INCORPORATION OF WASTE GLASS, FLY ASH, METAKAOLIN, AND SILICA FUME IN PAVER BLOCK PRODUCTION: LITERATURE SURVEY
Keywords:
Waste Glass, Fly Ash, Metakaolin, Silica Fume, Paver BlocksAbstract
This literature survey examines the incorporation of waste glass, fly ash, metakaolin, and silica fume in the production of paver blocks, focusing on their impact on the physical and mechanical properties of the blocks. The study reviews various research efforts aimed at enhancing the performance and sustainability of paver blocks by utilizing these supplementary materials. Waste glass, as a recycled material, has been explored for its potential to improve the aesthetic qualities and durability of paver blocks. Fly ash, a by-product of coal combustion, contributes to increased strength and reduced permeability when used as a partial cement replacement. Metakaolin, a high-reactivity pozzolan, enhances the density and durability of paver blocks, while silica fume, known for its fine particle size, improves the overall mechanical performance and resistance to chemical attacks.
The survey highlights key findings from recent studies, including the improved compressive strength, abrasion resistance, and durability of paver blocks when these materials are incorporated. Additionally, the environmental benefits, such as reduced reliance on virgin materials and decreased waste generation, are discussed. The review also identifies gaps in current research and suggests areas for future investigation to optimize the use of these materials in paver block production.
References
Gencel, O., Ozel, C., Koksal, F., Erdogmus, E., Martínez-Barrera, G., & Brostow, W. (2012). Properties of concrete paving blocks made with waste marble. Journal of Cleaner Production, 21(1), 62-70.
Uygunoğlu, T., Topcu, I. B., Gencel, O., & Brostow, W. (2012). The effect of fly ash content and types of aggregates on the properties of pre-fabricated concrete interlocking blocks (PCIBs). Construction and Building Materials, 30, 180-187.
Sadek, D. M., & El Nouhy, H. A. (2014). Properties of paving units incorporating crushed ceramic. HBRC Journal, 10(2), 198-205
Lu, J. X., Zheng, H., Yang, S., He, P., & Poon, C. S. (2019). Co-utilization of waste glass cullet and glass powder in precast concrete products. Construction and Building Materials, 223, 210-220.
Jamshidi, A., Kurumisawa, K., White, G., Nishizawa, T., Igarashi, T., Nawa, T., & Mao, J. (2019). State-of-the-art of interlocking concrete block pavement technology in Japan as a post-modern pavement. Construction and Building Materials, 200, 713-755.
Truong, Cong-Bang. (2020). Study on Fly Ash Based Interlocking Concrete Paver Block Using Chopped Fibers. IOP Conference Series: Materials Science and Engineering. 988. 012060. 10.1088/1757-899X/988/1/012060.
Bajpai, Rishabh & Srivastava, Anshuman & Singh, Manpreet. (2020). Properties of fly ash geopolymer modified with red mud and silica fume: a comparative study. SN Applied Sciences. 2. 10.1007/s42452-020-.
Kumar, A., Yadav, O. and Shukla, R., 2023. A COMPREHENSIVE REVIEW PAPER ON PARTIAL CEMENT SUBSTITUTION IN CEMENT MORTAR WITH WOOD ASH. Research in Multidisciplinary Subjects, 1, p.26.
Kumar, Piyush. (2022). Strength Evaluation of High Strength Concrete by Using Fly Ash and Silica Fume as A Partial Replacement of Cement. International Journal for Research in Applied Science and Engineering Technology. 10. 1564-1570. 10.22214/ijraset.2022.46463.
Patel, Dixit & Parmar, Abhijitsinh & Tank, Savan. (2023). EXPERIMENTAL STUDY ON TRIPLE BLENDED HIGH PERFORMANCE CONCRETE WITH SILICA FUME AND METAKAOLIN. Journal of Technology. 11. 92-100.
Kumar, A. and Yadav, O., 2023. Effect of Fiber Reinforcement on the Tensile Strength and Ductility of Fly Ash Based Composites. Web of Synergy: International Interdisciplinary Research Journal, 2(6), pp.137-143.
Jabbar, Adil. (2023). Using Cementitious Materials to Enhance Concrete Properties and Improve the Environment: A Review. Wasit Journal of Engineering Sciences. 11. 140-154. 10.31185/ejuow.Vol11.Iss3.482.
Kumar, A., Yadav, O., Kumar, P. and Gopal, S., AN OVERVIEW ARTICLE ON THE IMPACT OF EMPLOYING TREATED STRAW FIBERS ON THE MECHANICAL AND DURABILITY ATTRIBUTES OF CONCRETE.
IS 456: 2000, “Indian Standard Code of Practice for Plain and Reinforced Concrete”, Bureau of Indian Standard, New Delhi
IS 10262: 1982, “Recommended Guidelines for Concrete Mix design”, Bureau of Indian Standard, New Delhi
IS 383: 1970, “Specification for Coarse aggregate and Fine aggregate from Natural Sources for Concrete”, Bureau of Indian Standard, New Delhi
IS 9103: 1999, “Indian Standard Concrete Admixture Specification”, Bureau of Indian Standard, New Delhi
IS 5816: 1999, “Spliting Tensile Strength of Concrete Method of Test”, Bureau of Indian Standard, New Delhi
IS 9399: 1959, “Specification for Apparatus for Flexural Testing of Concrete”, Bureau of Indian Standard, New Delhi
IS 516: 1959, “Flexural Strength of Concrete”, Bureau of Indian Standard, New Delhi