On the hygrothermal properties of sandcrete blocks produced with sawdust as partial replacement of sand

Author:

Robert Ubong Williams1,Etuk Sunday Edet2,Agbasi Okechukwu Ebuka3,Okorie Uduakobong Sunday1,Abdulrazzaq Zaidoon Taha4,Anonaba Armstrong Udochukwu5,Ojo Odunayo Tope2

Affiliation:

1. Department of Physics , Akwa Ibom State University , Ikot Akpaden , Mkpat Enin , Akwa Ibom State , Nigeria

2. Deptartment of Physics , University of Uyo , Uyo , Akwa Ibom State , Nigeria

3. Department of Physics , Michael Okpara University of Agriculture , Umudike , Abia , Nigeria

4. Directorate of Space and Communications, Ministry of Science and Technology , Baghdad , Iraq

5. Department of Industrial Physics , Abia State University , Uturu , Abia State , Nigeria

Abstract

Abstract In Nigeria, sawdust is continuously generated in large quantities as waste but majorly under-utilised, a situation which causes serious environmental problems and health hazards when managed improperly. This work focussed on production and assessment of hygrothermal properties of solid core sandcrete blocks in which sand is partially replaced with sawdust at 0%, 10%, 20%, 30%, and 40% loading levels. Experiments were conducted on block samples made with untreated sawdust (USD) and on those similarly produced but with treated sawdust (TSD). The results showed that the blocks with USD content are capable of decreasing wall heat transmission load and improve energy efficiency of building envelopes better than their counterparts produced with TSD. In terms of compliance with standard bulk density and water absorption requirements, incorporation of USD or TSD at 20% or 10% level respectively, was found to be optimum for partial sand substitution in the studied block samples in order to suit the functional requirements of building structure and interior space. Since sawdust is cheaply and commonly available in vast amount, utilising it in sandcrete block production is a promising way of minimising its disposal problems while enhancing the development of safe, affordable, and sustainable housing.

Publisher

Walter de Gruyter GmbH

Subject

Mechanics of Materials,Materials Science (miscellaneous)

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