Technical Performance Overview of Bio-Based Insulation Materials Compared to Expanded Polystyrene

Author:

Lafond Cassandra,Blanchet PierreORCID

Abstract

The energy efficiency of buildings is well documented. However, to improve standards of energy efficiency, the embodied energy of materials included in the envelope is also increasing. Natural fibers like wood and hemp are used to make low environmental impact insulation products. Technical characterizations of five bio-based materials are described and compared to a common, traditional, synthetic-based insulation material, i.e., expanded polystyrene. The study tests the thermal conductivity and the vapor transmission performance, as well as the combustibility of the material. Achieving densities below 60 kg/m3, wood and hemp batt insulation products show thermal conductivity in the same range as expanded polystyrene (0.036 kW/mK). The vapor permeability depends on the geometry of the internal structure of the material. With long fibers are intertwined with interstices, vapor can diffuse and flow through the natural insulation up to three times more than with cellular synthetic (polymer) -based insulation. Having a short ignition times, natural insulation materials are highly combustible. On the other hand, they release a significantly lower amount of smoke and heat during combustion, making them safer than the expanded polystyrene. The behavior of a bio-based building envelopes needs to be assessed to understand the hygrothermal characteristics of these nontraditional materials which are currently being used in building systems.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference28 articles.

1. State of the art in thermal insulation materials and aims for future developments

2. North America Building Thermal Insulation Market Analysis by Product (Glass Wool, Mineral Wool, EPS, XPS), By Application (Roof, Wall, Floor), By End-use (Residential, Non-residential);Compet. Landsc. Segm. Forecast.,2016

3. Global Status Report for Buildings and Construction 2019,2019

4. The effect of material choice on the total energy need and recycling potential of a building

5. Wood waste as an alternative thermal insulation for buildings

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