Open Access
Issue
E3S Web of Conf.
Volume 365, 2023
IV International Scientific Conference “Construction Mechanics, Hydraulics and Water Resources Engineering” (CONMECHYDRO - 2022)
Article Number 02022
Number of page(s) 6
Section Road Construction, Building Structures and Materials
DOI https://doi.org/10.1051/e3sconf/202336502022
Published online 30 January 2023
  1. M. Mathapati, K. Amate, C. Durga Prasad, M.L. Jayavardhana, T. Hemanth Raju, A review on fly ash utilization, Materials Today: Proceedings, 50(5), pp. 1535–1540 (2022) https://doi.org/10.1016/j.matpr.2021.09.106. [CrossRef] [Google Scholar]
  2. Bazarbayeva S. M. Ispol’zovaniye promyshlennykh otkhodov pri proizvodstve sernogo betona. Vestnik Bashkirskogo universiteta, 13 (3), 504–505 (2008) [Google Scholar]
  3. Central electricity authority, New Delhi report on fly ash generation at coal/lignite based thermal power stations and its utilization in the country. (2019–2020). [Google Scholar]
  4. S. Nasir Shah, K. Hung Mo, S. Poh Yap, J. Yang, Tung-Chai Ling, Lightweight foamed concrete as a promising avenue for incorporating waste materials: A review, Resources, Conservation and Recycling, 164, (2021), doi.org/10.1016/j.resconrec.2020.105103 [Google Scholar]
  5. D. Harris, C. Heidrich and J. Feuerborn. Global aspects on Coal Combustion Products. (2019) https://www.coaltrans.com/insights/article/global-aspects-on-coal-combustion-products [Google Scholar]
  6. R.C. Valore Jr., Cellular concretes Part 2 physical properties, ACI J. Proc. 50(6) (1954) [Google Scholar]
  7. K. Ramamurthy, E.K. Nambiar, G.I.S. Ranjani, A classification of studies on properties of foam concrete, Cem. Concr. Compos. 31(6), pp.388–396 (2009) [CrossRef] [Google Scholar]
  8. M.R. Jones, A. McCarthy, Preliminary views on the potential of foamed concrete as a structural material, Mag. Concr. Res. 57(1), pp. 21–31 (2005) [CrossRef] [Google Scholar]
  9. T.G. Richard, J. Dobogai, T.D. Gerhardt, W.C. Young, Cellular concrete – a potential load-bearing insulation for cryogenic applications. IEEE Trans Magn. 11(2) pp.500–503 (1975) [CrossRef] [Google Scholar]
  10. Kh.Nizar, I.,Al Bakri, A. M. M., Rafiza, A. R., Kamarudin, H., Abdullah, A., and Yahya Z. Study on physical and chemical properties of fly ash from different area in Malaysia, 594, pp. 985–989 (2014) [Google Scholar]
  11. G. Xu, X. Shi, Characteristics and applications of fly ash as a sustainable construction material: A state-of-the-art review, Resour. Conserv. Recycl. 136, pp.95–109 (2018) [CrossRef] [Google Scholar]
  12. M. F. Montemor, A.M.P. Simões M.M. Salta, Effect of fly ash on concrete reinforcement corrosion studied by EIS, Cem. Concr. Compos. 22(3) 175–185 (2000) [CrossRef] [Google Scholar]
  13. David N, Hansen P E, Coal Fly ash Used for New Environment Coating Product, World of Coal Ash, Conference, (2011) [Google Scholar]
  14. Y.H. Mugahed Amran, Nima Farzadnia, A.A. Abang Ali, Properties and applications of foamed concrete; a review, Construction and Building Materials, 101(1), pp. 990–1005, 2015 https://doi.org/10.1016/j.conbuildmat.2015.10.112. [Google Scholar]
  15. Shubbar A. A., Al-Jumeily D., Aljaaf A. J., Alyafei M., Sadique M., and Mustafina J, Investigating the Mechanical and Durability Performance of Cement Mortar Incorporated Modified Fly Ash and Ground Granulated Blast Furnace Slag as Cement Replacement Materials. In: 2019 12th International Conference on Developments in Systems Engineering (DeSE): IEEE) pp 434–439 (2019) [Google Scholar]
  16. Nasr M. S., Ali I M., Hussein A. M., Shubbar A. A., Kareem Q. T., and AbdulAmeer A, T, Utilization of locally produced waste in the production of sustainable mortar Case Studies in Construction Materials 13, e00464 (2020) [Google Scholar]
  17. P. Risdanareni, M. Sulton, S.F. Nastiti, Light weight concrete for prefabricated house. In: Proceedings of the International Mechanical Engineering and Engineering Education Conferences (IMEEEC 2016), p. 030029–1–6, (2016) [Google Scholar]
  18. G. Krishnan, K.B. Anand, Industrial waste utilization for foam concrete, Mater. Sci. Eng. 4, 4–10 (2016) [Google Scholar]
  19. E. Namsone, G. Sahmenko, A. Korjakins, Reduction of the capillary water absorption of foamed concrete by using the porous aggregate, Mater. Sci. Eng. 9, 1–9 (2017) [Google Scholar]

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