PSI - Issue 70

S. Rajeshkumar et al. / Procedia Structural Integrity 70 (2025) 287–294

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Proceedings 59(3), 1625 – 1635. https://doi.org/10.1016/j.matpr.2022.03.322. Kunchariyakun, K., Asavapisit, S., Sinyoung, S., 2018. Influence of partial sand replacement by black rice husk ash and bagasse ash on properties of autoclaved aerated concrete under different temperatures and times. Construction and Building Materials 173, 220 – 227. Mahfooz Soomro, Vivian W.Y. Tam, Ana Catarina Jorge Evangelista, 2023. Production of cement and its environmental impact. I Recycled Concrete , Woodhead Publishing Series in Civil and Structural Engineering, 11 – 46. Mahmoud, H., Belel, Z.A., Nwakaire, C., 2012. Groundnut shell ash as a partial replacement of cement in sandcrete blocksproduction. International Journal of Development and Sustainability 1(3), 1026 – 1032. Mehta, P.K., 2001. Reducing the environmental impact of concrete. Concrete International 23(10), 61 – 66. Nabilla Mohamad, Khairunisa Muthusamy, Rahimah Embong, Andri Kusbiantoro, Mohd Hanafi Hashim, 2022. Environmental impact of cement production and Solutions: A review. Materials Today: Proceedings 48(4), 741 – 746. Nwaobakata, C., 2018. Investigation on sawdust and palm kernel shells as partial replacement for fine and coarse aggregate in concrete production. IOSR Journal of Engineering (IOSRJEN) 8(10), 21 – 28. Nwofor, T.C., Sule, S., 2012. Stability of groundnut shell ash and ordinary Portland cement concrete in Nigeria. Advances in Science Research 3(4), 2283 – 2287. Obilade, I.O., 2014. Use of rice husk ash as partial replacement for cement in concrete. International Journal of Engineering and Applied Sciences 5(4), 11 – 16. Olutoge, F.A., 2010. Investigations on sawdust and palm kernel shells as aggregate replacement. ARPN Journal of Engineering and Applied Sciences 5(4), 7 – 13. Reddy, M., Kumar, S., Ashalatha, K., Madhuri, M., 2017. Groundnut shell ash as partial replacement of cement in concrete. Research Journal of Science and Technology 9(3), 313. https://doi.org/10.5958/2349-2988.2017.00056.0. Sani, J.E., Goddey, O.A., Kevin, O.K., Anthony, R., 2023. Durability of concrete made with groundnut shell ash as cement replacement. Materials Today: Proceedings 86, 145 – 149. Smita Sahoo, Pravat Kumar Parhi, Bikash Chandra Panda,2021.Durability properties of concrete with silica fume and rice husk ash, Cleaner Engineering and Technology 2, 100067. Sathiparan, N., Anburuvel, A., Selvam, V.V., Vithurshan, P.A., 2023. Potential use of groundnut shell ash in sustainable stabilized earth blocks. Construction and Building Materials 393, 132058. Scrivener, K.L., John, V.M., Gartner, E.M., 2018. Eco-efficient cements: Potential economically viable solutions for a low- CO₂ Cement based materials industry. Cement and Concrete Research 114, 2 – 26. Thomas, B.S., Yang, J., Bahurudeen, A., Abdalla, J.A., Hawileh, R.A., Hamada, H.M., Nazar, S., Jittin, V., Ashish, D.K., 2021. Sugarcane bagasse ash as supplementary cementitious material in concrete – a review. Materials Today Sustainability 15, 100086. Wagan, I., Memon, A., Memon, N., Memon, F., Hussain, L., 2022. Rice husk ash (RHA) based concrete: Workability and compressive strength with different dosages and curing ages. Journal of Applied Engineering Sciences 12, 113 – 120. https://doi.org/10.2478/jaes-2022- 0016. Zain, M.F.M., Islam, M.N., Mahmud, F., Jamil, M., 2011. Production of rice husk ash for use in concrete as a supplementary cementitious material. Construction and Building Materials 25(2), 798 – 805.

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