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Research Article Open access CC BY 4.0

Experimental Study of Self-Compacting Concrete Using Plantain Leaf Ash and Polycarboxylate Ether Solution as Superplasticizer

Mmeka Paschal Tochukwu, Ugwu Stephen Emeka, Iwenofu Alvin Chisomnazu

Journal of Engineering Research and Reports · pp. 35–43 · Published 23 Feb 2023

10.9734/jerr/2023/v24i4812

Abstract

Concrete is a binding material, made up of constituent of cement, fine aggregate, coarse aggregate and water. Self-Compacting Concrete is an innovative concrete that does not require vibration for placing and compaction. It is able to flow under its own weight, completely filling formwork and achieving full compaction, even in the presence of congested reinforcement. The study also intended to quantify the amount of plantain leaf ash to be added to the concrete according to the value of concrete properties measured. For such purpose, the fresh concrete must possess intense fluidity and great cohesiveness. Plantain leaf ash is waste and is causing threat to environment in terms of odour and to reduce this problem of this material the project has been undertaken so that it can be used for construction purpose. The following points were attempted for the resdearch;   i.   To replace cement by different percentage of Plantain leaf ash,   ii.  To prepare concrete by replacing the cement by Plantain leaf ash,   iii. To compare the fresh properties of self-compacting concrete containing varying amounts of plantain leaf ash with that containing commercially available superplasticizer,   iv. To study the compressive strength of normal conventional concrete and self-compacting concrete.

Admixture, nonconventional concrete plantain leaf ash superplasticizer Self-Compacting Concrete (SCC)

Cited by 3

Harnessing Agricultural Waste in Self-Compacting Concrete

Fujihiko Nakade, A. N. Ede · African Journal Of Applied Research · 2026

Thermal Performance and Fresh Characteristics of Self-Compacting Concrete Incorporating Recycled Materials: A Sustainable Approach

Muntadher J. Taher, Tareq S. al-Attar, A. Al-Adili · IOP Conference Series: Earth and Environment · 2025

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