Predicting potential of pressure retarded osmosis power for different estuaries in Turkey

被引:3
作者
Saki, Seda [1 ]
Uzal, Nigmet [2 ]
Gokcek, Murat [3 ]
Ates, Nuray [4 ]
机构
[1] Abdullah Gul Univ, Dept Mat Sci & Mech Engn, TR-38380 Kayseri, Turkey
[2] Abdullah Gul Univ, Dept Civil Engn, TR-38380 Kayseri, Turkey
[3] Nigde Univ, Dept Mech Engn, TR-51100 Nigde, Turkey
[4] Erciyes Univ, Dept Environm Engn, TR-38039 Kayseri, Turkey
关键词
Gibbs free energy; pressure retarded osmosis; renewable energy; rivers of Turkey; RENEWABLE ENERGY-SOURCES; SALINITY GRADIENTS; REVERSE-OSMOSIS; OSMOTIC POWER; WATER; GENERATION; RIVER; PERFORMANCE; SALT; EFFICIENCY;
D O I
10.1002/ep.13085
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Pressure retarded osmosis (PRO) is an alternative renewable energy source recovered from the salinity gradient between the fresh water (feed solution) and salty water (draw solution). In order to implement osmotic power, the site-specific characteristics including the river and sea salinity, annual flow rates, ecological restrictions were taken into account. This study revealed a comprehensive analysis for a theoretical potential of PRO process for different estuaries in Turkey. In this study, the power potential prediction of PRO process for the Ceyhan, Sakarya, and Meric Rivers were analyzed via Gibbs free energy calculations. The net annual energy production is projected to be 167, 164, and 208 GWh/y for Ceyhan, Sakarya, and Meric Rivers, respectively. Meric River has the highest energy production of 208 GWh/yr with 186 m(3)/s mean flow rate and 245 mg/L salinity. These results clearly show that Turkey's rivers having high salinity and flow rate are feasible and applicable for making the osmotic power plant economically. Thereby, it is providing essential direction to the improvement of its design, installation, and operation. The developed methodology for the evaluation of the osmotic power potential of other rivers can be considered as a basis to assess the whole potential on a worldwide level. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38:e13085, 2019
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页数:8
相关论文
共 51 条
  • [1] Practical global salinity gradient energy potential
    Alvarez-Silva, O. A.
    Osorio, A. F.
    Winter, C.
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 60 : 1387 - 1395
  • [2] The use of renewable energy sources for energy in Turkey and potential trends
    Balat, M
    [J]. ENERGY EXPLORATION & EXPLOITATION, 2004, 22 (04) : 241 - 257
  • [3] Evaluation of greenhouse gas emissions for several municipal solid waste management strategies
    Chen, Ying-Chu
    Lo, Shang-Lien
    [J]. JOURNAL OF CLEANER PRODUCTION, 2016, 113 : 606 - 612
  • [4] Thin-film composite hollow fiber membranes for pressure retarded osmosis (PRO) process with high power density
    Chou, Shuren
    Wang, Rong
    Shi, Lei
    She, Qianhong
    Tang, Chuyang
    Fane, Anthony Gordon
    [J]. JOURNAL OF MEMBRANE SCIENCE, 2012, 389 : 25 - 33
  • [5] CORDERO SG, 1999, J MARINE SYST, V20, P175
  • [6] Potential applications of renewable energy sources, biomass combustion problems in boiler power systems and combustion related environmental issues[
    Demirbas, A
    [J]. PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2005, 31 (02) : 171 - 192
  • [7] Edenhofer O., 2014, IPCC: Climate Change 2014: Mitigation of Climate Change. Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change
  • [8] Membrane fouling control in ultrafiltration technology for drinking water production: A review
    Gao, Wei
    Liang, Heng
    Ma, Jun
    Han, Mei
    Chen, Zhong-lin
    Han, Zheng-shuang
    Li, Gui-bai
    [J]. DESALINATION, 2011, 272 (1-3) : 1 - 8
  • [9] GDEA, 2016, MONTHL EN STAT REP
  • [10] Advanced Anti-Fouling Membranes for Osmotic Power Generation from Wastewater via Pressure Retarded Osmosis (PRO)
    Hang, Gang
    Liu, Jiang Tao
    Lu, Kang Jia
    Chung, Tai-Shung
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2018, 52 (11) : 6686 - 6694