Constructing hierarchical carbon framework and quantifying water transfer for novel solar evaporation configuration

被引:56
作者
Geng, Yang [1 ]
Zhang, Kezhen [1 ]
Yang, Ke [1 ]
Ying, Peijin [1 ]
Hu, Lijun [1 ]
Ding, Jun [2 ]
Xue, Junmin [2 ]
Sun, Wan [1 ]
Sun, Kuan [1 ]
Li, Meng [1 ]
机构
[1] Chongqing Univ, Sch Energy & Power Engn, MOE Key Lab Low Grade Energy Utilizat Technol & S, CQU NUS Renewable Energy Mat & Devices Joint Lab, Chongqing 400044, Peoples R China
[2] Natl Univ Singapore, Dept Mat Sci & Engn, CQU NUS Renewable Energy Mat & Devices Joint Lab, Singapore 117573, Singapore
关键词
Solar steam generation; Volumetric evaporation performance; Numerical method; Carbon framework; Fe3O4; nanoparticles; STEAM-GENERATION; ONE SUN; EFFICIENT; GRAPHENE; ENERGY; DRIVEN; DESALINATION; PERFORMANCE; FILM; HEAT;
D O I
10.1016/j.carbon.2019.08.055
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Solar interfacial thermal evaporation system has recently drawn extensive attention because it enables low heat loss and high solar thermal conversion efficiency for water desalination and sewage treatment. However, the portability and low cost of solar thermal material are still challenges for its further practical implementation. Besides, the fundamental understanding of thermal management on the effect of efficiency remains unclear. Herein, we demonstrate a novel strategy to construct a solar thermal material of hierarchical carbon framework decorated by Fe3O4 nanoparticles (Fe3O4@CA/CF). Under 1 sun irradiation (1 kW m(-2)), the as-prepared absorber shows a broad spectrum absorption (similar to 99%) and outstanding water evaporation rate (1.316 kg m(-2) h(-1)) with similar to 91.0% efficiency, which is six times as that of water without absorber. Significantly, a marvelous volumetric water evaporation rate (up to 658 kg m(-3) h(-1)) has been obtained, indicating its portable and cost-effective superiorities. Besides, for the first time, we quantitatively reveal a strong correlation between evaporation efficiency and porosity of 1D water path in isolation configuration through numerical simulation; the optimum range of porosity for evaporation is also identified. Combining low-cost materials, broad spectrum absorption, high solar thermal conversion efficiency and excellent portability, the as-prepared material is likely to be a promising absorber for solar interfacial evaporation system. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页码:25 / 33
页数:9
相关论文
共 68 条
[1]   Multifunctional Superhydrophobic Polymer/Carbon Nanocomposites: Graphene, Carbon Nanotubes, or Carbon Black? [J].
Asthana, Ashish ;
Maitra, Tanmoy ;
Buechel, Robert ;
Tiwari, Manish K. ;
Poulikakos, Dimos .
ACS APPLIED MATERIALS & INTERFACES, 2014, 6 (11) :8859-8867
[2]   Efficient Solar-Thermal Energy Harvest Driven by Interfacial Plasmonic Heating-Assisted Evaporation [J].
Chang, Chao ;
Yang, Chao ;
Liu, Yanming ;
Tao, Peng ;
Song, Chengyi ;
Shang, Wen ;
Wu, Jianbo ;
Deng, Tao .
ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (35) :23412-23418
[3]   Light-Steered Isotropic Semiconductor Micromotors [J].
Chen, Chuanrui ;
Mou, Fangzhi ;
Xu, Leilei ;
Wang, Shaofei ;
Guan, Jianguo ;
Feng, Zunpeng ;
Wang, Quanwei ;
Kong, Lei ;
Li, Wei ;
Wang, Joseph ;
Zhang, Qingjie .
ADVANCED MATERIALS, 2017, 29 (03)
[4]   Interfacial solar heating by self-assembled Fe3O4@C film for steam generation [J].
Chen, Rong ;
Zhu, Kehang ;
Gan, Qimao ;
Yu, Yongqiang ;
Zhang, Tuqiao ;
Liu, Xiaowei ;
Ye, Miaomiao ;
Yin, Yadong .
MATERIALS CHEMISTRY FRONTIERS, 2017, 1 (12) :2620-2626
[5]   Eliminating J-V hysteresis in perovskite solar cells via defect controlling [J].
Chen, Wei ;
Sun, Kuan ;
Ma, Chaoyan ;
Leng, Chongqian ;
Fua, Jiehao ;
Hu, Lijun ;
Li, Meng ;
Wang, Ming ;
Zang, Zhigang ;
Tang, Xiaosheng ;
Shi, Haofei ;
Lu, Shirong .
ORGANIC ELECTRONICS, 2018, 58 :283-289
[6]   Layer-by-Layer Growth of CH3NH3PbI3-xClx for Highly Efficient Planar Heterojunction Perovskite Solar Cells [J].
Chen, Yonghua ;
Chen, Tao ;
Dai, Liming .
ADVANCED MATERIALS, 2015, 27 (06) :1053-1059
[7]   Extremely high water-production created by a nanoink-stained PVA evaporator with embossment structure [J].
Deng, Ziyang ;
Miao, Lei ;
Liu, Peng-Fei ;
Zhou, Jianhua ;
Wang, Pengfei ;
Gu, Yufei ;
Wang, Xiaoyang ;
Cai, Huanfu ;
Sun, Lixian ;
Tanemura, Sakae .
NANO ENERGY, 2019, 55 :368-376
[8]   Non-stoichiometric MoO3-x quantum dots as a light-harvesting material for interfacial water evaporation [J].
Ding, Dandan ;
Huang, Weicheng ;
Song, Chuanqi ;
Yan, Mei ;
Guo, Chongshen ;
Liu, Shaoqin .
CHEMICAL COMMUNICATIONS, 2017, 53 (50) :6744-6747
[9]   The Future of Seawater Desalination: Energy, Technology, and the Environment [J].
Elimelech, Menachem ;
Phillip, William A. .
SCIENCE, 2011, 333 (6043) :712-717
[10]  
Gao MM, 2019, ENERG ENVIRON SCI, V12, P841, DOI [10.1039/c8ee01146j, 10.1039/C8EE01146J]