References
[1]. Aliabdo, A. A., Abd Elmoaty, M., & Aboshama, A. Y.
(2016). Utilization of waste glass powder in the production
of cement and concrete. Construction and Building Materials, 124, 866-877. https://doi.org/10.1016/j.conbuildmat.2016.08.016
[2]. Al-Kizwini, R. S. (2020). Reuse plastic and glass wastes
as a partial replacement of concrete components.
Journal of Engineering Science and Technology, 15(2),
1109-1123.
[3]. Balasubramanian, B., Krishna, G. G., Saraswathy, V.,
& Srinivasan, K. (2021). Experimental investigation on
concrete partially replaced with waste glass powder and
waste E-plastic. Construction and Building Materials, 278,
122400. https://doi.org/10.1016/j.conbuildmat.2021.122400
[4]. Kalakada, Z., Doh, J. H., & Chowdhury, S. (2022).
Glass powder as replacement of cement for
concrete–an investigative study. European Journal of
Environmental and Civil Engineering, 26(3), 1046-1063.
https://doi.org/10.1080/19648189.2019.1695149
[5]. Ming'ate, F. L. M., & Mohamed, M. Y. (2016). Impact of
stone quarrying on the environment and the livelihood of
communities in Mandera County, Kenya. Journal of
Scientific Research and Repor ts, 10(5), 1-9.
https://doi.org/10.9734/JSRR/2016/24945
[6]. Mohammed, I. I., Nariman, A., Nazim., Othman, K.,
Ali, S., Mohammed, P., & Samad, S. (2020). Utilization of
waste plastic and waste glass together as fine and coarse
aggregate in concrete. Eurasian Journal of Science &
Engineering, 6(2), 1-10. https://doi.org/10.23918/eajse.v6i2p1
[7]. Raviraj, S. (2009). Concrete Mix Proportioning IS
10262:2009. Retrieved from https://sjce.ac.in/wpcontent/uploads/2018/01/Concrete-Mix-Proportioning.pdf
[8]. Saxena, R., Gupta, T., Sharma, R. K., Chaudhary, S., &
Jain, A. (2020). Assessment of mechanical and durability
properties of concrete containing PET waste. Scientia
Iranica. Transaction A, Civil Engineering, 27(1), 1-9.
https://doi.org/10.24200/SCI.2018.20334
[9]. Tafheem, Z., Rakib, R. I., Esharuhullah, M. D., Alam, S.
R., & Islam, M. M. (2018). Experimental investigation on
the properties of concrete containing post-consumer
plastic waste as coarse aggregate replacement. Journal of Materials and Engineering Structures, 5(1), 23-31.
[10]. Tone, A. B., Katkar, M. S., Salokhe, R. P., Koli, R. M.,
Kore, S. B., & Pendhari, J. A. (2020). Use of e-waste in
construction industry. International Research Journal of
Engineering and Technology (IRJET), 7(7), 2008-2013.
[11]. Zulkernain, N. H., Gani, P., Chuan, N. C., & Uvarajan,
T. (2021). Utilisation of plastic waste as aggregate in
construction materials: A review. Construction and
Building Materials, 296, 123669. https://doi.org/10.1016/j.conbuildmat.2021.123669