Radiative cooling sorbent towards all weather ambient water harvesting

被引:2
|
作者
Wenkai Zhu
Yun Zhang
Chi Zhang
Xiwei Shan
Akshay K. Rao
Sarah L. Pitts
Travest J. Woodbury
Tanya Sophia Masnyk
Dominique Derome
David M. Warsinger
Xiulin Ruan
Lisa J. Mauer
Jan Carmeliet
Tian Li
机构
[1] Purdue University,School of Mechanical Engineering
[2] ETH Zürich,Chair of Building Physics
[3] Purdue University,Department of Food Sciences
[4] Université de Sherbrooke,Department of Civil and Building Engineering
来源
关键词
D O I
10.1038/s44172-023-00082-3
中图分类号
学科分类号
摘要
Emerging atmospheric water harvesting (AWH) technologies hold promise for water supply to underdeveloped regions with limited access to liquid water resources. The prevailing AWH systems, including condensation- or sorption-based, mostly rely on a single mechanism limited by working conditions and inferior performance. Here, we synergistically integrate multiple mechanisms, including thermosorption effect, radiative cooling, and multiscale cellulose-water interactions to improve the water harvesting performance with minimal active energy input over a relative humidity (RH) range between 8% to 100%. The proposed system consists of a scalable and sustainable cellulose scaffold impregnated with hygroscopic lithium chloride (LiCl). Cellulose scaffold and LiCl synergistically interact with water at molecular, nanometer, and micrometer scales, achieving a high yield (2.5–16 kg kg−1 at 60–90% RH). The captured water in return facilitates radiative cooling due to its intrinsically high infrared emissivity. An outdoor batch-mode AWH device shows a water uptake up to 6.75 L kg−1 day−1 with a material cost as low as 3.15–5.86 USD kg−1. A theoretical model is also proposed to elucidate the synergistic AWH mechanisms among cellulose-LiCl-water-energy interaction. This AWH strategy provides a potential solution to water scarcity problems in regions with larger seasonal and climate variations, especially arid areas.
引用
收藏
相关论文
共 50 条
  • [41] Sub-ambient radiative cooling and its application in buildings
    Lufang Chen
    Kai Zhang
    Mingquan Ma
    Saihong Tang
    Fei Li
    Xiaofeng Niu
    Building Simulation, 2020, 13 : 1165 - 1189
  • [42] Sub-ambient radiative cooling and its application in buildings
    Chen, Lufang
    Zhang, Kai
    Ma, Mingquan
    Tang, Saihong
    Li, Fei
    Niu, Xiaofeng
    BUILDING SIMULATION, 2020, 13 (06) : 1165 - 1189
  • [43] Passive directional sub-ambient daytime radiative cooling
    Bikram Bhatia
    Arny Leroy
    Yichen Shen
    Lin Zhao
    Melissa Gianello
    Duanhui Li
    Tian Gu
    Juejun Hu
    Marin Soljačić
    Evelyn N. Wang
    Nature Communications, 9
  • [44] Passive directional sub-ambient daytime radiative cooling
    Bhatia, Bikram
    Leroy, Arny
    Shen, Yichen
    Zhao, Lin
    Gianello, Melissa
    Li, Duanhui
    Gu, Tian
    Hu, Juejun
    Soljacic, Marin
    Wang, Evelyn N.
    NATURE COMMUNICATIONS, 2018, 9
  • [45] An advanced passive radiative cooling emitter with ultrahigh sub-ambient cooling performance
    Huang, Jiawei
    Chen, Weifeng
    Kuang, Qiyan
    Xiao, Ting
    Jiang, Lihua
    Tan, Xinyu
    Lei, Yizhu
    JOURNAL OF MATERIALS CHEMISTRY A, 2024, 12 (44) : 30351 - 30361
  • [46] Multifunctional broadband emitters based on rare earth phosphors for all-weather and efficient radiative cooling and energy saving
    Hu, Qinglong
    Tan, Ruiming
    Zhong, Pengjie
    Han, Keyu
    Li, Yinyan
    Xue, Peng
    Bai, Gongxun
    JOURNAL OF MATERIALS CHEMISTRY A, 2025, 13 (12) : 8549 - 8558
  • [47] Adsorbents for Dehumidification, Cooling, and Water Harvesting
    Ernst, Sebastian-Johannes
    Baumgartner, Max
    Froehlich, Dominik
    Bart, Hans-Joerg
    Henninger, Stefan Kai
    CHEMIE INGENIEUR TECHNIK, 2017, 89 (12) : 1650 - 1660
  • [48] High-Yield Atmospheric Water Harvesting Device with Integrated Heating/Cooling Enabled by Thermally Tailored Hydrogel Sorbent
    Min, Xinzhe
    Wu, Zhen
    Wei, Tianqi
    Hu, Xiaozhen
    Shi, Peiru
    Xu, Ning
    Wang, Haiming
    Li, Jinlei
    Zhu, Bin
    Zhu, Jia
    ACS ENERGY LETTERS, 2023, 8 (07): : 3147 - 3153
  • [49] All-Day Freshwater Harvesting through Combined Solar-Driven Interfacial Desalination and Passive Radiative Cooling
    Xu, Jiale
    Zhang, Jingyi
    Fu, Benwei
    Song, Chengyi
    Shang, Wen
    Tao, Peng
    Deng, Tao
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (42) : 47612 - 47622
  • [50] Efficient thermal management and all-season energy harvesting using adaptive radiative cooling and a thermoelectric power generator
    Park, Chanil
    Lee, Woohwa
    Park, Choyeon
    Park, Sungmin
    Lee, Jaeho
    Kim, Yong Seok
    Yoo, Youngjae
    JOURNAL OF ENERGY CHEMISTRY, 2023, 84 : 496 - 501