Arid
DOI10.1016/j.scib.2023.12.018
Progress and perspectives of sorption-based atmospheric water harvesting for sustainable water generation: Materials, devices, and systems
Bai, Zhaoyuan; Wang, Pengfei; Xu, Jiaxing; Wang, Ruzhu; Li, Tingxian
通讯作者Li, TX
来源期刊SCIENCE BULLETIN
ISSN2095-9273
EISSN2095-9281
出版年2024
卷号69期号:5页码:671-687
英文摘要Establishing alternative methods for freshwater production is imperative to effectively alleviate global water scarcity, particularly in land-locked arid regions. In this context, extracting water from the ubiquitous atmospheric moisture is an ingenious strategy for decentralized freshwater production. Sorption-based atmospheric water harvesting (SAWH) shows strong potential for supplying liquid water in a portable and sustainable way even in desert environments. Herein, the latest progress in SAWH technology in terms of materials, devices, and systems is reviewed. Recent advances in sorbent materials with improved water uptake capacity and accelerated sorption-desorption kinetics, including physical sorbents, polymeric hydrogels, composite sorbents, and ionic solutions, are discussed. The thermal designs of SAWH devices for improving energy utilization efficiency, heat transfer, and mass transport are evaluated, and the development of representative SAWH prototypes is clarified in a chronological order. Thereafter, state-of-the-art operation patterns of SAWH systems, incorporating intermittent, daytime continuous and 24-hour continuous patterns, are examined. Furthermore, current challenges and future research goals of this cutting-edge field are outlined. This review highlights the irreplaceable role of heat and mass transfer enhancement and facile structural improvement for constructing high-yield water harvesters. (c) 2023 Science China Press. Published by Elsevier B.V. and Science China Press. All rights reserved.
英文关键词Atmospheric water harvesting Water vapor sorption Water sorbents Thermal design Heat transfer Mass transport
类型Review
语种英语
收录类别SCI-E
WOS记录号WOS:001221393700001
WOS关键词METAL-ORGANIC FRAMEWORKS ; COMPOSITE DESICCANT MATERIAL ; THERMAL-CONDUCTIVITY ; ADSORPTION ; AIR ; DRIVEN ; SORBENTS ; VAPOR ; PERFORMANCE ; DESALINATION
WOS类目Multidisciplinary Sciences
WOS研究方向Science & Technology - Other Topics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/405411
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GB/T 7714
Bai, Zhaoyuan,Wang, Pengfei,Xu, Jiaxing,et al. Progress and perspectives of sorption-based atmospheric water harvesting for sustainable water generation: Materials, devices, and systems[J],2024,69(5):671-687.
APA Bai, Zhaoyuan,Wang, Pengfei,Xu, Jiaxing,Wang, Ruzhu,&Li, Tingxian.(2024).Progress and perspectives of sorption-based atmospheric water harvesting for sustainable water generation: Materials, devices, and systems.SCIENCE BULLETIN,69(5),671-687.
MLA Bai, Zhaoyuan,et al."Progress and perspectives of sorption-based atmospheric water harvesting for sustainable water generation: Materials, devices, and systems".SCIENCE BULLETIN 69.5(2024):671-687.
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