Synchronous steam generation and photodegradation for clean water generation based on localized solar energy harvesting

被引:93
作者
Wang, Xinzhi
He, Yurong [1 ]
Liu, Xing
机构
[1] Harbin Inst Technol, Sch Energy Sci & Engn, Harbin 150001, Heilongjiang, Peoples R China
基金
中国国家自然科学基金;
关键词
Solar energy; Photothermal conversion; Photocatalysis; Steam generation; Superhydrophobicity; EVAPORATION; MEMBRANE; FILM; DESALINATION; NANOFLUIDS; SYSTEM;
D O I
10.1016/j.enconman.2018.07.065
中图分类号
O414.1 [热力学];
学科分类号
摘要
Solving the problems of water shortage and water pollution is a vital challenge for sustainable development. Different strategies, such as photodegradation, solar distillation, and filtration, have been proposed to purify contaminated water and generate clean water. Energy-efficient clean water generation technologies play a critical role in augmenting freshwater resources. Solar energy has the potential to increase sustainable clean water production, which is a key facet of the water-energy nexus. In this study, a novel strategy to generate clean water was realized via a synchronous solar distillation and photodegradation technology based on localized solar energy harvesting using a trifunctional solar energy absorbing membrane. The membrane is composited of mixed cellulose ester (MCE) membrane, hedgehog-like hierarchical ZnO particles (HP) and gold nanoparticles (Au NPs). By floating the MCE/HP/Au membrane on rhodamine B contaminated water, the steam generation rate could reach up to similar to 8.70 kg/(m(2).h) and the concentration of organic pollutant in the residual water could be reduced to similar to 30% within two hours' solar light irradiation. It was found that the coupling between the hierarchical HPs and plasmonic Au NPs could enhance the solar light absorption and energy conversion for photodegradation and thermal generation. This work provides a new strategy for the high efficient utilization of solar energy for the clean water generation.
引用
收藏
页码:158 / 166
页数:9
相关论文
共 43 条
[1]   Volumetric solar heating and steam generation via gold nanofluids [J].
Amjad, Muhammad ;
Raza, Ghulam ;
Xin, Yan ;
Pervaiz, Shahid ;
Xu, Jinliang ;
Du, Xiaoze ;
Wen, Dongsheng .
APPLIED ENERGY, 2017, 206 :393-400
[2]  
[Anonymous], 2019, DESALINATION, DOI DOI 10.1016/j.desal.2017.09.025
[3]   The design and development of highly reactive titanium oxide photocatalysts operating under visible light irradiation [J].
Anpo, M ;
Takeuchi, M .
JOURNAL OF CATALYSIS, 2003, 216 (1-2) :505-516
[4]   Anomalous dispersions of 'hedgehog' particles [J].
Bahng, Joong Hwan ;
Yeom, Bongjun ;
Wang, Yichun ;
Tung, Siu On ;
Hoff, J. Damon ;
Kotov, Nicholas .
NATURE, 2015, 517 (7536) :596-599
[5]   Efficient synthesis of sunlight-driven ZnO-based heterogeneous photocatalysts [J].
Chang, Xueting ;
Li, Zhongliang ;
Zhai, Xinxin ;
Sun, Shibin ;
Gu, Danxia ;
Dong, Lihua ;
Yin, Yansheng ;
Zhu, Yanqiu .
MATERIALS & DESIGN, 2016, 98 :324-332
[6]   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
[7]   Magnetically recyclable self-assembled thin films for highly efficient water evaporation by interfacial solar heating [J].
Chen, Rong ;
Wu, Zhejian ;
Zhang, Tuqiao ;
Yu, Tingchao ;
Ye, Miaomiao .
RSC ADVANCES, 2017, 7 (32) :19849-19855
[8]  
Choi S., 1995, DEV APPL NONNEWTONIA, V231, P99
[9]   Solar steam generation by heat localization [J].
Ghasemi, Hadi ;
Ni, George ;
Marconnet, Amy Marie ;
Loomis, James ;
Yerci, Selcuk ;
Miljkovic, Nenad ;
Chen, Gang .
NATURE COMMUNICATIONS, 2014, 5
[10]   Bifunctional Au@Tio2 core-shell nanoparticle films for clean water generation by photocatalysis and solar evaporation [J].
Huang, Jian ;
He, Yurong ;
Wang, Li ;
Huang, Yimin ;
Jiang, Baocheng .
ENERGY CONVERSION AND MANAGEMENT, 2017, 132 :452-459