Farid Muhammad Usman, Kharraz Jehad A, Sun Jiawei, Boey Min-Wei, Riaz Muhammad Adil, Wong Pak Wai, Jia Mingyi, Zhang Xinning, Deka Bhaskar Jyoti, Khanzada Noman Khalid, Guo Jiaxin, An Alicia Kyoungjin
School of Energy and Environment, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong Special Administrative Region.
Center for Membranes and Advanced Water Technology (CMAT), Khalifa University of Science and Technology, Abu Dhabi, 127788, United Arab Emirates.
Adv Mater. 2024 Apr;36(17):e2307950. doi: 10.1002/adma.202307950. Epub 2023 Dec 4.
The emergence of nano innovations in membrane distillation (MD) has garnered increasing scientific interest. This enables the exploration of state-of-the-art nano-enabled MD membranes with desirable properties, which significantly improve the efficiency and reliability of the MD process and open up opportunities for achieving a sustainable water-energy-environment (WEE) nexus. This comprehensive review provides broad coverage and in-depth analysis of recent innovations in nano-enabled MD membranes, focusing on their role in achieving desirable properties, such as strong liquid-repellence, high resistance to scaling, fouling, and wetting, as well as efficient self-heating and self-cleaning functionalities. The recent developments in nano-enhanced photothermal-catalytic applications for water-energy co-generation within a single MD system are also discussed. Furthermore, the bottlenecks are identified that impede the scale-up of nanoenhanced MD membranes and a future roadmap is proposed for their sustainable commercialiation. This holistic overview is expected to inspire future research and development efforts to fully harness the potential of nano-enabled MD membranes to achieve sustainable integration of water, energy, and the environment.
膜蒸馏(MD)中纳米创新的出现已引起越来越多的科学关注。这使得人们能够探索具有理想性能的先进纳米MD膜,这些性能显著提高了MD过程的效率和可靠性,并为实现可持续的水-能源-环境(WEE)关系开辟了机会。这篇综述全面涵盖并深入分析了纳米MD膜的最新创新,重点关注它们在实现理想性能方面的作用,如强拒液性、高抗结垢、抗污染和抗润湿性,以及高效的自热和自清洁功能。还讨论了纳米增强光热催化在单一MD系统内用于水-能源联产的最新进展。此外,还确定了阻碍纳米增强MD膜扩大规模的瓶颈,并提出了其可持续商业化的未来路线图。这一全面概述有望激发未来的研发努力,以充分利用纳米MD膜的潜力,实现水、能源和环境的可持续整合。