Green Synthesis of Polyurethane Sponge-Grafted Calcium Alginate with Carbon Ink Aerogel with High Water Vapor Harvesting Capacity for Solar-Driven All-Weather Atmospheric Water Harvesting

被引:3
|
作者
Liu, Cai-Hua [1 ]
Xu, Lei [1 ]
Wang, Zhen-Yu [1 ]
Han, Sheng-Jie [1 ]
Fu, Ming-Lai [1 ]
Yuan, Baoling [1 ,2 ]
机构
[1] Huaqiao Univ, Coll Civil Engn, Xiamen Key Lab Municipal & Ind Solid Waste Utiliza, Xiamen 361021, Fujian, Peoples R China
[2] Jilin Jianzhu Univ, Key Lab Songliao Aquat Environm, Minist Educ, Changchun 130118, Peoples R China
基金
中国国家自然科学基金;
关键词
HYDROGEL; DESALINATION; COMPOSITES;
D O I
10.1021/acs.langmuir.4c01119
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Atmospheric water harvesting (AWH) technology is a new strategy for alleviating freshwater scarcity. Adsorbent materials with high hygroscopicity and high photothermal conversion efficiency are the key to AWH technology. Hence, in this study, a simple and large-scale preparation for a hygroscopic compound of polyurethane (PU) sponge-grafted calcium alginate (CA) with carbon ink (SCAC) was developed. The PU sponge in the SCAC aerogel acts as a substrate, CA as a moisture adsorber, and carbon ink as a light adsorber. The SCAC aerogel exhibits excellent water absorption of 0.555-1.40 g<middle dot>g(-1) within a wide range of relative humidity (40-80%) at 25 degrees C. The SCAC aerogel could release adsorbed water driven by solar energy, and more than 92.17% of the adsorbed water could be rapidly released over a wide solar intensity range of 1.0-2.0 sun. In an outdoor experiment, 57.517 g of SCAC was able to collect 32.8 g of clean water in 6 h, and the water quality meets the drinking water standards set by the World Health Organization. This study suggests a new approach to design promising AWH materials and infers the potential practical application of SCAC aerogel-based adsorbents.
引用
收藏
页码:14413 / 14425
页数:13
相关论文
共 5 条
  • [1] Solar-driven MXene aerogels with high water vapor harvesting capacity for atmospheric water harvesting
    Zhou, Zhiliang
    Wang, Guanghui
    Pei, Xiangjun
    Zhou, Lihong
    CHEMICAL ENGINEERING JOURNAL, 2023, 474
  • [2] Hybrid Hydrogel with High Water Vapor Harvesting Capacity for Deployable Solar-Driven Atmospheric Water Generator
    Li, Renyuan
    Shi, Yusuf
    Alsaedi, Mossab
    Wu, Mengchun
    Shi, Le
    Wang, Peng
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2018, 52 (19) : 11367 - 11377
  • [3] Green synthesis of natural nanocomposite with synergistically tunable sorption/desorption for solar-driven all-weather moisture harvesting
    Zhu, Rong
    Yu, Qiongfen
    Li, Ming
    Li, Aimin
    Zhan, Danya
    Li, Yinning
    Mo, Zhongfan
    Sun, Shengnan
    Zhang, Ying
    NANO ENERGY, 2024, 124
  • [4] High-yield solar-driven atmospheric water harvesting of metal–organic-framework-derived nanoporous carbon with fast-diffusion water channels
    Yan Song
    Ning Xu
    Guoliang Liu
    Heshan Qi
    Wei Zhao
    Bin Zhu
    Lin Zhou
    Jia Zhu
    Nature Nanotechnology, 2022, 17 : 857 - 863
  • [5] High-yield solar-driven atmospheric water harvesting of metal-organic-framework-derived nanoporous carbon with fast-diffusion water channels
    Song, Yan
    Xu, Ning
    Liu, Guoliang
    Qi, Heshan
    Zhao, Wei
    Zhu, Bin
    Zhou, Lin
    Zhu, Jia
    NATURE NANOTECHNOLOGY, 2022, 17 (08) : 857 - +