Open Access
Issue
E3S Web Conf.
Volume 648, 2025
International Conference on Civil, Environmental and Applied Sciences (ICCEAS 2025)
Article Number 01017
Number of page(s) 11
Section Civil Engineering
DOI https://doi.org/10.1051/e3sconf/202564801017
Published online 08 September 2025
  1. B. M. Khroustalev, T. Liu, V. D. Akeliev, Yu. H. Aliakseyeu, J. Shi, and V. V. Zankovich, Specific Features of Heatand Mass Transfer Processes in Road Dressings. Izv. Vysh. Ucheb 61, 517 (2018). [Google Scholar]
  2. Z. A. Shakhmov and A. Zh. Zhussupbekov, Frost susceptibility of soil and in-situ monitoring of frost depth in construction. JGS Special Publication 2, 537 (2016). [Google Scholar]
  3. B. B. Teltayev, A. Zhussupbekov, Zh. Shakhmov, and E. A. Suppes, Field Experimental Investigations of Freezing and Thawing of Highway Subgrade. in Transportation Soil Engineering in Cold Regions, Volume 1, edited by A. Petriaev and A. Konon (Springer Singapore, Singapore, 2020), pp. 35–47. [Google Scholar]
  4. M. Guo, X. Yao, and X. Du, Low temperature cracking behavior of asphalt binders and mixtures: A review. Journal of Road Engineering 3, 350 (2023). [Google Scholar]
  5. I. I. Shepelev, E. N. Eskova, S. O. Potapova, S. V. Khizhnyak, and N. N. Bochkov, Ecological aspects of technogenic material application in road construction technologies. IOP Conf. Ser.: Earth Environ. Sci. 315, 052019 (2019). [Google Scholar]
  6. N. Radostovets, Incentives Proposed for Waste Recycling in Kazakhstan. in Materials of the 12th Conference Mining and Mineral Exploration in Eurasia (London, UK, 2024). [Google Scholar]
  7. K. Ishola, Evaluation of the eco-friendly contribution of cashew leaf ash in sustainable lateritic soil road pavement construction. Hybrid Advances 9, 100405 (2025). [Google Scholar]
  8. T. Mkilima, Y. Sabitov, Z. Shakhmov, T. Abilmazhenov, A. Tlegenov, A. Jumabayev, A. Turashev, Z. Kaliyeva, and L. Utepbergenova, Exploring the potential of biofunctionalized agricultural waste adsorbents integrated with UV-LED disinfection for enhanced wastewater treatment. Case Studies in Chemical and Environmental Engineering 9, 100691 (2024). [Google Scholar]
  9. M. Nurpeisova, Z. Estemesov, N. Fedotenko, and S. Gabbasov, Technology of utilization and use of ash and slag waste to ensure environmental safety at the region. SDMT 15, 631 (2023). [Google Scholar]
  10. Z. Liu, T. Feng, X. Zhu, J. Gao, K. Hu, M. Guo, F. Gu, and F. Li, Bird’s-eye view of recycled solid wastes in road engineering. Journal of Road Engineering 4, 93 (2024). [Google Scholar]
  11. K. K. Mukhambetkaliev, Mineral powder from anthropogenic waste to be produced in Kazakhstan (2025). [Google Scholar]
  12. Q. Li, X. Wang, X. Liu, and X. Zhou, Review on constitutive models of road materials. Journal of Road Engineering 2, 70 (2022). [Google Scholar]
  13. V. I. Solomatov, Development of the polystructural theory of composite building materials. Izv. Vyssh. Uchebn. Zaved. Stroitel’stvo 58 (1985). [Google Scholar]
  14. V. V. Paturoyev, Polymer concretes. in Research Institute of Concrete and Reinforced Concrete (Stroyizdat, Moscow, 1987), p. 286. [Google Scholar]

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