conditions of seawater on the microstructural modification and strength development of the hydration products as well as the total porosity. The chemical reaction's mechanism of mightily soluble salts, for example, MgSO and NaCl, with hydrated fly ash and blended cement (calcium-bearing phases) was also confirmed. Fourier-transform infrared spectroscopy has been appointed to observe and characterize the energetics of variation in the formulation of portlandite (CH), calcium silicate hydrate, gypsum (Gy), ettringite (AFt), and calcium chloroaluminate (Friedel's salt [FS]) throughout the hydration process of fly ash blended cement with seawater in comparison with deionized water. X-ray diffraction analysis exposed that the peak intensities of FS, portlandite, and some particular phases of the hydrated fly ash blended cement in seawater are higher and sharper than the comparable peaks in deionized water. Mercury intrusion porosimetry-measurements have been appointed that the total porosity of artificial seawater (ASW) was decreased from 28.9% at 3 days to 19.4% at 56 days. In addition, the average, median, and critical pore diameter were decreased in ASW while compared to deionized water (DIW). The reaction products of this work were also characterized using scanning electron microscopy, EDS, compressive strength, and isothermal calorimeter. |
Keyword | Compressive Strength Ftir Mip Seawater Sem Xrd |
DOI | 10.1111/jace.19109 |
URL | View the original |
Indexed By | SCIE |
Language | 英語English |
WOS Research Area | Materials Science |
WOS Subject | Materials Science, Ceramics |
WOS ID | WOS:000966623900001 |
Publisher | WILEY111 RIVER ST, HOBOKEN 07030-5774, NJ |
Scopus ID | 2-s2.0-85152359984 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING |
Corresponding Author | Yaseen,Sarah Abduljabbar |
Affiliation | 1.Department of Civil and Environmental Engineering,The Hong Kong Polytechnic University,Kowloon,Hong Kong 2.Department of Civil and Environmental Engineering,Hong Kong University of Science and Technology,Kowloon,Hong Kong 3.Department of Chemistry,College of Science,University of Baghdad,Baghdad,Iraq 4.Institute of Applied Physics and Materials Engineering,University of Macau,Macao |
Recommended Citation GB/T 7714 | Yaseen,Sarah Abduljabbar,Yiseen,Ghadah Abdaljabar,Poon,Chi Sun,et al. The effectuation of seawater on the microstructural features and the compressive strength of fly ash blended cement at early and later ages[J]. Journal of the American Ceramic Society, 2023, 106(8), 4967-4986. |
APA | Yaseen,Sarah Abduljabbar., Yiseen,Ghadah Abdaljabar., Poon,Chi Sun., Leung,Christopher K.., & Li,Zongjin (2023). The effectuation of seawater on the microstructural features and the compressive strength of fly ash blended cement at early and later ages. Journal of the American Ceramic Society, 106(8), 4967-4986. |
MLA | Yaseen,Sarah Abduljabbar,et al."The effectuation of seawater on the microstructural features and the compressive strength of fly ash blended cement at early and later ages".Journal of the American Ceramic Society 106.8(2023):4967-4986. |
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