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Multi-criteria optimization of rice-and coconut husks reinforced polyurethane composites as substitute for rubber foam in air conditioning


Citation

Ibrahim, Khalid and Mohamed Yusoff, Mohd Zuhri and Hairuddin, Abdul Aziz and As’arry, Azizan (2026) Multi-criteria optimization of rice-and coconut husks reinforced polyurethane composites as substitute for rubber foam in air conditioning. BioResources, 21 (3). pp. 8249-8274. ISSN 1930-2126

Abstract

This study presents a novel approach to mitigating the environmental impact of non-degradable industrial insulators used in air conditioning pipe. It focused on evaluating and optimizing polymer composites reinforced with rice husks and coconut husks as sustainable thermal insulation materials. This study involved two main phases: First, evaluation of the thermal and mechanical properties of rice and coconut husks reinforced polyurethane composites. Second, determination of the optimal reinforcement ratio using a hybrid multi-criteria decision-making (MCDM) methodology that integrates the Analytical Hierarchy Process (AHP) and the Additive Ratio Assessment (ARAS) techniques. Composites were fabricated with reinforcement ratios ranging from 5% to 25% by weight. Thermal conductivity results, ranging from 0.041 to 0.0486 W/m·K, confirmed the insulative potential of all composite samples, which corresponded to the range reported for industrial thermal insulators. Mechanical testing revealed enhanced tensile strength, particularly with 25 wt% coconut husks, achieving a value of 0.744 MPa. The ARAS method concluded that the optimal composition for insulation performance is 10% rice husk and 25% coconut husk reinforcements. This study advances sustainable thermal insulation materials. In addition, it offers a systematic framework for selecting the optimal reinforcement ratio for biocomposites.


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Additional Metadata

Item Type: Article
Subject: Environmental Engineering
Subject: Bioengineering
Subject: Waste Management and Disposal
Divisions: Faculty of Engineering
Institute of Tropical Forestry and Forest Products
DOI Number: https://doi.org/10.15376/biores.21.3.8249-8274
Publisher: North Carolina State University
Keywords: AHP method; Composites; Mechanical properties; Polyurethane foam; Thermal conductivity; Thermal insulation
Sustainable Development Goals (SDGs): SDG 9: Industry, Innovation and Infrastructure, SDG 12: Responsible Consumption and Production, SDG 13: Climate Action
Depositing User: Ms. Siti Radziah Mohamed@mahmod
Date Deposited: 27 Aug 2026 03:34
Last Modified: 27 Aug 2026 03:34
Altmetrics: https://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.15376/biores.21.3.8249-8274
URI: http://psasir.upm.edu.my/id/eprint/127742
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