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- W4200306750 endingPage "125965" @default.
- W4200306750 startingPage "125965" @default.
- W4200306750 abstract "Implementation of biomass based power plants is substantially increased worldwide, and hence large quantity of agro-waste ashes is disposed as waste. The reuse of agro-waste ashes as supplementary cementitious materials helps to solve problems associated with intensive carbon emission from cement plants and the disposal of agro-waste ashes. Although earlier studies are reported on the use of sugarcane bagasse ash and rice husk ash as a pozzolan in concrete, studies on their combined use in the production of ternary cement are highly limited. Hence, the present study focuses on the performance evaluation of the sugarcane bagasse ash and rice husk ash based ternary blended cementitious system. The performance of the ternary blended concrete is also compared with sugarcane bagasse ash based binary blended concrete. Rheological characteristics, compressive strength, rapid chloride penetration test, water sorptivity index, and porosity of the blended concrete is investigated. The yield stress, plastic viscosity and consistency index are increased with the increase in the addition of sugarcane bagasse ash and rice husk ash. The highest compressive strength is observed for ternary blended concrete with 10% bagasse ash and 5% rice husk ash, followed by blended binary concrete with 20% bagasse ash. The decrease in portlandite was evidently observed for binary and ternary blended samples with the addition of bagasse ash and rice husk ash using X-ray diffractogram and thermal analysis. Reduction in chloride permeability, water sorptivity index and porosity was observed for agro-waste ashes blended concrete than control concrete." @default.
- W4200306750 created "2021-12-31" @default.
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- W4200306750 creator A5088969536 @default.
- W4200306750 date "2022-01-01" @default.
- W4200306750 modified "2023-09-30" @default.
- W4200306750 title "Evaluation of rheological and durability characteristics of sugarcane bagasse ash and rice husk ash based binary and ternary cementitious system" @default.
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- W4200306750 doi "https://doi.org/10.1016/j.conbuildmat.2021.125965" @default.
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