Abstract
The modern days construction sector faces growing pressure to adopt materials that are both energy-efficient and environmentally responsible. This research presents bio-polyurethane foam (PBF) carrier impregnated with polyethylene glycol (PEG) as novel building material. The resulting composite using PEG as phase change material (PCM) simultaneously tackles two building-related issues: reducing the carbon footprint associated with cement production and lowering the operational energy demand of buildings through passive thermal regulation. Test results showed that the melting point of PEG-impregnated PBF composites was found to be to be 22.3 °C while the melting enthalpy was recorded as 78.3 J/g. The developed composite provided a nighttime cooling of up to 10 °C compared with geopolymers without PCM. With a 28-day compressive strength of 22 MPa, the material is suitable for use in elements subjected to low-to-medium load levels, especially in non-load-bearing or secondary load-bearing applications such as residential slabs, floors, and non-load-bearing walls. These results suggest strong potential for use in partition walls, wall blocks, and insulation panels designed to moderate indoor temperature fluctuations in energy-efficient buildings.
| Original language | English |
|---|---|
| Article number | 116400 |
| Journal | Journal of Building Engineering |
| Volume | 128 |
| DOIs | |
| State | Published - 15 Jun 2026 |
Bibliographical note
Publisher Copyright:© 2026 Elsevier Ltd
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 7 Affordable and Clean Energy
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SDG 12 Responsible Consumption and Production
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SDG 13 Climate Action
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SDG 17 Partnerships for the Goals
Keywords
- Biopolyurethane foam
- Energy and energy efficiency
- Phase change material
- Polyethylene glycol
- Thermal energy storage: geopolymer concrete
ASJC Scopus subject areas
- Architecture
- Civil and Structural Engineering
- Building and Construction
- Safety, Risk, Reliability and Quality
- Mechanics of Materials
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