JP Journal of Heat and Mass Transfer

The JP Journal of Heat and Mass Transfer is indexed in Scopus® and specializes in publishing articles related to heat and mass transfer. The journal covers both theoretical and experimental aspects and emphasizes their applications in engineering, electronics, environmental sciences, and nanoscale heat transfer. Additionally, the journal welcomes articles that explore transport-property data, energy engineering, and environmental applications.

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COMPARATIVE STUDY OF COMPRESSED EARTH BLOCKS REINFORCED WITH NATURAL FIBRES: ALFA FIBRES, DATE PALM FIBRES AND BARLEY STRAW FIBRES

Authors

  • Soumia ELMAATOUFI
  • Samir NASLA
  • Mehdi KHELTENT
  • Yassine EL MAATOUFI
  • Wassim GUERAOUI
  • Mohammed CHERRAJ

Keywords:

compressed earth blocks, compressive and flexural strength, thermal conductivity, water absorption, porosity, swelling, Alfa fibres, date palm, barley straw

DOI:

https://doi.org/10.17654/0973576325014

Abstract

This study examines the impact of incorporating natural fibres (Alfa, date palm, and barley straw) on the performance of compressed earth blocks (CEBs). The mechanical, thermal, and durability properties of reinforced CEBs were analyzed through tests on compressive and flexural strength, thermal conductivity, water absorption, porosity, and swelling.

The results show that CEBs reinforced with fibres heat-treated at 120°C (T2) achieve the best overall performance. Compressive strength reached 3.2 MPa for Alfa fibres, a 28% improvement over the control CEB (2.5 MPa). Flexural strength doubled, reaching 1.2 MPa for Alfa fibres versus 0.6 MPa for the control. Thermal conductivity decreased to 0.20 W/m·K (–20%), while water absorption dropped to 12% for Alfa fibres, compared to 15–20% for the control. Porosity and swelling were also significantly reduced, ensuring better dimensional stability.

These findings highlight the effectiveness of natural fibres, particularly Alfa, in enhancing CEB performance. This approach offers a sustainable and eco-friendly construction solution, especially in humid environments.

Received: February 4, 2025
Revised: March 8, 2025
Accepted: March 17, 2025

References

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Y. Jamil, S. Nasla, K. Bougtaib, K. Gueraoui and M. Cherraj, The influence of compaction stress and alfa fiber content on the physico-chemical characterization of compressed earth blocks (CEB), JP Journal of Heat and Mass Transfer 24(2) (2021), 265-282.

M. Kheltent, S. Nasla, Y. El Maatoufi, M. Laatar, H. Lbakhkhouch, K. Gueraoui and M. Cherraj, Experimental comparison for physical and thermal characterization of compressed earth block reinforced with fibers and block reinforced with cork aggregates, JP Journal of Heat and Mass Transfer 37 (2024), 111-126.

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Y. El Maatoufi, S. Nasla, K. Gueraoui and M. Cherraj, Characterization and valorization of clay deposits in the region of El Gharb (Machraa Belksiri) in Morocco, for building material industry use, JP Journal of Heat and Mass Transfer 25 (2022), 61-72.

Published

2025-04-07

Issue

Section

Articles

How to Cite

COMPARATIVE STUDY OF COMPRESSED EARTH BLOCKS REINFORCED WITH NATURAL FIBRES: ALFA FIBRES, DATE PALM FIBRES AND BARLEY STRAW FIBRES. (2025). JP Journal of Heat and Mass Transfer, 38(2), 285-298. https://doi.org/10.17654/0973576325014

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