PERTANIKA JOURNAL OF TROPICAL AGRICULTURAL SCIENCE

 

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Pertanika Journal of Tropical Agricultural Science, Volume J, Issue J, January J

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  • Ali, I. M., Nasr, M. S., & Naje, A. S. (2020). Enhancement of cured cement using environmental waste: particleboards incorporating nano slag. Open Engineering, 10(1), 273-281. doi: https://doi.org/10.1515/eng-2020-0031

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  • de la Cruz Barroso, J. C., del Campo, J. M., & Aranguren, D. C. (2015). Comparative study on porosity and permeability of conventional concrete and concrete with variable proportions of natural zeolite additions. Revista de la Construcción, 14(3), 72-78.

  • Du, S., Wu, J., AlShareedah, O., & Shi, X. (2019). Nanotechnology in cement-based materials: A review of durability, modeling, and advanced characterization. Nanomaterials, 9(9), 1-29. doi: https://doi.org/10.3390/nano9091213

  • Elia, H. N., Ghosh, A., Akhnoukh, A. K., & Nima, Z. A. (2018). Using nano- and micro-titanium dioxide (TiO2) in concrete to reduce air pollution. Journal of Nano Medicine and Nanotechnology, 9(3), 1-5. doi: 10.4172/2157-7439.1000505

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  • Ltifi, M., Guefrech A., Mounanga P., & Khelidj A. (2011). Experimental study of the effect of addition of nano-silica on the behavior of cement mortars. Procedia Engineering, 10, 900-905. doi: https://doi.org/10.1016/j.proeng.2011.04.148

  • Mehta, P. K., & Monteiro, P. J. (2006). Concrete microstructure, properties, and materials (3rd Ed.). New York, USA: McGraw-Hill.

  • Mendes, T. M., Hotza, D., & Repette, W. L. (2015). Nanoparticles in cement based materials: A review. Revision Advance Materials Science, 40(1), 89-96.

  • Othman, F. M., Hameed, A. A., & Ibrahim, S. I. (2016). Studying the effect of nano additives and coating on some properties of cement mortar mixes. Engineering and Technology Journal, 34(3 Part (A) Engineering), 553-566.

  • Pellegrini-Cervantes, M. J., Almeraya-Calderon, F., Borunda-Terrazas, A., Bautista-Margulis, R. G., Chacón-Nava, J. G., Fajardo-San-Miguel, G., ... & Martinez-Villafañe, A. (2013). Corrosion resistance, porosity and strength of blended portland cement mortar containing rice husk ash and nano-SiO2. International Journal of Electrochemical Science, 8(1), 10697-10710.

  • Quraishi, M. A., Nayak, D. K., Kumar, R., & Kumar, V. (2017). Corrosion of reinforced steel in concrete and its control: An overview. Journal of Steel Structures and Construction, 3(1), 1-6.

  • Rezania M., Panahandeh M., Razavi S. M. J., & Berto F. (2019). Experimental study of the simultaneous effect of nano-silica and nano-carbon black on permeability and mechanical properties of the concrete. Theoretical and Applied Fracture Mechanics, 104, 1-10. doi: https://doi.org/10.1016/j.tafmec.2019.102391

  • Vera, R., Apablaza, J., Carvajal, A. M., & Vera, E. (2013). Effect of surface coatings in the corrosion of reinforced concrete in acid environments. International Journal of Electrochemical Science, 8, 11832-11846.

  • Zhang, A., Ge Y., Yang, W. C., Cai, X. P., & Du, Y. B. (2019a). Comparative study on the effects of nano-SiO2, nano-Fe2O3 and nano-NiO on hydration and microscopic properties of white cement. Construction and Building Materials, 228, 1-11. doi: https://doi.org/10.1016/j.conbuildmat.2019.116767

  • Zhang, S., Qiao, W. G., Chen, P. C., & Xi, K. (2019b). Rheological and mechanical properties of microfine-cement-based grouts mixed with microfine fly ash, colloidal nanosilica and superplasticizer. Construction and Building Materials, 212, 10-18. doi: https://doi.org/10.1016/j.conbuildmat.2019.03.314

  • Zhuang, C., & Chen, Y. (2020). The effect of nano-SiO2 on concrete properties: A review. Nanotechnology Review, 8, 562-572. doi: https://doi.org/10.1515/ntrev-2019-0050

ISSN 1511-3701

e-ISSN 2231-8542

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