Photothermal materials exhibit significant potential for marine applications, yet their efficiency and durability require enhancement. This study presents a dual-layer photothermal device that integrates a polyurethane light absorption layer with a wood sponge layer, designed for water transport and thermal insulation. The wood sponge’s hydrophilicity and effective water transport properties improve water supply while minimizing heat loss. Under sunlight, the device achieves a surface temperature of 63.2°C and an evaporation rate of 1.86 kg/m2/h for seawater desalination. The porous design of both layers ensures salt resistance during extended desalination processes. Furthermore, the incorporation of disulfide bonds into the polyurethane enhances the material’s self-healing properties, enabling sustained performance even after prolonged use, thus extending its service life. Additionally, the device demonstrates effective crude oil adsorption capabilities attributed to its photothermal efficiency and porosity. This innovative design provides valuable insights for advancing solar-driven evaporation devices and crude oil adsorption systems in marine environments.
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1 December 2025
Research Article|
August 26 2024
Polyurethane and fiber- based photothermal device for solar evaporation and crude oil adsorption
Zhicheng Liu;
Zhicheng Liu
School of Materials Science and Engineering,
Zhengzhou University
, Zhengzhou, P. R. China
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Jialong Fu;
Jialong Fu
School of Materials Science and Engineering,
Zhengzhou University
, Zhengzhou, P. R. China
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Jilin Liu;
Jilin Liu
School of Materials Science and Engineering,
Zhengzhou University
, Zhengzhou, P. R. China
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Fengjie Wei;
Tobacco Company of Henan Province
, Zhengzhou, P. R. China
Corresponding author Fengjie Wei (hnwfj163@163.com)
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Wentao Liu
School of Materials Science and Engineering,
Zhengzhou University
, Zhengzhou, P. R. China
Corresponding author Fengjie Wei (hnwfj163@163.com)
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Corresponding author Fengjie Wei (hnwfj163@163.com)
Corresponding author Wentao Liu (wtliu@zzu.edu.cn)
Declaration of competing interest The authors declare no conflict of interest.
Publisher: Emerald Publishing
Received:
June 18 2024
Accepted:
August 22 2024
Online ISSN: 2049-1239
Print ISSN: 2049-1220
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Green Materials (2025) 13 (5): 519–532.
Article history
Received:
June 18 2024
Accepted:
August 22 2024
Citation
Liu Z, Fu J, Liu J, Wei F, Liu W (2025), "Polyurethane and fiber- based photothermal device for solar evaporation and crude oil adsorption". Green Materials, Vol. 13 No. 5 pp. 519–532, doi: https://doi.org/10.1680/jgrma.24.00089
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