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Abstract
Radiative cooling coating technology is gaining increasing attention in the context of mitigating urban heat island and tackling global climate change. This paper is concerned with the development of an inorganic geopolymer-based radiative cooling coating using red mud, incorporating varying sizes of TiO2 and hollow glass beads. The developed colored coating demonstrates its radiative cooling capability in reducing the surface temperature by harnessing the potential of red mud. The physico-chemical properties, surface morphology, and element distribution of the coating were characterized by XRD, FTIR, TG-DAT, SEM and EDS. The coating exhibited lower UV (0.0844) and visible reflectance (0.5275) but high NIR reflectance (0.7536), as well as high infrared emissivity of 0.9455, enabling a red color with a CIE value of L* = 74.56, a* = 9.55, and b* = 11.98, and a maximum temperature reduction of 7.3 °C under the climate of Hong Kong. Additionally, the skid resistance, abrasive resistance and adhesion strength of the proposed coating could meet the requirements of standards, indicating a great potential for footway applications. © 2024 Elsevier Ltd.
Original language | English |
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Article number | 141915 |
Journal | Journal of Cleaner Production |
Volume | 450 |
Online published | 27 Mar 2024 |
DOIs | |
Publication status | Published - 15 Apr 2024 |
Funding
The authors acknowledge the financial support by RGC General Research Fund (Project No. 15223120) and collaborative research fund (Project No. C5051-22GF), Research Institute for Sustainable Urban Development (Project No. 1-BBWX) and Research Institute for Smart Energy (Project No. CDBL) of The Hong Kong Polytechnic University. The first author would like to thank the PhD studentship provided by the Hong Kong Polytechnic University.
Research Keywords
- Colored coating
- Footway coating
- Geopolymer
- Radiative cooling
- Red mud
Fingerprint
Dive into the research topics of 'Development of red mud-modified geopolymer coating with radiative cooling effect for footway application'. Together they form a unique fingerprint.Projects
- 1 Finished
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GRF: Development of Multiple Functional Geopolymer Coating for Performance Upgrading of Concrete Building Structures
DAI, J. (Principal Investigator / Project Coordinator)
1/01/21 → 24/06/25
Project: Research