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压力交换式能量回收器在反渗透海水淡化技术中的应用 被引量:5
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作者 阮慧敏 陈志善 +2 位作者 樊雄 沈炎章 谭永文 《水处理技术》 CAS CSCD 北大核心 2004年第1期48-50,共3页
在反渗透海水淡化系统中,高压系统中采用压力交换式能量回收器,大大地降低海水淡化 的能耗。压力交换式能量回收器的能量回收效率达到95%以上,本文从其工作原理和反渗透海水 淡化设计上阐述其应用的优点。
关键词 压力交换式能量回收器 反渗透海水淡化技术 高压泵 回收效率 淡化装置
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Economic and Technical Analysis of a Reverse-Osmosis Water Desalination Plant Using DEEP-3.2 Software 被引量:1
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作者 Ali AI-Karaghouli Larry Kazmerski 《Journal of Environmental Science and Engineering(A)》 2012年第3期318-328,共11页
Reverse osmosis (RO) is proved to be the most reliable, cost effective, and energy efficient in producing fresh water compared to other desalination technologies. It is the fastest-growing desalination technology wi... Reverse osmosis (RO) is proved to be the most reliable, cost effective, and energy efficient in producing fresh water compared to other desalination technologies. It is the fastest-growing desalination technology with a greater number of installations around the world. The economic and technical performance of a medium-capacity RO desalination plant (2,000 m^3/day) proposed to be installed in Umm Qasr city south of Basra, Iraq is analyzed using DEEP-3.2 software created by the International Atomic Energy Agency (IAEA). This port city is located on the Gulf shore and does not have any fresh water resources. The analysis shows that the cost of fresh water produced by this plant is US$0.986/m^3 with a good quality of fresh water (279 ppm), which is a reasonable price for this remote area. The analysis also shows an increase in water production cost of about 12% at increased electricity price from 0.06 to 0.1 US$/kWh, 53% when the seawater salinity increased from 35,000 to 45,000 ppm, 2.5% when the seawater temperature decreased from 33 ℃ to 20 ℃, and 0.71% when the interest rate increased from 0% to 5%. Pumping fresh water from the Basra purification plant (located 175 km north of Umm Qasr) is 22.16 times the cost and 236.7% poorer quality than the fresh water produced by the RO plant. 展开更多
关键词 Water desalination reverse osmosis DEEP-3.2 software economic analysis technical analysis.
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