Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Investigation of Sugarcane Bagasse Ash (SBA)-Based Engineered Geopolymer Mortar Reinforced with Coconut Fibre for Engineered Geopolymer Composites

View through CrossRef
In recent years, there have been growing demand for fibre-reinforced cementitious composites using materials wastes to reduce cost and cement usage in concrete production. Therefore, this study aims to prepare sugarcane bagasse ash (SBA)-based geopolymer reinforced with coconut fibre as a material suitability evaluation for engineered geopolymer composites. The sugarcane baggase ash was characterised for its physical and chemical properties using scanning electron microscopy (SEM), Energy dispersive X-ray spectroscopy (EDS), X-ray powder diffraction (XRD). The coconut fibres was added at 0%, 1%, 2%, and 3%, while the plain cement mortar was used as the control mix. Both destructive (compressive and tensile strength) and non- destructive test (water absorption, and ultrasonic pulse velocity test) were conducted on the resulting geopolymer mortar. The result of the SBA characterisation showed that the SBA met the ASTM C618 requirement for a pozzolanic material. The addition of 1% fibre to the geopolymer composite resulted in enhanced durability property than the plain cement mortar. The ultrasonic pulse velocity test demonstrated that bagasse ash-based geopolymer composites can be classified as a excellent cementitious material. The study also found the engineered cementitious composite showed better compressive and tensile strength than the plain concrete mortar, while the addition of fibre provided a denser microstructure for additional strength. The optimum fibre content was found at 1% for improved water absorption performance, UPV, and compressive strength. The study concludes that SBA composite reinforced with coconut fibre can provide better alternatives to achieve sustainability in engineered geopolymer concrete applications.
Title: Investigation of Sugarcane Bagasse Ash (SBA)-Based Engineered Geopolymer Mortar Reinforced with Coconut Fibre for Engineered Geopolymer Composites
Description:
In recent years, there have been growing demand for fibre-reinforced cementitious composites using materials wastes to reduce cost and cement usage in concrete production.
Therefore, this study aims to prepare sugarcane bagasse ash (SBA)-based geopolymer reinforced with coconut fibre as a material suitability evaluation for engineered geopolymer composites.
The sugarcane baggase ash was characterised for its physical and chemical properties using scanning electron microscopy (SEM), Energy dispersive X-ray spectroscopy (EDS), X-ray powder diffraction (XRD).
The coconut fibres was added at 0%, 1%, 2%, and 3%, while the plain cement mortar was used as the control mix.
Both destructive (compressive and tensile strength) and non- destructive test (water absorption, and ultrasonic pulse velocity test) were conducted on the resulting geopolymer mortar.
The result of the SBA characterisation showed that the SBA met the ASTM C618 requirement for a pozzolanic material.
The addition of 1% fibre to the geopolymer composite resulted in enhanced durability property than the plain cement mortar.
The ultrasonic pulse velocity test demonstrated that bagasse ash-based geopolymer composites can be classified as a excellent cementitious material.
The study also found the engineered cementitious composite showed better compressive and tensile strength than the plain concrete mortar, while the addition of fibre provided a denser microstructure for additional strength.
The optimum fibre content was found at 1% for improved water absorption performance, UPV, and compressive strength.
The study concludes that SBA composite reinforced with coconut fibre can provide better alternatives to achieve sustainability in engineered geopolymer concrete applications.

Related Results

Unidirectional fibre reinforced geopolymer matrix composites
Unidirectional fibre reinforced geopolymer matrix composites
<p>Geopolymers have been suggested in the literature as matrix materials for fibre reinforced composites due to a unique combination of low-temperature synthesis and high tem...
Fabrication and property analysis of treated and untreated bagasse powder-reinforced epoxy resin composites
Fabrication and property analysis of treated and untreated bagasse powder-reinforced epoxy resin composites
Bagasse fiber from sugarcane waste is used with epoxy resin to make natural composites. The raw fibers are treated chemically to improve compatibility and adherence with the epoxy ...
Sugarcane
Sugarcane
This chapter is a review about sugarcane, one of the most important energy crops. It will describe some aspects of the production system, like varieties, pests and diseases, nutrie...
Experimental Analysis on Utilizing Sugarcane Bagasse Ash as a Replacement for Cement
Experimental Analysis on Utilizing Sugarcane Bagasse Ash as a Replacement for Cement
Abstract. Construction industry is estimated to consume nearly 30-35% of natural resources and associated to major global pollutions. It is essential to move our path into a sustai...
Effect of partial cement replacement with sugarcane bagasse ash
Effect of partial cement replacement with sugarcane bagasse ash
Research into mixing and replacing the component ingredients of concrete has become necessary since there is a widespread need in most parts of the globe for more affordable housin...
PHYSICAL, MECHANICAL AND CHEMICAL PROPERTIES OF NANOCELLULOSE FIBRE REINFORCED MORTAR
PHYSICAL, MECHANICAL AND CHEMICAL PROPERTIES OF NANOCELLULOSE FIBRE REINFORCED MORTAR
The paper presents an experimental investigation to evaluate the potential use of a water-based nanocellulose fibre derived from wood pulp sourced from sustainably managed forests...
High quality sugarcane bagasse-citric acid particleboards
High quality sugarcane bagasse-citric acid particleboards
AbstractThe productivity of Indonesian sugarcane plantation, especially in East Java province reached 1.186.515 tonnes in 2017. Sugarcane liquid is extracted as sugar raw material ...

Back to Top