Environmental-friendly biomass-based Janus ink/urushiol modified cotton fabric for efficient solar-driven interfacial evaporation

被引:13
|
作者
Bai, Weibin [1 ]
Zhang, Xu [1 ]
Chen, Ying [1 ]
Lian, Zhiping [1 ]
Zheng, Shijing [2 ]
Chen, Xinghang [2 ]
Lin, Yucai [3 ]
Jian, Rongkun [2 ]
机构
[1] Fujian Normal Univ, Coll Chem & Mat Sci, Fuzhou 350007, Peoples R China
[2] Fujian Prov Key Lab Adv Oriented Chem Engn, Fuzhou 350007, Peoples R China
[3] Fujian Key Lab Polymer Mat, Fuzhou 350007, Peoples R China
关键词
Photothermal conversion; Urushiol; Ink; Janus fabric; Desalination; ORIENTAL LACQUER; WATER; DESALINATION; SILANE; STEAM;
D O I
10.1016/j.cej.2023.146784
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Much attention has been paid to the interfacial solar-thermal conversion method for water resource purification. According to the hydrophilicity of ink carbon particles and the amphiphilicity of urushiol molecules (the main compound of Chinese lacquer), a novel environmentally friendly biomass Janus ink/urushiol modified cotton fabric was successfully prepared and exhibited one hydrophilic side and one hydrophobic side through simple immersion and spraying treatments. The Janus fabric displayed excellent water transport behavior, mechanical stability, thermal conductivity, and photothermal conversion performance. Under one stimulated solar radiation, the temperature of the Janus fabric increased to 85 degrees C in 2 min. Additionally, a photothermal vapor device prepared using a polyethylene ring and the Janus fabric demonstrated a high conversion efficiency of 94.3% with an impressive evaporation rate of 1.64 kg m- 2h-1, which was 3.35 times the rate of water evaporation in the absence of the modified fabric. The Janus fabric showed satisfactory resistance to ultraviolet radiation and pH values. After 8 cycles (every 10 h) of exposure to outdoor sunlight, the modified fabric showed a slightly decreased evaporation rate, which could be restored to the previous level by re-spraying ink on the modified fabric. In the concentrated salt solutions, the solar-driven evaporator displayed excellent salt rejection capacity. During the desalination of high-concentration saline water, the Janus fabric showed acceptable diurnal correspondence. After desalination, the water quality reached the required standards for drinking water. In particular, the B3+ content dropping to 0.33 mg L-1 (below the threshold of 0.5 mg L-1). The solar steam generator also showed remarkable purifying capabilities for wastewater containing heavy metals and organic dyes. The Janus ink/urushiol fabric, prepared in an easy way, has a wide range of applications in seawater desalination and sewage treatment, which can be applied for mitigation of freshwater crises and environmental remediation.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Polymer Modified Banana Pseudo Stem-based Interfacial Solar-driven Evaporation System
    Vivek Chandran
    Sujith Lal
    Sudip K. Batabyal
    Journal of Bionic Engineering, 2022, 19 : 752 - 760
  • [22] Evaporation efficiency monitoring device based on biomass photothermal material for salt-resistant solar-driven interfacial evaporation
    Li, Jiyan
    Zhou, Xu
    Chen, Guibiao
    Wang, Fei
    Mao, Jialong
    Long, Yong
    Sun, Hanxue
    Zhu, Zhaoqi
    Liang, Weidong
    Li, An
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2021, 222
  • [23] Efficient Solar-Driven Interfacial Water Evaporator using Hydrogel Modified Carbon-Based Biomass with Abundant Microchannels
    Ge, Yumeng
    Wang, Le
    Su, Zewen
    Ivan, Md. Nahian Al Subri
    Wang, Congcong
    Han, Keyu
    Tsang, Yuen Hong
    Xu, Shiqing
    Bai, Gongxun
    SMALL, 2024, 20 (30)
  • [24] Fumed nano-silica modified PVA-chitosan composite hydrogel with Janus structure for solar-driven interfacial evaporation
    Chen, Kefan
    Ma, Lijing
    Shi, Jinwen
    Jing, Dengwei
    SOLAR ENERGY, 2024, 281
  • [25] Facile Preparation of a Carbon-Based Hybrid Film for Efficient Solar-Driven Interfacial Water Evaporation
    Sun, Hanxue
    Li, Yuanzhen
    Li, Jiyan
    Zhu, Zhaoqi
    Zhang, Wanting
    Liang, Weidong
    Ma, Chonghua
    Li, An
    ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (28) : 33427 - 33436
  • [26] A self-floating carbon fiber-based evaporator with a novel sandwich-Janus structure for highly efficient solar-driven interfacial evaporation
    Wu, Haoyue
    Wang, Xin
    Liu, Mengzhu
    Wang, Yongpeng
    Feng, Shuyue
    Wu, Tinghui
    DESALINATION, 2025, 597
  • [27] One-dimensional Fe/C constructed Janus membrane enables highly-efficient and stable solar-driven interfacial evaporation
    Ning, Junqi
    Yang, Cailin
    Mei, Qiuyu
    Huang, Limingming
    Han, Kai
    ADVANCED MEMBRANES, 2024, 4
  • [28] Solar-driven interfacial evaporation based on double-layer polylactic acid fibrous membranes loading Chinese ink nanoparticles
    Ding, Qin
    Guan, Changfeng
    Li, Haoyi
    Shi, Meinong
    Yang, Weimin
    Yan, Hua
    Zuo, Xiahua
    An, Ying
    Ramakrishna, Seeram
    Mohankumar, Palanisamy
    Zhang, Fenghua
    SOLAR ENERGY, 2020, 195 : 636 - 643
  • [29] Fe-based metal organic frameworks decorated wood for efficient solar-driven interfacial water evaporation
    Jing, Shengyu
    Ji, Qiushi
    Wang, Anhu
    Zhao, Jingbo
    Liang, Huagen
    Chen, Fu
    Kannan, Palanisamy
    Tsiakaras, Panagiotis
    APPLIED THERMAL ENGINEERING, 2024, 244
  • [30] Marine biomass-derived PDMS-based composite sponge for sustainably sourced solar-driven interfacial evaporation
    Lu, Penglin
    Cheng, Shangru
    Guan, Shanshan
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2024, 12 (03):