TY - JOUR T1 - Examining the use of marble waste as a substitute of conventional materials in concrete: A brief review AU - Nuhu Garko, Mustapha AU - Dulawat, Shashivendra AU - Ahmad, Esar AU - Sarki Ubayi, Salihu AU - Abdullahi Ibrahim, Ibrahim PY - 2025 DA - June Y2 - 2024 DO - 10.35208/ert.1511775 JF - Environmental Research and Technology JO - ERT PB - Mehmet Sinan Bilgili WT - DergiPark SN - 2636-8498 SP - 471 EP - 486 VL - 8 IS - 2 LA - en AB - The use of waste marble in concrete as a substitute for conventional materials is gaining attention due to its potential environmental and economic benefits. This review comprehensively examines the feasibility of utilizing marble waste in concrete, focusing on three primary replacement levels: cement, fine aggregate, and coarse aggregate. The study synthesizes recent research on substituting marble waste for cement, fine aggregates, and coarse aggregates, focusing on performance metrics such as workability, strength, and durability. Findings reveal that waste marble can effectively replace up to 10% of cement in concrete mixtures. For fine aggregates, optimal replacement levels range between 20-30%, When used as a coarse aggregate substitute, marble waste can be replaced up to 50%, balancing improved resource efficiency with maintained strength and durability. The review highlights that incorporating waste marble into concrete not only reduces the reliance on natural resources but also minimizes landfill waste and lowers the carbon footprint. Recommendations for future research include standardizing marble waste particle sizes, evaluating long-term durability, and assessing environmental impacts through comprehensive life cycle analyses. This study aims to influence industry stakeholders and policymakers to consider waste marble as a viable and eco-friendly alternative in sustainable construction practices. KW - Concrete KW - marble waste KW - sustainability CR - S. A. Zareei, F. Ameri, N. Bahrami, P. Shoaei, H. R. Moosaei, and N. Salemi, “Performance of sustainable high strength concrete with basic oxygen steel-making (BOS) slag and nano-silica,” Journal of Building Engineering, vol. 25, p. 100791, Sep. 2019. CR - R. B. Ardalan, Z. N. Emamzadeh, H. Rasekh, A. Joshaghani, and B. Samali, “Physical and mechanical properties of polymer modified self-compacting concrete (SCC) using natural and recycled aggregates,” Journal of Sustainable Cement-Based Materials, vol. 9, no. 1, pp. 1–16, Jan. 2020. CR - N. Tošić, S. Marinković, T. Dašić, and M. Stanić, “Multicriteria optimization of natural and recycled aggregate concrete for structural use,” Journal of Cleaner Production, vol. 87, pp. 766–776, Jan. 2015. CR - M. Sandanayake, Y. Bouras, R. Haigh, and Z. Vrcelj, “Current Sustainable Trends of Using Waste Materials in Concrete—A Decade Review,” Sustainability, vol. 12, no. 22, p. 9622, Nov. 2020. CR - M. J. Memon, A. A. Jhatial, Z. A. Rid, T. A. Rind, and A. R. Sandhu, “Marble Powder as Fine Aggregates in Concrete,” Engineering, Technology & Applied Science Research, vol. 9, no. 3, pp. 4105–4107, Jun. 2019. CR - D. K. Ashish, “Concrete made with waste marble powder and supplementary cementitious material for sustainable development,” Journal of Cleaner Production, vol. 211, pp. 716–729, Feb. 2019. CR - S. D. Kore and A. K. Vyas, “Impact of marble waste as coarse aggregate on properties of lean cement concrete,” Case Studies in Construction Materials, vol. 4, pp. 85–92, Jun. 2016. CR - S. Parmar and S. K. Das, “Effect of marble slurry as a partial substitution of ordinary Portland cement in lean concrete mixes,” Structural Concrete, vol. 22, no. S1, Jan. 2021. CR - X. C. Meng, C. Li, Z. H. Wang, X. Z. Gong, Y. Liu, and B. X. Sun, “A Life Cycle Inventory Case Study for Marble Mining in China,” Materials Science Forum, vol. 787, pp. 171–175, Apr. 2014. CR - MarketWatch, Stock Market News. Accessed: Jun. 06, 2024. [Online]. Available: www.marketwatch.com. CR - S. D. Kore, A. K. Vyas, and S. A. Kabeer K.I., “A brief review on sustainable utilisation of marble waste in concrete,” International Journal of Sustainable Engineering, vol. 13, no. 4, pp. 264–279, Jul. 2020. CR - O. Gencel, M. Nodehi, O. B. Yavuz, G. Kaplan, and A. Benli, “The use of waste marble for cleaner production of structural concrete: A comprehensive experimental study,” Construction and Building Materials, vol. 361, p. 129612, Dec. 2022. CR - K. Khan, W. Ahmad, M. N. Amin, A. Ahmad, S. Nazar, A. A. Abdullah, and A. M. Arab, “Exploring the Use of Waste Marble Powder in Concrete and Predicting Its Strength with Different Advanced Algorithms,” Materials, vol. 15, no. 12, p. 4108, Jun. 2022. CR - J. Ahmad, F. Aslam, R. Martinez-Garcia, J. de-Prado-Gil, S. M. A. Qaidi, and A. Brahmia, “Effects of waste glass and waste marble on mechanical and durability performance of concrete,” Scientific Reports, vol. 11, no. 1, p. 21525, Nov. 2021. CR - H. A. El-Sayed, A. B. Farag, A. M. Kandeel, A. A. Younes, and M. M. Yousef, “Characteristics of the marble processing powder waste at Shaq El-Thoaban industrial area, Egypt, and its suitability for cement manufacture,” HBRC Journal, vol. 14, no. 2, pp. 171–179, Aug. 2018. CR - S. D. Kore and A. K. Vyas, “Impact of marble waste as coarse aggregate on properties of lean cement concrete,” Case Studies in Construction Materials, vol. 4, pp. 85–92, Jun. 2016. CR - B. Basaran, I. Kalkan, C. Aksoylu, Y. O. Özkılıç, and M. M. S. Sabri, “Effects of Waste Powder, Fine and Coarse Marble Aggregates on Concrete Compressive Strength,” Sustainability, vol. 14, no. 21, p. 14388, Nov. 2022. CR - M. Sowjanya, N. Raju, L. Bhavananda, O. V. Vardhan, and S. S. Lokesh, “Behaviour of Previous Concrete Using Marble Waste as Coarse Aggregate,” Journal of Engineering Sciences, vol. 14, no. 02, 2023. CR - Saloni, Parveen, Y. Y. Lim, T. M. Pham, Jatin, and J. Kumar, “Sustainable alkali activated concrete with fly ash and waste marble aggregates: Strength and Durability studies,” Construction and Building Materials, vol. 283, p. 122795, May 2021. CR - A. Sugathan, “Investigation on compressive strength of concrete utilizing broken marble tiles as coarse aggregate,” International Journal of Engineering Sciences & Research Technology vol. 03, no. 05. May 2016. e-ISSN: 2395 -0056. CR - S. D. Kore, A. K. Vyas, and S. A. Kabeer K.I., “A brief review on sustainable utilisation of marble waste in concrete,” International Journal of Sustainable Engineering, vol. 13, no. 4, pp. 264–279, Jul. 2020. CR - T. Demi̇R and K. E. Alyamaç, “Investigation of the Use of Marble Powder in Production of High Strength Concretes,” Open Journal of Nano, vol. 7, no. 1, pp. 18–25, Jun. 2022. CR - K. E. Alyamaç and A. B. Aydin, “Concrete properties containing fine aggregate marble powder,” KSCE Journal of Civil Engineering, vol. 19, no. 7, pp. 2208–2216, Nov. 2015. CR - A. Ghani, Z. Ali, F. A. Khan, S. R. Shah, S. W. Khan, and M. Rashid, “Experimental study on the behavior of waste marble powder as partial replacement of sand in concrete,” SN Applied Sciences, vol. 2, no. 9, p. 1554, Sep. 2020. CR - G. V. Vigneshpandian, E. A. Shruthi, C. Venkatasubramanian, and D. Muthu, “Utilisation of Waste Marble Dust as Fine Aggregate in Concrete,” IOP Conference Series: Earth and Environmental Science, vol. 80, p. 012007, Jul. 2017. CR - S. Varadharajan, A. Jaiswal, and S. Verma, “Assessment of mechanical properties and environmental benefits of using rice husk ash and marble dust in concrete,” Structures, vol. 28, pp. 389–406, Dec. 2020. CR - A. S. S.D., D. A., and S. B. V., “Investigation of waste marble powder in the development of sustainable concrete,” Materials Today: Proceedings, vol. 44, pp. 4223–4226, 2021. CR - A. Dhanalakshmi and M. Shahul Hameed, “Strength Properties of Concrete Using Marble Dust Powder,” East Asian Journal of Multidisciplinary Research, vol. 1, no. 11, pp. 2521–2530, Dec. 2022. CR - K. I. S. A. Kabeer and A. K. Vyas, “Utilization of marble powder as fine aggregate in mortar mixes,” Construction and Building Materials, vol. 165, pp. 321–332, Mar. 2018. CR - N. Bentlemsan, W. Yahiaoui, and S. Kenai, “Strength and durability of self-compacting mortar with waste marble as sand substitution,” Case Studies in Construction Materials, vol. 19, p. e02331, Dec. 2023. CR - K. Chahour and B. Safi, “Mechanical behavior and chemical durability of marble-based mortar: Application to panels subjected to punching,” Construction and Building Materials, vol. 232, p. 117245, Jan. 2020. CR - R. K. Khyaliya, K. I. S. A. Kabeer, and A. K. Vyas, “Evaluation of strength and durability of lean mortar mixes containing marble waste,” Construction and Building Materials, vol. 147, pp. 598–607, Aug. 2017. CR - M. Maza, N. Tebbal, S. Zitouni, and Z. E. A. Rahmouni, “Combined Effect of Marble Waste as Powder and Aggregate Form on the Proprieties of the Mortar,” Annales de Chimie - Science des Matériaux, vol. 45, no. 6, pp. 467–476, Dec. 2021. CR - M. Arun Kumar, S. Balaji, S. Selvapraveen, and P. Kulanthaivel, “Laboratory study on mechanical properties of self compacting concrete using marble waste and polypropylene fiber,” Cleaner Materials, vol. 6, p. 100156, Dec. 2022. CR - C. Vaidevi, T. F. Kala, and A. R. R. Kalaiyarrasi, “Mechanical and durability properties of self-compacting concrete with marble fine aggregate,” Materials Today: Proceedings, vol. 22, pp. 829–835, 2020. CR - M. Ahmadi, E. Abdollahzadeh, and M. Kioumarsi, “Using marble waste as a partial aggregate replacement in the development of sustainable self-compacting concrete,” Materials Today: Proceedings, p. S2214785323019739, Apr. 2023. CR - A. K. T. Amit Kumar Tomar and A. K. Ankit Kumar, “Strength Chracteristics of Self-Compacting Concrete Partially Replaced with Waste Marble Powder,” Journal of Environmental Nanotechnology, vol. 7, no. 4, pp. 46–50, 2018. CR - C. Karakurt and M. Dumangöz, “Rheological and Durability Properties of Self-Compacting Concrete Produced Using Marble Dust and Blast Furnace Slag,” Materials, vol. 15, no. 5, p. 1795, Feb. 2022. CR - H. Singh, C. V. Teja, V. Kumar, H. Singh, and A. Sharma, “Properties of self-compacting concrete developed using marble dust as a partial replacement of fine aggregates,” IOP Conference Series: Earth and Environmental Science, vol. 1327, no. 1, p. 012013, Apr. 2024. CR - K. K. Quanth and T. Kalra, “Experimental Utilization of Marble Dust Powder as Partial Replacement of Cement and Fine Aggregates in Concrete,” International Journal of Engineering, vol. 3, no. 2456. CR - S. Gupta, S. Srivastva, N. Kumar, A. Tripathi, and S. Jaiswal, “An Experimental Study on Utilization of Marble Powder for Sustainable Construction,” International Research Journal of Engineering and Technology (IRJET), April 2022 vol. 09, no. 04, e-ISSN: 2395-0056. CR - [P.N. Raghunath, K. Suguna, J. Karthick, and B. Sarathkumar, “Mechanical and Durability Characteristics of Marble Powder Based High Strength Concrete,” Scientia Iranica, vol. 26, no. 6, pp. 3159–3164. CR - S Rehan Ali and J. Abhi, “Partial Replacement of Cement by Marble Dust in Concrete for Environmental Sustainability,” International Journal of Engineering Sciences & Research Technology, Jun. 2022. CR - A. Yunusa, M. A. Onugba, A. O. Austyns, C. U. Ojih, and A. E. Oni, “The use of Waste Marble Dust as Partial Replacement for Cement in Concrete,” Current Journal of Applied Science and Technology, pp. 39–46, Apr. 2022. CR - Chirumamilla. M. C. Shaik abdul hafeez Siva Kishore. Ikkurthi, “Investigation On Mechanical Properties of Concrete by Partial replacement of Cement with Marble Dust in M40 grade concrete (M40),” vol. Volume 21, no. Issue 6, p. Page 224-236, 2023. CR - R. A. Kanhar, M. J. Memon, A. R. Sandhu, A. A. Jhatial, and A. K. Mastoi, “Mechanical Properties of Concrete Incorporating Marble Powder as Partial Cement Replacement,” Quaid-e-Awam University Research Journal of Engineering Science & Technology, vol. 19, no. 1, pp. 59–64, Jun. 2021. CR - M. Singh, A. Srivastava, and D. Bhunia, “Analytical and Experimental Investigations on Using Waste Marble Powder in Concrete,” Journal of Materials in Civil Engineering, vol. 31, no. 4, p. 04019011, Apr. 2019. CR - S. Ali, S. Ahmad, and I. Ullah, “Utilization of waste marble dust as cement and sand replacement in concrete,” Discover Civil Engineering, vol. 1, no. 1, p. 15, May 2024. CR - S. Parmar and S. K. Das, “Effect of marble slurry as a partial substitution of ordinary Portland cement in lean concrete mixes,” Structural Concrete, vol. 22, no. S1, Jan. 2021. CR - M. Meera and S. Gupta, “Performance evaluation of marble powder and fly ash concrete for non-structural applications,” Journal of Building Engineering, vol. 84, p. 108499, May 2024. CR - E. Kuoribo and H. Mahmoud, “Utilisation of waste marble dust in concrete production: A scientometric review and future research directions,” Journal of Cleaner Production, vol. 374, p. 133872, Nov. 2022. CR - A. Sahoo and P. K. Parhi, “Experimental Investigation of Mechanical and Durability Properties of Recycled Aggregate Concrete Added with Marble Powder, Copper Slag, and Polypropylene Fibre,” AMC Indian Journal of Civil Engineering, vol. 6, no. 2, p. 7, Dec. 2023. CR - K. Thangamani, N. N. Kumar, and T. S. R. Babu, “Experimental study on partial replacement of cement with using marble powder and coarse aggregate with demolished waste,” presented at the 8th Annual International Seminar On Trends in Science and Science Education (AISTSSE), Medan, Indonesia, 2022. CR - A. F. Omran, E. D.-Morin, D. Harbec, and A. Tagnit-Hamou, “Long-term performance of glass-powder concrete in large-scale field applications,” Construction and Building Materials, vol. 135, pp. 43–58, Mar. 2017. CR - Y. Abbas, R. Djebien, and N. T. Seghir, “Utilization of marble waste as fine aggregate in the composition of high performance concrete containing mineral additions,” Canadian Journal of Civil Engineering, p. cjce-2024-0113, Jul. 2024. CR - O. Benjeddou, R. Alyousef, C. Soussi, M. Khadimallah, H. Alabduljabbar and M. Tahir “Utilisation of waste marble powder as low-cost cementing materials in the production of mortar,” Journal of Building Engineering, vol. 32, p. 101642, Nov. 2020. UR - https://doi.org/10.35208/ert.1511775 L1 - https://dergipark.org.tr/en/download/article-file/4050980 ER -