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具有高结构稳定性的用于高效光热脱盐的等离子体氮化钛纳米膜

Plasmonic Titanium Nitride Nano-enabled Membranes with High Structural Stability for Efficient Photothermal Desalination.

作者信息

Farid Muhammad Usman, Kharraz Jehad A, An Alicia Kyoungjin

机构信息

School of Energy and Environment, City University of Hong Kong, Tat Chee Avenue, Kowloon 999077, Hong Kong SAR, China.

Department of Science, School of Science and Technology, Open University of Hong Kong, Kowloon 999077, Hong Kong, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 27;13(3):3805-3815. doi: 10.1021/acsami.0c17154. Epub 2021 Jan 14.

Abstract

Herein, we demonstrate the desalination performance of a solar-driven membrane distillation (MD) process, where upon light illumination, a highly localized heating of plasmonic titanium nitride nanoparticles (TiN NPs) immobilized on a hydrophobic membrane provides the thermal driving force for the MD operation. The engineered TiN photothermal membrane induces vapor generation directly at the feed-membrane interface upon solar irradiation, thereby eliminating the need to heat the entire bulk feed water. The results indicate that the average vapor flux through the TiN photothermal membrane without any auxiliary feed heating was recorded as 1.01 L m h, which corresponds to the solar-thermal efficiency of 66.7% under 1 sun solar irradiance. The superior performance of the photothermal MD process is attributed to the broadband optical absorption and excellent light-to-heat conversion properties of the plasmonic TiN NP layer, which enabled efficient interfacial water heating at the membrane surface and increased the net driving force for vapor transport. Results also reveal the high mechanical stability of the TiN photothermal coating layer during long-term photothermal MD operations. We believe that the TiN photothermal membranes fabricated using a relatively inexpensive and nontoxic material via the simple technique with high stability and photothermal conversion efficiency will provide a path forward for developing the solar-driven MD applications.

摘要

在此,我们展示了一种太阳能驱动膜蒸馏(MD)过程的脱盐性能,在光照下,固定在疏水膜上的等离子体氮化钛纳米颗粒(TiN NPs)的高度局部加热为MD操作提供了热驱动力。经过工程设计的TiN光热膜在太阳辐射下直接在进料 - 膜界面处产生蒸汽,从而无需加热整个进料水体。结果表明,在没有任何辅助进料加热的情况下,通过TiN光热膜的平均蒸汽通量记录为1.01 L m⁻² h⁻¹,这对应于在1个太阳光照强度下66.7%的太阳能 - 热效率。光热MD过程的卓越性能归因于等离子体TiN NP层的宽带光吸收和优异的光热转换特性,这使得能够在膜表面高效地进行界面水加热,并增加了蒸汽传输的净驱动力。结果还揭示了TiN光热涂层在长期光热MD操作过程中的高机械稳定性。我们相信,通过简单技术使用相对廉价且无毒的材料制造的具有高稳定性和光热转换效率的TiN光热膜将为开发太阳能驱动的MD应用提供一条前进的道路。

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