Performance optimisation and field assessment of ternary-blended sandcrete blocks with calcium carbide residue and sawdust

Abstract Cement production contributes significantly to global greenhouse gas emissions, creating a need for sustainable alternatives. Calcium carbide residue (CCR) and sawdust remain underutilised in Nigeria despite their potential in cement-based applications. This study evaluates physical, mechanical, and economic performance of hollow sandcrete blocks incorporating CCR and sawdust, with emphasis on full-scale production and field application. A total of 206 standard hollow blocks (225 mm) were produced and used in a building extension from damp-proof course to lintel level. Laboratory tests include water absorption (WA), density and compressive strength (CS) followed the Nigerian Industrial Standard (NIS). Blocks with 30% CCR exhibited density comparable to the control but lower CS, falling 18% below the NIS minimum of 1.5 MPa at 28 days. Sawdust-based blocks showed reduced density and easier handling but exhibited high-WA and CS reductions exceeding 40% relative to the control. Mixture design modelling revealed cement had the strongest positive effect on strength ( R 2 = 0.917), while WA models showed excellent fit ( R 2 = 0.919). Numerical optimisation identified an optimal mixture of 1063 g cement and 37 g CCR per 1100 g binder, predicting 28-day strength of 1.70 MPa and WA of 7.97%. Economic analysis showed the CCR-modified mix achieved the highest performance-to-cost ratio, followed by control while sawdust-based mixes ranked lowest. Qualitative field observations were consistent with laboratory findings: carbide blocks showed no dampness, while sawdust blocks exhibited dampness after rainfall. CCR is a viable sustainable material, while sawdust requires careful consideration due to its negative effects on strength and absorption.

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Publication Details

Journal
Discover Concrete and Cement
Published
2026-09-29
DOI
https://doi.org/10.1007/s44416-026-00122-z
Primary Topic
Concrete and Cement Materials Research
Type
article
Field-Weighted Citation Impact
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Performance optimisation and field assessment of ternary-blended sandcrete blocks with calcium carbide residue and sawdust

Abel Olajide Olorunnisola, Ayodele A. Odujobi
Discover Concrete and Cement
Concrete and Cement Materials Research
article

Performance optimisation and field assessment of ternary-blended sandcrete blocks with calcium carbide residue and sawdust

Abel Olajide Olorunnisola, Ayodele A. Odujobi
article en

Abstract

Abstract Cement production contributes significantly to global greenhouse gas emissions, creating a need for sustainable alternatives. Calcium carbide residue (CCR) and sawdust remain underutilised in Nigeria despite their potential in cement-based applications. This study evaluates physical, mechanical, and economic performance of hollow sandcrete blocks incorporating CCR and sawdust, with emphasis on full-scale production and field application. A total of 206 standard hollow blocks (225 mm) were produced and used in a building extension from damp-proof course to lintel level. Laboratory tests include water absorption (WA), density and compressive strength (CS) followed the Nigerian Industrial Standard (NIS). Blocks with 30% CCR exhibited density comparable to the control but lower CS, falling 18% below the NIS minimum of 1.5 MPa at 28 days. Sawdust-based blocks showed reduced density and easier handling but exhibited high-WA and CS reductions exceeding 40% relative to the control. Mixture design modelling revealed cement had the strongest positive effect on strength ( R 2 = 0.917), while WA models showed excellent fit ( R 2 = 0.919). Numerical optimisation identified an optimal mixture of 1063 g cement and 37 g CCR per 1100 g binder, predicting 28-day strength of 1.70 MPa and WA of 7.97%. Economic analysis showed the CCR-modified mix achieved the highest performance-to-cost ratio, followed by control while sawdust-based mixes ranked lowest. Qualitative field observations were consistent with laboratory findings: carbide blocks showed no dampness, while sawdust blocks exhibited dampness after rainfall. CCR is a viable sustainable material, while sawdust requires careful consideration due to its negative effects on strength and absorption.

Discover Concrete and CementVol. 2(1)
Openalex Percentile: Top 17%
Concrete and Cement Materials Research
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Performance optimisation and field assessment of ternary-blended sandcrete blocks with calcium carbide residue and sawdust — Abel Olajide Olorunnisola, Ayodele A. Odujobi · Discover Concrete and Cement (2026) | TGRS Research Map | TGRS