This paper is published in Volume-11, Issue-2, 2025
Area
Civil Engineering
Author
Druv Ratndeep Aru, Karan Raju Ingle, Ganesh Gautam Gaikwad, Sujal Sunil Kamble, Chaitali Bagul
Org/Univ
Vivekanand Education Society Polytechnic Chembur Mumbai, Maharashtra, India
Keywords
Sugarcane Bagasse Ash, Pozzolanic Material, Sustainable Concrete, Cement Replacement, Mechanical Properties, Durability, Green Construction.
Citations
IEEE
Druv Ratndeep Aru, Karan Raju Ingle, Ganesh Gautam Gaikwad, Sujal Sunil Kamble, Chaitali Bagul. Utilization of Sugercane Bagasse Ash in Concert (SBA), International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.
APA
Druv Ratndeep Aru, Karan Raju Ingle, Ganesh Gautam Gaikwad, Sujal Sunil Kamble, Chaitali Bagul (2025). Utilization of Sugercane Bagasse Ash in Concert (SBA). International Journal of Advance Research, Ideas and Innovations in Technology, 11(2) www.IJARIIT.com.
MLA
Druv Ratndeep Aru, Karan Raju Ingle, Ganesh Gautam Gaikwad, Sujal Sunil Kamble, Chaitali Bagul. "Utilization of Sugercane Bagasse Ash in Concert (SBA)." International Journal of Advance Research, Ideas and Innovations in Technology 11.2 (2025). www.IJARIIT.com.
Druv Ratndeep Aru, Karan Raju Ingle, Ganesh Gautam Gaikwad, Sujal Sunil Kamble, Chaitali Bagul. Utilization of Sugercane Bagasse Ash in Concert (SBA), International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.
APA
Druv Ratndeep Aru, Karan Raju Ingle, Ganesh Gautam Gaikwad, Sujal Sunil Kamble, Chaitali Bagul (2025). Utilization of Sugercane Bagasse Ash in Concert (SBA). International Journal of Advance Research, Ideas and Innovations in Technology, 11(2) www.IJARIIT.com.
MLA
Druv Ratndeep Aru, Karan Raju Ingle, Ganesh Gautam Gaikwad, Sujal Sunil Kamble, Chaitali Bagul. "Utilization of Sugercane Bagasse Ash in Concert (SBA)." International Journal of Advance Research, Ideas and Innovations in Technology 11.2 (2025). www.IJARIIT.com.
Abstract
Sugarcane bagasse ash (SCBA) is an agro-industrial byproduct generated from sugarcane bagasse combustion in sugar mills. Due to its pozzolanic properties, SCBA can partially replace cement in concrete, enhancing sustainability and reducing environmental impact. This study explores the potential benefits of incorporating SCBA in concrete mixtures, focusing on its effects on mechanical properties, durability, and workability. Experimental results indicate that SCBA improves compressive strength, reduces permeability, and enhances resistance to chemical attacks when used in optimal proportions. Utilizing SCBA in concrete production minimizes industrial waste and contributes to cost-effective and eco-friendly construction practices.