To create an eco-friendly environment, research is now primarily focused on reducing industrial and agricultural waste. SCBA, or sugarcane bagasse ash, is a fibrous byproduct of the sugarcane industry. The residual sugarcane, known as bagasse, is burned at high temperatures under uncontrolled conditions to produce ash after the juice from the sugarcane has been extracted. Already, this waste product is seriously polluting the environment. The silica in the bagasse ash reacts with the cement's constituent parts upon saturation to provide the cement extra characteristics including defense against rusting and chloride. As a result, adding ash to concrete additionally reduces expense all while enhancing quality and eradicating environmental harm. It makes the concrete more resilient. In the current study, the impact of bagasse ash on concrete strength is examined. The purpose of this work is to shed some light on the scientific literature done on SCBA's potential as a replacement for other concrete ingredients. The impact of SCBA on both plastic and hardened concrete properties was addressed in this study and various tests on physical properties and chemical properties of SCBA are also included. Different papers have studied to check the actual properties and various factors by using SCBA in construction.

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A Review of the Utilization and Efficiency of Sugarcane Bagasse Ash on Concrete Properties

  • Monika Angral,
  • Manisha Sharma

摘要

To create an eco-friendly environment, research is now primarily focused on reducing industrial and agricultural waste. SCBA, or sugarcane bagasse ash, is a fibrous byproduct of the sugarcane industry. The residual sugarcane, known as bagasse, is burned at high temperatures under uncontrolled conditions to produce ash after the juice from the sugarcane has been extracted. Already, this waste product is seriously polluting the environment. The silica in the bagasse ash reacts with the cement's constituent parts upon saturation to provide the cement extra characteristics including defense against rusting and chloride. As a result, adding ash to concrete additionally reduces expense all while enhancing quality and eradicating environmental harm. It makes the concrete more resilient. In the current study, the impact of bagasse ash on concrete strength is examined. The purpose of this work is to shed some light on the scientific literature done on SCBA's potential as a replacement for other concrete ingredients. The impact of SCBA on both plastic and hardened concrete properties was addressed in this study and various tests on physical properties and chemical properties of SCBA are also included. Different papers have studied to check the actual properties and various factors by using SCBA in construction.