Buoyancy-Assisted Fabrication of Liquid Diode: Janus Nanofibrous Membrane for Efficient Wastewater Treatment

被引:5
作者
Ahmed, Fayez U. [1 ]
Sharma, Sushant [2 ]
Purkayastha, Debarun Dhar [1 ]
机构
[1] Natl Inst Technol Nagaland, Dept Phys, Chumukedima 797103, India
[2] Univ Lorraine, CNRS, LCPME, UMR 7564, F-54600 Nancy, France
关键词
Janus nanofibrous membrane; Micro/nano hierarchicalstructure; Asymmetric wettability; Water-in-oilemulsion; Oil-in-water emulsion; Photocatalyticactivity; Antifouling and antibacterial; GRAPHENE OXIDE; PHOTOCATALYTIC ACTIVITY; HIGH-PERFORMANCE; TIO2; REMOVAL; ZNO;
D O I
10.1021/acsami.4c07900
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The pressing need for effective methods to separate oil and water in oily wastewater has spurred the development of innovative solutions. This work presents the creation and evaluation of a Janus nanofibrous membrane, also known as the Liquid Diode, developed using electrospinning (e-spinning) and buoyancy-assisted hydrothermal techniques. The membrane features a unique structure: one side is composed of PVDF nanofibers embedded with a GO/TiO2 composite, exhibiting in-air superhydrophobic and superoleophilic properties, while the reverse side consists of PVDF nanofibers with a ZnO nanorod array, demonstrating in-air superhydrophilic and underwater (UW) superoleophobic properties. This distinct asymmetric wettability enables the membrane to effectively separate both water-in-oil (w-in-o) and oil-in-water (o-in-w) emulsions, achieving an impressive liquid flux and separation efficiency (SEff). The in-air superhydrophobic side of the Janus nanofibrous membrane achieves a maximum oil flux (F-o) of 3506 +/- 250 L m(-2) h(-1), while the in-air superhydrophilic side achieves a maximum water flux (F-w) of 1837 +/- 150 L m(-2) h(-1), with SEff exceeding 98% for both sides. Furthermore, the Janus nanofibrous membrane maintained reliable mechanical stability after 10 cycles of sandpaper abrasion test and demonstrated excellent chemical stability when subjected to acidic, alkaline, cold water and hot water conditions for 24 h. These properties, combined with its ability in breaking down of organic contaminants (98% +/- 2% in 210 min) and pharmaceutical contaminants (97% +/- 2% in 210 min) under visible light, highlight its photocatalytic potential. Additionally, the membrane's antifouling and antibacterial properties suggest long-term and sustainable use in wastewater treatment applications. The synergistic combination of these superior properties positions the Janus nanofibrous membrane as a promising solution for addressing complex challenges in wastewater treatment and environmental remediation.
引用
收藏
页码:42641 / 42659
页数:19
相关论文
共 69 条
[31]   Photo/electro-thermal effect, flame retardant, multifunctional durable superhydrophobic sponge for all-weather recovery high viscosity crude oil and photothermal defrosting/deicing [J].
Li, Jiehui ;
Wu, Yaxin ;
He, Jinmei ;
Liu, Qinghua ;
Liu, Xiaofeng ;
Liu, Hui ;
Xue, Yuyu ;
Mu, Leihuan ;
Qu, Mengnan .
SEPARATION AND PURIFICATION TECHNOLOGY, 2023, 324
[32]   Designing Janus Two-Dimensional Porous Materials for Unidirectional Transport: Principles, Applications, and Challenges [J].
Li, Kai ;
Yang, Hao-Cheng ;
Xu, Zhi-Kang .
ACS APPLIED POLYMER MATERIALS, 2024, 6 (23) :14190-14203
[33]   Janus Polyvinylidene Fluoride Membrane with Extremely Opposite Wetting Surfaces via One Single-Step Unidirectional Segregation Strategy [J].
Li, Tiantian ;
Liu, Fu ;
Zhang, Shaofei ;
Lin, Haibo ;
Wang, Jianqiang ;
Tang, Chuyang Y. .
ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (29) :24947-24954
[34]   Engineering activated mineralized antifouling membranes via interface segregation tailoring [J].
Li, Yangxue ;
Yang, Xiaobin ;
Yan, Linlin ;
Dang, Guodong ;
Sun, Pengzhan ;
Nxumalo, Edward N. ;
Mamba, Bhekie B. ;
Shao, Lu .
JOURNAL OF MEMBRANE SCIENCE, 2024, 696
[35]   GO/TiO2 composites as a highly active photocatalyst for the degradation of methyl orange [J].
Lin, Chunling ;
Gao, Yifeng ;
Zhang, Jiaoxia ;
Xue, Dan ;
Fang, Hua ;
Tian, Jiayong ;
Zhou, Chunli ;
Zhang, Chanjuan ;
Li, Yuqing ;
Li, Honggang .
JOURNAL OF MATERIALS RESEARCH, 2020, 35 (10) :1307-1315
[36]   Durable Polycationic Superhydrophilic Membrane toward Excellent Antibacterial Performance and Oil-Water Separation [J].
Liu, Fatang ;
Wang, Xinran ;
Chu, Ying ;
Xu, Jingxue ;
Zhao, Xingjian ;
Hu, Chao ;
Lin, Chentao ;
Yu, Hailin ;
Wang, Huaiyuan .
ACS APPLIED POLYMER MATERIALS, 2023, 6 (01) :787-796
[37]   Gram-scale production of graphene oxide-TiO2 nanorod composites: Towards high-activity photocatalytic materials [J].
Liu, Jincheng ;
Liu, Lei ;
Bai, Hongwei ;
Wang, Yinjie ;
Sun, Darren D. .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2011, 106 (1-2) :76-82
[38]   Blow-Spun Nanofibrous Membrane for Simultaneous Treatment of Emulsified Oil/Water Mixtures, Dyes, and Bacteria [J].
Lu, Tao ;
Cao, Wenxuan ;
Liang, Hebin ;
Deng, Yankang ;
Zhang, Yingying ;
Zhu, Miaomiao ;
Ma, Wenjing ;
Xiong, Ranhua ;
Huang, Chaobo .
LANGMUIR, 2022, 38 (50) :15729-15739
[39]   Blow-spun nanofibrous composite Self-cleaning membrane for enhanced purification of oily wastewater [J].
Lu, Tao ;
Liang, Hebin ;
Cao, Wenxuan ;
Deng, Yankang ;
Qu, Qingli ;
Ma, Wenjing ;
Xiong, Ranhua ;
Huang, Chaobo .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2022, 608 :2860-2869
[40]   Beyond Symmetry: Exploring Asymmetric Electrospun Nanofiber Membranes for Liquid Separation [J].
Lu, Tian-Dan ;
Wang, Qian ;
Gu, Sheng-Shen ;
Sun, Shi-Peng .
ADVANCED FUNCTIONAL MATERIALS, 2024, 34 (10)