Mobile QR Code QR CODE

Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
  • Indexed by
  • Korea Citation Index (KCI)

References

1 
AASHTO (2015), Standard method of test for surface resistivity indication of concrete's ability to resist chloride ion penetration. American Association of State Highway and Transportation Officials, Washington DC, USA.URL
2 
Ahmadi, B., and Shekarchi, M. (2010), Use of natural zeolite as a supplementary cementitious material, Cement & Concrete Composites, 32, 134-141.DOI
3 
Choi, D. U., Hong, K. C., Ochirbud, M., Meiramov, D., and Sukontaskuul, P. (2023), Mechanical properties of ultra-high performance concrete (UHPC) and ultra-high performance fiber-reinforced concrete (UHPFRC) with recycled sand, International Journal of Concrete Structures Materials, 17(67).DOI
4 
Gowram, I., and Beulah, M. (2021), Use of zeolite and industrial waste materials in high strength concrete – A review, Materials Today : Proceedings, 46, 116-123.DOI
5 
Grass, G., Rensing, C., and Solioz, M. (2011), Metallic copper as an antimicrobial surface, Applied and Environmental Microbiology, 77(5), 1541-1547.DOI
6 
Hwang, J. W., Yang, K. H., Yoon, H. S., and Lee, S. S. (2022), Feasibility tests of bacteria-based self-healing pellets to repair mortar cracks, Journal of the Korea Concrete Institute, 34(5), 487-496 (in Korean).DOI
7 
Kim, I. S., Choi, S. Y., and Yang, E. I. (2020), Evaluation of compressive strength and freeze-thaw resistance properties of concrete using superabsorbent polymer, Journal of the Korea Institute for Structural Maintenance and Inspection, 24(5), 86-94 (in Korean).DOI
8 
Kim, I. S., Choi, S. Y., and Yang, E. I. (2024), Comparison of fundamental properties and durability of mortar mixed with antibacterial functional materials, Magazine of Concrete Research, 76(2), 69-81.DOI
9 
Kim, I. S., Choi, S. Y., Choi, Y. S., and Yang, E. I. (2021a), An experimental study on absorptivity measurement of superabsorbent polymers (SAP) and effect of SAP on freeze-thaw resistance in mortar specimen, Construction and Building Materials, 267, 120974.DOI
10 
Kim, I. S., Choi, S. Y., Choi, Y. S., and Yang, E. I. (2021b), Evaluation of fundamental properties and formaldehyde reduction capacity of concrete mixed with phytoncide, Journal of the Korea Concrete Institute, 33(5), 531-538 (in Korean).DOI
11 
Lee, Y. K., Woo, J. S., Choi, S. R., and Shin, E. S. (2015), Comparison of phytoncide (monoterpene) concentration by type of recreational forest, Journal of Environmental Health Sciences, 41(4), 241-248.DOI
12 
Najimi, M., Sobhani, J., Ahmadi, B., and Shekarchi, M. (2012), An experimental study on durability properties of concrete containing zeolite as a highly reactive natural pozzolan, Construction and Building Materials, 35, 1023-1033.DOI
13 
NIH(National Institutes of Health) (2020), New coronavirus stable for hours on surfaces, https://www.nih.gov/news-events/news-releases/new-coronavirus-stable-hours-surfaceURL
14 
Markiv, T., Sobol, K., Franus, M., and Franus, W. (2016), Mechanical and durability properties of concretes incorporating natural zeolite, Archives of Civil and Mechanical Engineering, 16(4), 554-562.DOI
15 
Mohammed, T. A., Kasie, Y. M., Assefa, E., Getu, Y. M., and Tufa, D. H. (2024), Enhancing structural resilience: Microbial-based self-healing in high-strength concrete, International Journal of Concrete Structures and Materials, 18(3), 567-583.DOI
16 
Raggiotti, B. B., Positieri, M. J., and Oshiro, A. (2018), Natural zeolite, a pozzolan for structural concrete, Procedia Structural Integrity, 11, 36-43.DOI
17 
Ramezanianpour, M. A., Mousavi, R., Kalhori, M., Sobhani, J., and Najimi, M. (2015), Micro and macro level properties of natural zeolite contained concretes, Construction and Building Materials, 101, 347-358.DOI
18 
Sabet, F. A., Libre, N. A., and Shekarchi, M. (2013), Mechanical and durability properties of self consolidating high performance concrete incorporating natural zeolite, silica fume and fly ash, Construction and Building Materials, 44, 175-184.DOI
19 
Shekarchi, M., Ahmadi, B., Azarhomayun, F., Shafei, B., and Kioumarsi, M. (2023), Natural zeolite as a supplementary cementitious material – A holistic review of main properties and applications, Construction and Building Materials, 409, 133766.DOI
20 
Shin, K. J., Lee, S. C., and Kim, Y. Y. (2019), High ductile fiber reinforced concrete with micro fibers, Journal of the Korea Institute for Structural Maintenance and Inspection, 23(2), 92-98 (in Korean).DOI
21 
Yoon, C. B., and Lee, H. S. (2020), Study on the effect of fineness and substitution rate of natural zeolites on chemical reaction and physical properties of cement mortar, Journal of the Korea Institute for Structural Maintenance and Inspection, 24(3), 96-103 (in Korean).DOI