Literature Review: Application of Nano Fly Ash in High Volume Fly Ash Concrete

Abstract

A review of existing research on Nano Fly Ash (NFA) aims to show that using Nano Fly Ash (NFA) on High Volume Fly Ash Concrete is possible. The application can have an impact on durability improving concrete strength. The higher the compressive strength of the concrete, the more Nano Fly Ash (NFA) is utilized as a partial replacement for cement. The goal of this literature review is to determine how the addition of nano fly ash to high volume fly ash can be accelerated during the manufacturing process. The information is gathered by analyzing many articles on Nano Fly Ash (NFA) from 2013 to 2023. A collection of journals gathered from a variety of national and international publications gathered through the sciencedirect database and Google Scholar via the publish or perish application.

Country : Indonesia

1 Suhendro Trinugroho2 Ammar Abyan Alkatiry

  1. Lecturer in Civil Engineering, Engineering Faculty, Universitas Muhammadiyah Surakarta, Central Java, Indonesia
  2. Student in Civil Engineering, Engineering Faculty, Universitas Muhammadiyah Surakarta, Central Java, Indonesia

IRJIET, Volume 7, Issue 5, May 2023 pp. 312-316

doi.org/10.47001/IRJIET/2023.705044

References

  1. Wasil, M. (2022), Compressibility of fly ash and fly ash-bentonite mixtures. The Baltic Journal of Road and Bridge Engineering, 17(3), 21–43. https://doi.org/10.7250/bjrbe.2022-17.567
  2. Jemimah Carmichael, P.A. (2011), Effect of Nano-Fly Ash on Strength of Concrete, 2(2).
  3. Volz, Jeffery & Myers, John & Richardson, David. (2013), Development and Evaluation of High- Volume Fly Ash (HVFA) Concrete Mixes.
  4. Susmitha, P.J. and Kanta Rao, M. (2022), Comparative study on strength and durability of concrete upon partial substitution of fly ash and bagasse ash in conventional concrete‟, IOP Conference Series: Earth and Environmental Science, 982(1), p. 012011. doi:10.1088/1755-1315/982/1/012011.
  5. Abushad, M. and Sabri, M.D. (2017), Comparative Study of Compressive Strength of Concrete with Fly Ash Replacement by Cement, 04(07).
  6. Sharma, S., Kaur, I. and Gupta, S. (2019), Effect of Fly Ash and Nano Titanium Dioxide on Compressive Strength of Concrete, 06(07).
  7. A.Etale, N. T. Tavengwa, and V. E. Pakade, “Metal Adsorption by Coal Fly Ash: the Role of Nano-Sized Material,” Intech, pp. 9–27, 2018.
  8. Harihanandh, M., Viswanathan, K.E. and Krishnaraja, A.R. (2021), Comparative study on chemical and morphology properties of Nano Fly Ash in concrete‟, Materials Today: Proceedings, 45, pp. 3132–3136. doi:10.1016/j.matpr.2020.12.217.
  9. Harihanandh, M., Visnawathan, K.E. and Khrisnaraja, A.R. (2020), Performance of high volume fly ash concrete in structural applications, Research Gate. Available at: https://www.researchgate.net/publication/369334732_Performance_of_High_Volume_Fly_Ash_Concrete_in_Structural_Applicaions (Accessed: 26 May2023).
  10. Harihanandh, M., Viswanathan, K.E. and Khrisnaraja, A.R. (2020), high volume fly ash concrete - researchgate, Research Gate. Available at: https://www.researchgate.net/publication/237417038_High_Volume_Fly_Ash_Concrete (Accessed: 26May 2023).
  11. Paul, K.T. et al. (2007), Preparation and characterization of nano structured materials from Fly Ash: A waste from thermal power stations, by High Energy Ball Milling‟, Nano scale Research Letters, 2(8). doi:10.1007/s11671-007-9074-4.
  12. Patoliya, N.G. and Misra, Dr.A. (2015), Characteristics study of high volume fly ash concrete - researchgate, Research Gate. Available at: https://www.researchgate.net/publication/333310811_Characteristics_study_of_high_volume_fly_ash_co ncrete (Accessed: 26 May 2023).
  13. Naresh, J., Lavanya, B. and Suresh Kumar, K. (2021), A study on bond strength of normal concrete to high volume fly Ash Concrete‟, IOP Conference Series: Materials Science and Engineering, 1057(1), p. 012082. doi:10.1088/1757-899x/1057/1/012082.
  14. Antoni, A. et al. (2017), Consistency of fly ash quality for making high volume fly Ash Concrete‟, Jurnal Teknologi, 79(7–2). doi:10.11113/jt.v79.11870.
  15. Patil, L., Nayak, C. and Jagadale, U. (2022), Effect of copper slag and fly ash and nano material to strengthen the properties of concrete, Research Gate. Available at: https://www.researchgate.net/publication/361506638_Effect_of_copper_slag_and_fly_ash_and_Nano_Ma terial_to_strengthen_the_properties_of_concrete (Accessed: 26 May 2023).
  16. Wardhono, A. (2021), Flow ability and strength properties of high volume of fly ash material on self- compacting concrete‟, Journal of Physics: Conference Series, 1747(1), p. 012033. doi:10.1088/1742-6596/1747/1/012033.
  17. Herath, C. et al. (2021), Long term mechanical performance of nano-engineered high volume fly ash concrete‟, Journal of Building Engineering, 43, p.103168. doi:10.1016/j.jobe.2021.103168.
  18. Satapathy, S., Nando, G. B., Nag, A., & Raju, K. V. (2013), HDPE-fly ash/nano fly ash composites. Journal of Applied Polymer Science. https://doi.org/10.1002/app.39733.
  19. Jabbar, D. N., Hasan, A. M., & Abed, M. K. (2021), Self-compaction concrete behaviour containing nano fly ash used in rigid pavement. IOP Conference Series: Earth and Environmental Science, 779(1),012018. https://doi.org/10.1088/17551315/779/1/012018.
  20. Harihanandh, M. and Sivaraja, M. (2016), Strength and mechanical properties of Nano Fly Ash Concrete-Researchgate, Research Gate. Available at: https://www.researchgate.net/publication/343205705_STRENGTH_AND_MECHANICAL_PROPERTIE S_OF_NANO_FLY_ASH_CONCRETE (Accessed: 26 May 2023).
  21. Chen, W. et al. (2021), Dynamic compressive properties of high volume fly ash (HVFA) concrete with Nano Silica‟, Construction and Building Materials, 301, p. 124352. doi:10.1016/j.conbuildmat.2021.124352.
  22. Herath, C. et al. (2020), Performance of high volume fly ash concrete incorporating additives: A systematic literature review‟, Construction and Building Materials, 258, p. 120606. doi:10.1016/j.conbuildmat.2020.120606.
  23. Solikin, M., Sujeeva, S. and Patnaikuni, I. (2013), Experimental design analysis of ultra fine fly ash, lime water and basalt fibre in mix proportion of high volume fly ash concrete, Research Gate. Available at: https://www.researchgate.net/publication/286136064_Experimental_design_analysis_of_ultra_fine_fly_ash_lime_water_and_basalt_fibre_in_mix_proportion_ of_high_volume_fly_ash_concrete (Accessed: 26 May 2023).
  24. Chen, H.-J. et al. (2019), Effects of the loss on ignition of fly ash on the properties of high-volume fly Ash Concrete‟, Sustainability, 11(9), p. 2704. doi: 10.3390/su11092704.