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受生物启发的太阳能蒸发器,用于高盐度卤水的稳定高效脱盐且零液体排放。

Bio-inspired solar evaporators for stable and efficient desalination of high-salinity brine with zero liquid discharge.

作者信息

Ding Meichun, Zhao Demin, Duan Zhenying, Pan Zhengrun, Liu Chen-Yang, Li Chenwei, Zhang Jun

机构信息

School of Chemistry and Pharmaceutical Engineering, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan 250117, China.

School of Chemistry and Pharmaceutical Engineering, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan 250117, China.

出版信息

Sci Bull (Beijing). 2025 Sep 15;70(17):2812-2823. doi: 10.1016/j.scib.2025.04.071. Epub 2025 May 12.

Abstract

Solar-driven interfacial evaporation has shown great potential for achieving desalination with high energy conversion efficiency. However, maintaining a high evaporation rate is challenging due to salt accumulation on solar evaporators (SEs), leading to a long-standing trade-off between stable evaporation and salt accumulation in conventional SEs. Inspired by the salt secretion and brine transport mechanisms in mangroves, we present a bio-inspired solar evaporator (BSE) featuring an external photothermal layer and an internal water supply channel. This design enables efficient and continuous evaporation from near-saturated brine using less photothermal material. The BSE exhibits high evaporation performance (3.98 kg m h for 25 wt% brine), effcient salt collection (1.27 kg m h for 25 wt% brine), long-term durability (7 d in 25 wt% brine), and zero liquid discharge desalination. Notably, the BSE achieves a record-high water production rate of 3.50 kg m h in outdoor tests. Furthermore, it can purify World Health Organization-standard freshwater from various types of contaminated water. Importantly, the universality of BSE design is validated by extending it to other solar desalination systems. This work demonstrates a universal SE design, providing key insights into the design of next-generation SEs for efficient and stable evaporation in continuous high-salinity brine desalination.

摘要

太阳能驱动的界面蒸发在实现高能量转换效率的海水淡化方面显示出巨大潜力。然而,由于太阳能蒸发器(SEs)上的盐分积累,维持高蒸发速率具有挑战性,这导致传统SEs在稳定蒸发和盐分积累之间长期存在权衡。受红树林中盐分分泌和盐水传输机制的启发,我们提出了一种受生物启发的太阳能蒸发器(BSE),其具有外部光热层和内部供水通道。这种设计能够使用较少的光热材料从近饱和盐水中实现高效连续蒸发。BSE具有高蒸发性能(25 wt%盐水时为3.98 kg m⁻² h⁻¹)、高效盐分收集(25 wt%盐水时为1.27 kg m⁻² h⁻¹)、长期耐用性(25 wt%盐水中为7天)以及零液体排放海水淡化。值得注意的是,BSE在户外测试中实现了创纪录的3.50 kg m⁻² h⁻¹的产水率。此外,它可以从各种类型的受污染水中净化出符合世界卫生组织标准的淡水。重要的是,通过将BSE设计扩展到其他太阳能海水淡化系统,验证了其通用性。这项工作展示了一种通用的SE设计,为下一代SEs在连续高盐度盐水淡化中实现高效稳定蒸发的设计提供了关键见解。

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