Abstract

Concrete is a commonly used construction material all over the globe. Environmentally conscious construction is essential in today's society. By using the proper materials, we may achieve long-term construction. RHA is often used as a cementitious product replacement, and in such cases, we may mix RHA with hydrated lime. Many research has been conducted on RHA, and they all indicate that it outperforms other kinds of concrete. The importance of rice husk ash in construction and its applications are the subject of this essay. Many studies have been undertaken to identify appropriate replacements for cement in concrete mixes to reduce our over-reliance on cement as a component in concrete production owing to its contribution to CO2 emissions. This article examined the research on the usage of fly ash and rice husk ash as partial concrete replacements and the chemical composition of these materials, and their impact on concrete compressive strength. The mix was created using a logical approach in which solid components were set, and water and superplasticizer content were modified to get the best viscosity and flowability. Rice husk ash (RHA) is a rice milling byproduct. Its usage as a soil stabilizer provides an environmentally friendly alternative to ultimate disposal. Because RHA is not self-cementitious, a hydraulic binder, such as lime, must be added to create cement types to strengthen the soil. In sandy soils, studies on stabilization using RHA and lime mixtures were carried out. RHA of rice husk incineration in ordinary ovens with no temperature control and laboratory burning at regulated temperatures were utilized. In soil mixes with varying RHA and lime concentrations, cementitious compounds were found to develop. Soils treated with RHA and lime underwent unconfined compression strength testing. All RHA and lime concentrations and periods tested showed strength gains, and all materials created were changed rather than stabilized. The use of RHA to improve sandy soils offers environmental, social, and economic advantages as an alternative to ultimate disposal

Highlights

  • Concrete is a highly excellent building material for any construction of reinforced concrete structures

  • The strategy used was to create material replacements to minimize concrete's environmental, energy, and CO2 effect. This was achieved by utilizing recycled concrete aggregate and partially replacing cement with significant fly ash or blast furnace slag

  • For the ingredients and mix proportions employed in this research, concrete containing 50 percent fly ash performed poorly

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Summary

INTRODUCTION

Concrete is a highly excellent building material for any construction of reinforced concrete structures. Nowadays, rising husk ash has increased because of local availability of resources within the reduced Cost and excellent economic circumstances for building constructions. One of the essential factors is that we may substitute cement with increased husk ash and hydrated lime. Additional scientific study is needed and guidance for more researchers and experts in the building sector to explore previously unknown sustainability pathways. Many additional non-traditional materials and methods, on the other hand, have never been investigated or are lacking in terms of the qualities studied.

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