This research examines the mechanical enhancement of earthen mortar through the combined use of cow dung (CD) and sawdust (SD) as biodegradable stabilisers, aiming to develop a structurally reliable and low-carbon alternative to conventional binders. Stabiliser contents ranging from 2.5% to 10% were incorporated into a locally sourced clayey soil, followed by a comprehensive evaluation of fresh and hardened density, unconfined compressive strength, split-tensile strength, flexural capacity, and derived undrained shear strength. The test results show that the CD-SD blend significantly improves mechanical performance, with compressive strength increasing by approximately 40% at 7.5% stabiliser content and tensile strength, and nearly doubling at 10% addition. Flexural strength exhibited a parallel rise of 68% relative to the untreated mix. These improvements are linked to the formation of cementitious reaction products from cow-dung ash, enhanced particle adhesion, and the micro-reinforcing role of SD fibres, which collectively reduce crack formation and increase the material’s resistance to tensile and bending stresses. Concurrently, fresh and hardened densities decreased by 14–21%, producing a lightweight composite without compromising structural reliability. The findings identify an optimum stabiliser range of 7.5–10%, balancing strength enhancement with desirable density reduction. Overall, the study confirms that CD-SD stabilisation provides a feasible, cost-effective, and environmentally responsible approach for improving earthen mortars, offering substantial potential for sustainable construction in regions where low-carbon and locally available materials are essential.
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Research Article|
October 08 2026
Synergistic bio-stabilisation of earthen mortar for enhanced mechanical performance
Syed Zishan Ashiq
;
Department of Civil Engineering,
Mirpur University of Science and Technology
, Mirpur Azad Kashmir, Pakistan
Corresponding author Syed Zishan Ashiq (pd@must.edu.pk)
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Muhammad Siddique;
Muhammad Siddique
Department of Civil Engineering,
Mirpur University of Science and Technology
, Mirpur Azad Kashmir, Pakistan
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Babar Naseem Khan Raja
;
Babar Naseem Khan Raja
Department of Civil Engineering,
Mirpur University of Science and Technology
, Mirpur Azad Kashmir, Pakistan
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Zeeshan Manzoor;
Zeeshan Manzoor
Department of Civil Engineering,
Mirpur University of Science and Technology
, Mirpur Azad Kashmir, Pakistan
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Syed Minhaj Saleem Kazmi;
Syed Minhaj Saleem Kazmi
Guangdong Provincial Key Laboratory of Durability for Marine Civil Engineering,
Shenzhen University
, Shenzhen, China
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Junaid Munir
Junaid Munir
Department of Civil Engineering,
Mirpur University of Science and Technology
, Mirpur Azad Kashmir, Pakistan
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Corresponding author Syed Zishan Ashiq (pd@must.edu.pk)
Publisher: Emerald Publishing
Online ISSN: 1747-6518
Print ISSN: 1747-650X
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Proceedings of the Institution of Civil Engineers - Construction Materials 1–14.
Citation
Ashiq SZ, Siddique M, Raja BNK, Manzoor Z, Kazmi SMS, Munir J (2026;), "Synergistic bio-stabilisation of earthen mortar for enhanced mechanical performance". Proceedings of the Institution of Civil Engineers - Construction Materials, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jcoma.26.00043
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