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具有用于高盐水淡化和废水净化的超薄中间层的Janus结构MXene-PA/MS。

Janus-structured MXene-PA/MS with an ultrathin intermediate layer for high-salinity water desalination and wastewater purification.

作者信息

Zhou Peilei, Yang Kaijie, Liu Li, Liu Qianqian, Zhang Naizhong, Xu Jia

机构信息

Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao, Shandong 266100, China.

Water Desalination and Reuse Center, Division of Biological Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.

出版信息

J Colloid Interface Sci. 2025 Mar 15;682:795-803. doi: 10.1016/j.jcis.2024.11.241. Epub 2024 Nov 30.

Abstract

Solar-driven interfacial evaporation presents significant potential for seawater desalination and wastewater purification. However, prolonged operation in marine environments often results in salt accumulation, which adversely impacts the performance and lifetime of system. Despite the progress in material design, achieving efficient evaporation while mitigating salt crystallization remains challenging in high-salinity water. In this study, we synthesized a hierarchically structured CH-MXene/PA/MS evaporator employing a simple yet effective methodology specifically designed for applications in high-salinity water environments. The evaporator features a dual-region configuration, with an upper hydrophobic light-absorbing layer comprising modified MXene and polyamide (PA) membranes and a hydrophilic lower layer consists of hydrophilic melamine sponge (MS). This innovative design, incorporating an ultra-thin polyamide interlayer, significantly enhances interfacial stability, thereby mitigating the interfacial separation typically observed in conventional Janus materials during prolonged usage. Furthermore, the meticulous control over the thickness of the hydrophobic layer (5.54 μm) ensures optimal thermal insulation properties of the material. Consequently, the CH-MXene/PA/MS evaporator demonstrates an impressive evaporation rate of 1.49 kg m h under 1 sun illumination, with a high energy efficiency of 92.8 %. Furthermore, the Janus architecture ensures steady performance in high salinity conditions, sustaining a high evaporation rate of 1.46 kg m h even in a 20 wt% NaCl solution. Furthermore, under natural sunlight, the daily freshwater yield reaches 8.91 kg m. The exceptional evaporation efficiency and robust salt resistance highlight its strong potential for water desalination and wastewater treatment, contributing to the advancement of sustainable water resource management.

摘要

太阳能驱动的界面蒸发在海水淡化和废水净化方面具有巨大潜力。然而,在海洋环境中长时间运行往往会导致盐分积累,这对系统的性能和寿命产生不利影响。尽管在材料设计方面取得了进展,但在高盐度水中实现高效蒸发同时减轻盐结晶仍然具有挑战性。在本研究中,我们采用一种专门为高盐度水环境应用设计的简单而有效的方法,合成了一种具有分层结构的CH-MXene/PA/MS蒸发器。该蒸发器具有双区域结构,上部疏水吸光层由改性MXene和聚酰胺(PA)膜组成,亲水下层由亲水性三聚氰胺海绵(MS)组成。这种创新设计结合了超薄聚酰胺中间层,显著增强了界面稳定性,从而减轻了传统Janus材料在长期使用过程中通常出现的界面分离现象。此外,对疏水层厚度(5.54μm)的精确控制确保了材料的最佳隔热性能。因此,CH-MXene/PA/MS蒸发器在1个太阳光照下表现出令人印象深刻的1.49 kg m⁻² h⁻¹的蒸发速率,能量效率高达92.8%。此外,Janus结构确保了在高盐度条件下的稳定性能,即使在20 wt%的NaCl溶液中也能保持1.46 kg m⁻² h⁻¹的高蒸发速率。此外,在自然阳光下,日淡水产量达到8.91 kg m⁻²。其卓越的蒸发效率和强大的耐盐性突出了其在水淡化和废水处理方面的巨大潜力,有助于推动可持续水资源管理的发展。

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