
ECO EFFICIENT CONCRETE BY USING DOLOMITE POWDER AND BIOCHAR AS DUAL SUBSTITUTES | IJET â Volume 12 Issue 2 | IJET-V12I2P63

Table of Contents
ToggleInternational Journal of Engineering and Techniques (IJET)
Open Access ⢠Peer Reviewed ⢠High Citation & Impact Factor ⢠ISSN: 2395-1303
Volume 12, Issue 2 | Published: April 2026
Author: M. VISHNU PRIYA, KOLLANUR DEVI KRISHNA PRASAD, M.MAHESH NAIK, N.PRASAD, N.KEERTHANA, K.ARCHANA
DOI: https://doi.org/{{doi}} ⢠PDF: Download
Abstract
OPC production is one of the major sources of CO2 emissions,accounting for about7-8%of the total anthropogenic CO2 output. Because of this environmental challenge, supplementing with cementitious materials and by-products from industries has become as promising strategy for sustainableconstruction.Thecurrentstudyfocusesonthedevelopmentofeco- efficientconcreteusing dolomite powder and biochar as dual partial substitutes for cement. Different replacement levels of cement with dolomite powder and biochar were tested through experimental investigations. Workability, compressivestrength of concrete and split tensile strength was evaluated.The results showed that concretes with optimum blends of dolomitepowder(10-20%) constantly and as a variable of biochar (1-3%) possessed satisfactory strength and reduces carbon footprint. Thus, enhancing the performances compared to the conventional concrete mixes.
Keywords
Dolomite,Biochar,M30 ,Compressive Strength,Split Tensile Strength
Conclusion
ďˇThe present study demonstrates that partial replacement of cement with dolomite powder and biochar has a significant influence on the mechanical properties of M30 grade concrete.
ďˇThe compressive strength results indicate that the incorporation of dolomite powder and biochar enhances the early-age strength of concrete when compared to the conventional control mix.
ďˇAmong all the mixes,15% dolomite &2% biochar exhibited the highest7-day compressivestrength, indicating improved early hydration and particle packing effect.
ďˇAt 28 days of curing, 10% dolomite & 1% biochar achieved the maximum compressive strength, suggesting that lower percentages of replacement contribute to better long-term strength development.
ďˇIt is observed that moderate replacement levels of 10â15% dolomite and 1â2% biochar yield optimum strength characteristics, while higher replacement levels adversely affect the performance.
ďˇThe reduction in strength at higher replacement levels of 20% dolomite may be attributed to the dilution effect and reduced cementitious content in the mix.
ďˇThe split tensile strength results follow a similar trend as compressive strength, confirming the positive contribution of dolomite powder and biochar at optimum levels.
ďˇThe maximum split tensile strength was recorded for 10% dolomite & 1% biochar at both 7 days and 28 days, indicating improved bonding and crack resistance.
ďˇThe dolomite powder provides early strength whereas biochar provides maximum strength at 28 days.
However,excessive incorporation of biochar leads to a reduction in strength due to increased porosity and reduced workability.
The study establishes that an optimum combination of10â 15%dolomitepowderand1â2%biochar can be effectively used to produce eco-efficient concrete with improved mechanical properties.
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Cite this article
APA
M. VISHNU PRIYA, KOLLANUR DEVI KRISHNA PRASAD, M.MAHESH NAIK, N.PRASAD, N.KEERTHANA, K.ARCHANA (April 2026). ECO EFFICIENT CONCRETE BY USING DOLOMITE POWDER AND BIOCHAR AS DUAL SUBSTITUTES. International Journal of Engineering and Techniques (IJET), 12(2). https://doi.org/{{doi}}
M. VISHNU PRIYA, KOLLANUR DEVI KRISHNA PRASAD, M.MAHESH NAIK, N.PRASAD, N.KEERTHANA, K.ARCHANA, âECO EFFICIENT CONCRETE BY USING DOLOMITE POWDER AND BIOCHAR AS DUAL SUBSTITUTES,â International Journal of Engineering and Techniques (IJET), vol. 12, no. 2, April 2026, doi: {{doi}}.
