Dual‐Biomimetic Solar Evaporator for Simultaneous Freshwater Production, Salt Harvesting, and Oil Recovery From Oily Seawater

ABSTRACT Solar‐driven interfacial evaporation has emerged as a sustainable and promising technology for seawater desalination, but its practical deployment is severely hindered by the ubiquitous presence of oil contamination in marine environments. Here, a hierarchical evaporator (GSPMS) was developed to achieve the simultaneous recovery of freshwater, solid salts, and oil. In the design, a mangrove‐inspired hydrophilic sponge (GSMS) ensures continuous capillary water transport and directs salt crystallization in predefined regions, while a Salvinia‐inspired hydrophobic‐oleophilic sponge (GPMS) selectively captures oil droplets and continuously expels them through capillary‐assisted siphon transport. Consequently, the GSPMS exhibits a stable evaporation rate of 3.43 kg m −2 h −1 along with a salt harvesting rate of 165.8 g m −2 h −1 over 50 h of continuous operation in 20 wt% brine. For seawater containing 20 vol% oil, the evaporator also delivers an evaporation rate of 4.11 kg m −2 h −1 and an oil recovery of 97.73%, while maintaining a separation efficiency above 99% over 10 cycles. This dual‐bioinspired strategy offers a promising strategy toward zero liquid discharge desalination and the comprehensive utilization of seawater resources, highlighting the potential of integrated multi‐resource recovery in solar‐driven water treatment.

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Publication Details

Journal
Advanced Functional Materials
Published
2026-09-14
DOI
https://doi.org/10.1002/adfm.78481
Primary Topic
Solar-Powered Water Purification Methods
Type
article
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article

Dual‐Biomimetic Solar Evaporator for Simultaneous Freshwater Production, Salt Harvesting, and Oil Recovery From Oily Seawater

Xinfei Fan, Chengwen Song, Yuanlu Xu, S. Zhang
Advanced Functional Materials
Solar-Powered Water Purification Methods
article

Dual‐Biomimetic Solar Evaporator for Simultaneous Freshwater Production, Salt Harvesting, and Oil Recovery From Oily Seawater

Xinfei Fan, Chengwen Song, Yuanlu Xu, S. Zhang
article en

Abstract

ABSTRACT Solar‐driven interfacial evaporation has emerged as a sustainable and promising technology for seawater desalination, but its practical deployment is severely hindered by the ubiquitous presence of oil contamination in marine environments. Here, a hierarchical evaporator (GSPMS) was developed to achieve the simultaneous recovery of freshwater, solid salts, and oil. In the design, a mangrove‐inspired hydrophilic sponge (GSMS) ensures continuous capillary water transport and directs salt crystallization in predefined regions, while a Salvinia‐inspired hydrophobic‐oleophilic sponge (GPMS) selectively captures oil droplets and continuously expels them through capillary‐assisted siphon transport. Consequently, the GSPMS exhibits a stable evaporation rate of 3.43 kg m −2 h −1 along with a salt harvesting rate of 165.8 g m −2 h −1 over 50 h of continuous operation in 20 wt% brine. For seawater containing 20 vol% oil, the evaporator also delivers an evaporation rate of 4.11 kg m −2 h −1 and an oil recovery of 97.73%, while maintaining a separation efficiency above 99% over 10 cycles. This dual‐bioinspired strategy offers a promising strategy toward zero liquid discharge desalination and the comprehensive utilization of seawater resources, highlighting the potential of integrated multi‐resource recovery in solar‐driven water treatment.

Advanced Functional Materials
Dalian Maritime University (CN)
Openalex Percentile: Top 29%
Solar-Powered Water Purification Methods
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Dual‐Biomimetic Solar Evaporator for Simultaneous Freshwater Production, Salt Harvesting, and Oil Recovery From Oily Seawater — Xinfei Fan, Chengwen Song, et al. · Advanced Functional Materials (2026) | TGRS Research Map | TGRS