PSI - Issue 70
M. Vignesh et al. / Procedia Structural Integrity 70 (2025) 650–657
657
References
Alyamac, K. E., & Ince, R. (2009). A preliminary concrete mix design for SCC with marble powders. Construction and Building Materials, 23(3), 1201 – 1210. https://doi.org/10.1016/j.conbuildmat.2008.08.012 Amin, S. K., Allam, M. E., Garas, G. L., & Ezz, H. (2020). A study of the chemical effect of marble and granite slurry on green mortar compressive strength. Bulletin of the National Research Centre, 44(1). https://doi.org/10.1186/s42269-020-0274-8 Andreani, A. S., Taopan, H. V. R., Banunaek, F. S., & Nurkhaliza, F. (2024). Impact of Waste Marble Powder as A Partial Alternative Material for Cement. Jurnal Sains Materi Indonesia, 26(1), 81 – 91. https://doi.org/10.55981/jsmi.2024.4569 ASTM C141/C141M - 14:2022. (n.d.). Standard Specification for Hydrated Hydraulic Lime for Structural Purposes 1. https://doi.org/10.1520/C0141_C0141M-14R22 ASTM C311-02. (2002). Standard Test Methods for Sampling and Testing Fly Ash or Natural Pozzolans for Use in Portland-Cement Concrete 1 (C311-02 ed.). ASTM International. www.astm.org ASTM C618-22. (2022). Specification for Coal Fly Ash and Raw or Calcined Natural Pozzolan for Use in Concrete (2022nd ed.). ASTM International. https://doi.org/10.1520/C0618 Asundi, J. (2016). Construction and Demolition Waste Utilisation for Recycled Products in Bengaluru: Challenges and Prospects. https://doi.org/DOI: 10.13140/RG.2.2.10058.77765 Bureau of Indian Standards. (n.d.-a). IS 712(2009) Specification for Building Limes. Bureau of Indian Standards. (n.d.-b). IS 12894 (2002) Pulverized Fuel Ash-Lime Bricks. Construction and Demolition Waste Factsheet. (2019). www.cseindia.org Duan, Z., Hou, S., Xiao, J., & Li, B. (2020). Study on the essential properties of recycled powders from construction and demolition waste. Journal of Cleaner Production, 253, 119865. https://doi.org/10.1016/j.jclepro.2019.119865 Faruqi, M. H. Z., & Siddiqui, F. Z. (2020). A mini review of construction and demolition waste management in India. Waste Management & Research: The Journal for a Sustainable Circular Economy, 38(7), 708 – 716. https://doi.org/10.1177/0734242X20916828 International Energy Agency. (2018). Technology Roadmap - Low-Carbon Transition in the Cement Industry. www.wbcsdcement.org. Iloh, P., Fanourakis, G., & Ogra, A. (2019). Evaluation of physical and chemical properties of South African waste foundry sand (WFS) for concrete use. Sustainability, 11(1), 193. https://doi.org/10.3390/su11010193 Jaillon, L., & Poon, C. S. (2014). Life cycle design and prefabrication in buildings: A review and case studies in Hong Kong. Automation in Construction, 39, 195 – 202. https://doi.org/10.1016/j.autcon.2013.09.006 Jain, M. S. (2021). A mini review on generation, handling, and initiatives to tackle construction and demolition waste in India. Environmental Technology & Innovation, 22, 101490. https://doi.org/10.1016/j.eti.2021.101490 Ministry of Housing and Urban Affairs (MoHUA) and NITI Ministry. (2018). Strategy for Promoting Processing of Construction and Demolition (C&D) Waste and Utilisation of Recycled Products. chrome extension://efaidnbmnnnibpcajpcglclefindmkaj/https://www.niti.gov.in/sites/default/files/2019 03/CDW_Strategy_Draft%20Final_011118.pdf Paula Junior, A. C., Jacinto, C., Turco, C., Fernandes, J., Teixeira, E., & Mateus, R. (2022). Analysis of the effect of incorporating construction and demolition waste on the environmental and mechanical performance of earth-based mixtures. Construction and Building Materials, 330, 127244. https://doi.org/10.1016/j.conbuildmat.2022.127244 Sankarapandian, K., Rajesh, K. N., Selvaraj, S. K. P., & Taj, M. N. A. G. (2024). Examining foundry sand’s potential as a par tial substitute for m sand through experimental and numerical research. Revista Materia, 29(3). https://doi.org/10.1590/1517-7076-RMAT-2024-0301 Seco, A., Omer, J., Marcelino, S., Espuelas, S., & Prieto, E. (2018). Sustainable unfired bricks manufacturing from construction and demolition wastes. Construction and Building Materials, 167, 154 – 165. https://doi.org/10.1016/j.conbuildmat.2018.02.026 Siddique, R., & Singh, G. (2011). Utilization of waste foundry sand (WFS) in concrete manufacturing. Resources, Conservation and Recycling, 55(11), 885 – 892. https://doi.org/10.1016/j.resconrec.2011.05.001 Singh, M., & Choudhary, S. (2018). Marble and Granite Waste: Characterization and Utilization in Concrete. International Journal of Civil Engineering and Technology, 9(3), 663 – 670. Soharu, A., Bp, N., & Sil, A. (2022). Fly ash bricks development using concrete waste debris and self-healing bacteria. Journal of Material Cycles and Waste Management, 24(3), 1037 – 1046. https://doi.org/10.1007/s10163-022-01378-w
Made with FlippingBook - Online catalogs