Characterization and Thermal Evaluation of a Novel Bio-BasedNatural Insulation Material from Posidonia oceanica Waste: A Sustainable Solution for Building Insulation

Author:

Ben Hadj Tahar Dhouha1,Triki Zakaria1ORCID,Guendouz Mohamed2ORCID,Tahraoui Hichem13,Zamouche Meriem4,Kebir Mohammed5,Zhang Jie6ORCID,Amrane Abdeltif7ORCID

Affiliation:

1. Laboratory of Biomaterials and Transport Phenomena, University of Medea, Medea 26000, Algeria

2. Laboratory of Materials and Environment, University of Medea, Medea 26000, Algeria

3. Laboratoire de Génie des Procédés Chimiques, Department of Process Engineering, University of Ferhat Abbas, Setif 19000, Algeria

4. Laboratoire de Recherche sur le Médicament et le Développement Durable (ReMeDD), Faculty of Process Engineering, University of Salah BOUBNIDER Constantine 3, El Khroub 25012, Algeria

5. Research Unit on Analysis and Technological Development in Environment (UR-ADTE/CRAPC), BP 384 Bou-Ismail, Tipaza 42000, Algeria

6. School of Engineering, Merz Court, Newcastle University, Newcastle upon Tyne NE1 7RU, UK

7. Univ Rennes, Ecole Nationale Supérieure de Chimie de Rennes, CNRS, ISCR—UMR6226, F-35000 Rennes, France

Abstract

Natural bio-based insulation materials have been the most interesting products for good performance and low carbon emissions, becoming widely recognized for their sustainability in the context of climate change and the environmental impact of the building industry. The main objective of this study is to characterize a new bio-sourced insulation material composed of fibers and an adhesive based on cornstarch. This innovative material is developed from waste of the marine plant called Posidonia oceanica (PO), abundantly found along the Algerian coastline. The research aims to valorize this PO waste by using it as raw material to create this novel material. Four samples with different volumetric adhesive fractions (15%, 20%, 25%, and 30%) were prepared and tested. The collected fractions underwent a series of characterizations to evaluate their properties. The key characteristics studied include density, thermal conductivity, and specific heat. The results obtained for the thermal conductivity of the different composites range between 0.052 and 0.067 W.m−1.K−1. In addition, the findings for thermal diffusivity and specific heat are similar to those reported in the scientific literature. However, the capillary absorption of the material is slightly lower, which indicates that the developed bio-sourced material exhibits interesting thermal performance, justifying its suitability for use in building insulation in Algeria.

Publisher

MDPI AG

Subject

General Energy,General Engineering,General Chemical Engineering

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