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首页> 外文期刊>International journal of thermal & environmental engineering >Techno-Economic Study of PV Powered Brackish Water Reverse Osmosis Desalination Plant in the Jordan Valley
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Techno-Economic Study of PV Powered Brackish Water Reverse Osmosis Desalination Plant in the Jordan Valley

机译:约旦河谷光伏微咸水反渗透海水淡化厂的技术经济研究

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摘要

Jordan is one of the ten most water scarce countries in the world. In 2014, the share of water per capita per year in Jordan is 120 Cubic Meters (m~3). The water deficit is estimated to be 160 Million Cubic Meter (MCM) in 2015. This deficit is projected to grow up to 490 MCM by 2025. This study discusses the possibility of using solar energy for brackish water desalination in Jordan Valley (JV) to reduce the pressure on the fresh water and the conventional energy consumption associated with the desalination process, as well as, to reduce Greenhouse Gases (GHG) emissions associated with the consumption of energy produced from fossil fuels. Photovoltaic (PV) powered brackish water reverse osmosis desalination technology (RO) has been investigated in this study. The PV system has designed using PVSOL software. The economic feasibility study of use PV system has been done using Average Incremental Cost of Water (AICOW), Internal Rate of Return (IRR) and Net Present Value (NPV) in several scenarios. The results of the analysis showed that using PV systems for brackish water desalination for a small size single plant at current electricity tariff is not economically feasible for the farmers. But it is feasible for a larger size plant for ten farms or more, or with financial support from the government. The feasibility results showed that using PV systems for brackish water desalination for the government side are economically feasible even for a small size plant.
机译:约旦是世界十大缺水国家之一。 2014年,约旦的人均水份额为120立方米(m〜3)。估计2015年缺水量为1.6亿立方米(MCM)。预计到2025年,缺水量将增长到490 MCM。本研究讨论了利用太阳能在约旦河谷(JV)进行咸淡水淡化的可能性。降低淡水压力和与海水淡化过程相关的常规能源消耗,并减少与化石燃料产生的能源消耗相关的温室气体(GHG)排放。这项研究研究了光伏(PV)驱动的微咸水反渗透淡化技术(RO)。 PV系统使用PVSOL软件进行设计。使用光伏系统的经济可行性研究是在几种情况下使用水的平均增量成本(AICOW),内部收益率(IRR)和净现值(NPV)进行的。分析结果表明,使用PV系统以当前的电价对小规模的单个工厂进行微咸水脱盐对农民而言在经济上不可行。但是对于有十个或更多农场的大型工厂,或者在政府的财政支持下,这是可行的。可行性结果表明,即使对于小型工厂,将光伏系统用于政府部门的微咸水脱盐在经济上也是可行的。

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