Hybrid renewable energy systems for desalination

被引:141
作者
Esmaeilion, Farbod [1 ]
机构
[1] IUST, Sch Adv Technol, Dept Energy Syst Engn, Tehran, Iran
关键词
Desalination; Freshwater; Renewable energy sources; Hybrid energy systems; Exergy; ORGANIC RANKINE-CYCLE; WAVE-POWERED DESALINATION; NUCLEAR HEATING REACTOR; REVERSE-OSMOSIS SYSTEM; SEAWATER DESALINATION; WATER DESALINATION; SOLAR DESALINATION; EXERGY ANALYSIS; RO DESALINATION; MEMBRANE DISTILLATION;
D O I
10.1007/s13201-020-1168-5
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Water and energy are two key factors in human life that always control the growth and development of human societies. Climate changes, increasing the population in urban areas and industrialization, have increased the demands for freshwater around the world. Estimates show that a small percentage of all freshwater produced in the world is from renewable sources. By developing the technology, lowering equipment prices and increasing attention to the environmental problems of fossil fuels, utilizing renewable energy is growing. By providing a wide variety of conventional desalination methods driven by various types of renewable energy technologies in the world, water and energy legislators should choose different methods to meet the needs based on the local potentials by paying attention to the desalination processes and power systems. In some cases, concentrated solar power for thermal desalination or electricity generated by the photovoltaic plants for membrane desalination systems can be used in arid areas. Definitely, the most problem of using renewable sources is their unsteady natures, which using storage systems or combining with other renewable sources can solve this problem. This chapter provides extensive information about renewables, desalination and performance analysis of power systems. Reverse osmosis technique is a practical process in desalination which 69% of desalination plants use this system. Solar energy is an important source of energy for hybrid systems. The geothermal has a steady performance at a specified depth. Ultimately, obtained results from energy and exergy analysis would have provided a better insight.
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页数:47
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共 224 条
[41]  
Council NR, 2008, DESALINATION NATL PE, DOI 0.17226/12184
[42]   Energetic and exergetic analysis of an integrated membrane desalination system [J].
Criscuoli, A ;
Drioli, E .
DESALINATION, 1999, 124 (1-3) :243-249
[43]  
Dahm K.G., 2014, Produced Water Treatment Primer: Case Studies of Treatment Applications, Water Treatment Engineering and Research Group
[44]   Desalination of Water: a Review [J].
Darre, Natasha C. ;
Toor, Gurpal S. .
CURRENT POLLUTION REPORTS, 2018, 4 (02) :104-111
[45]   Energy and water in Kuwait - Part I. A sustainability view point [J].
Darwish, M. A. ;
Al-Awadhi, F. M. ;
Darwish, A. M. .
DESALINATION, 2008, 225 (1-3) :341-355
[46]   PV and CSP solar technologies & desalination: economic analysis [J].
Darwish, M. A. ;
Abdulrahim, H. K. ;
Hassan, A. S. ;
Mabrouk, A. A. .
DESALINATION AND WATER TREATMENT, 2016, 57 (36) :16679-16702
[47]   Wave-powered desalination: resource assessment and review of technology [J].
Davies, PA .
DESALINATION, 2005, 186 (1-3) :97-109
[48]   Design recommendations for solar organic Rankine cycle (ORC)-powered reverse osmosis (RO) desalination [J].
Delgado-Torres, Agustin M. ;
Garcia-Rodriguez, Lourdes .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2012, 16 (01) :44-53
[49]   Energy, exergy, economic and environmental (4E) analysis of a solar desalination system with humidification-dehumidification [J].
Deniz, Emrah ;
Cinar, Serkan .
ENERGY CONVERSION AND MANAGEMENT, 2016, 126 :12-19
[50]  
DeZuane J, 1997, Handbook of drinking water quality