Application of solar energy in water treatment processes: A review

被引:201
作者
Zhang, Ying [1 ]
Sivakumar, Muttucumaru [1 ]
Yang, Shuqing [1 ]
Enever, Keith [1 ]
Ramezanianpour, Mohammad [2 ]
机构
[1] Univ Wollongong, Sch Civil Min & Environm Engn, Fac Engn & Informat Sci, Wollongong, NSW, Australia
[2] Ara Inst Canterbury, Dept Engn & Architectural Studies, Christchurch, New Zealand
关键词
Solar energy; Water treatment; Desalination technologies; Photocatalysis; SODIS; HUMIDIFICATION-DEHUMIDIFICATION DESALINATION; VACUUM MEMBRANE DISTILLATION; REVERSE-OSMOSIS DESALINATION; MULTIEFFECT DISTILLATION; PILOT-PLANT; POWERED DESALINATION; SMALL-SCALE; ECONOMIC-EVALUATION; DISINFECTION SODIS; DRINKING-WATER;
D O I
10.1016/j.desal.2017.11.020
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The utilization of solar energy to drive water treatment processes is a potential sustainable solution to the world's water scarcity issue. In recent years, significant efforts have been devoted to developing and testing innovative solar based water treatment technologies, which are comprehensively reviewed in this paper. Recent developments and applications of seven major solar desalination technologies, solar photocatalysis process and solar disinfection are investigated. Potential integration of solar technologies and desalination processes are summarized. By collecting and analysing performance data from recent studies, the status of productivity, energy consumption and water production costs of different technologies is critically reviewed. The real world applicability as well as technical and economic feasibility is also evaluated. Presently, most of the solar water treatment processes are still under development with limited real applications. Economic competitiveness is among the major reasons that affect the scaling up and commercialization. It is revealed that the reported water costs of small to medium scale solar desalination plants are in the range of US$0.2-22/m(3), much higher than conventional fossil fuel based plants. However, the estimated low water costs (US$0.9-2.2/m(3)) for large scale solar based plants indicate that solar based alternatives will become potentially viable in the near future.
引用
收藏
页码:116 / 145
页数:30
相关论文
共 148 条
[1]   Review of fossil fuels and future energy technologies [J].
Abas, N. ;
Kalair, A. ;
Khan, N. .
FUTURES, 2015, 69 :31-49
[2]   Sun tracking system for productivity enhancement of solar still [J].
Abdallah, S. ;
Badran, O. O. .
DESALINATION, 2008, 220 (1-3) :669-676
[3]   Experimental and theoretical study of a solar desalination system located in Cairo, Egypt [J].
Abdel-Rehim, Zeinab S. ;
Lasheen, Ashraf .
DESALINATION, 2007, 217 (1-3) :52-64
[4]   Water desalination using humidification/dehumidification (HDH) technique powered by solar energy: a detailed review [J].
Abdelmoez, Wael ;
Mahmoud, Mohamed S. ;
Farrag, Taha E. .
DESALINATION AND WATER TREATMENT, 2014, 52 (25-27) :4622-4640
[5]   Parameters affecting the performance of a low cost solar still [J].
Ahsan, A. ;
Imteaz, M. ;
Thomas, U. A. ;
Azmi, M. ;
Rahman, A. ;
Daud, N. N. Nik .
APPLIED ENERGY, 2014, 114 :924-930
[6]   Design, fabrication and performance analysis of an improved solar still [J].
Ahsan, Amimul ;
Imteaz, Monzur ;
Rahman, Ataur ;
Yusuf, Badronnisa ;
Fukuhara, T. .
DESALINATION, 2012, 292 :105-112
[7]   Energy consumption and water production cost of conventional and renewable-energy-powered desalination processes [J].
Al-Karaghouli, Ali ;
Kazmerski, Lawrence L. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2013, 24 :343-356
[8]   Technical and economic assessment of photovoltaic-driven desalination systems [J].
Al-Karaghouli, Ali ;
Renne, David ;
Kazmerski, Lawrence L. .
RENEWABLE ENERGY, 2010, 35 (02) :323-328
[9]   Multi-effect distillation plants: state of the art [J].
Al-Shammiri, M ;
Safar, M .
DESALINATION, 1999, 126 (1-3) :45-59
[10]   Humidification dehumidification desalination system using parabolic trough solar air collector [J].
Al-Sulaiman, Fahad A. ;
Zubair, M. Ifras ;
Atif, Maimoon ;
Gandhidasan, Palanichamy ;
Al-Dini, Salem A. ;
Antar, Mohamed A. .
APPLIED THERMAL ENGINEERING, 2015, 75 :809-816