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◆ ACS Nano2026-02-20· Desalination

Energy-Harvesting Evaporator Mimics Photosynthesis-Respiration Cycle and Enables All-Day Seawater Desalination

Meng Wang, Zixiang He, Xinlu Zhang, Peng Xie, Yen Wei, Shiyu Zhang, Ke Wang, Rupeng Wang, Nanqi Ren, Shih‐Hsin Ho

原始摘要(英文原文)· Original abstract
Solar desalination holds promise for alleviating water scarcity but faces challenges in cold and low-light environments. Inspired by the environmental heat utilization and energy-storage capability of frost-resistant beetles, we designed a sandwich-structured environmental energy utilization evaporator (EUE) incorporating energy-storage microcapsules within a PVA hydrogel and a photothermal PV-Joule heating module. The EUE achieves evaporation rates of 2.12 and 10.05 kg m –2 h –1 under photothermal and dual photothermal PV-Joule heating modes, respectively. During darkness, the photosynthesis-like operation utilizes stored PV electricity to maintain stable evaporation. Energy flow modeling indicates a 174% improvement in total energy input for evaporation compared to that of single-solar desalination. Furthermore, machine-learning simulations validate the system’s performance across diverse climates, demonstrating consistent operation in cold regions. The EUE achieves excellent all-day water production (∼43.9 kg m –2 ), illustrating stable and high-performance evaporation in cold climates. This research provides a viable approach to all-weather desalination and a proof-of-concept for expanding solar-driven evaporation applications.
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Energy-Harvesting Evaporator Mimics Photosynthesis-Respiration Cycle and Enables All-Day Seawater Desalination — 科研速览 Science Skim