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Emerging Energy Reducing Technologies for Desalination Applications

机译:海水淡化应用的新兴节能技术

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The purpose of this project was to independently evaluate two emerging desalination technologies that showed promise for at least 10 to 15% savings in specific energy consumption (SEC) during seawater desalination. Thin film nanocomposite (TFN) reverse osmosis (RO) membranes from LG-NanoH2O, LLC and semi-batch RO from Desalitech, LLC were selected for evaluation at the pilot scale. The significance of performing such a study was to independently test innovative technologies and ultimately to accelerate industry adaptation of recently developed commercial products by minimizing the time to widespread testing and application.The project consisted of two major phases: (1) literature review and (2) pilot-scale evaluation of TFN RO membranes and the semi-batch RO process. A comprehensive literature review was conducted to identify emerging desalination technologies with particular focus on energy minimization during seawater desalination. Pilot-scale evaluations of TFN RO membranes, Qfx400ES, Qfx365ES, and Qfx400R, were conducted at West Basin Municipal Water District's Ocean Water Demonstration Facility using seawater from the Pacific Ocean. Thin film composite (TFC) RO membranes from DowFilmtec, SW30ULE, and SW30XLE were used for baseline data collection and comparison with TFN RO membranes. The SEC at various flux and feed water recoveries were evaluated for the model membranes. A pilot scale evaluation of the semi-batch RO process was conducted at Israel Aerospace Industries (IAI) facility in Tel Aviv, Israel. Pretreated water from the Ashkelon Desalination Plant was used as the feed water for the pilot-scale evaluation. TFC RO membranes (SW30HRLE) were harvested from the full-scale plant and utilized in the semi-batch RO system. In addition, TFN RO membranes (Qfx400ES) also were utilized in the semi-batch RO system and SEC was evaluated at various flux and recovery conditions.This title belongs to WE&RF Research Report Series ISBN: 9781780408460 (eBook)
机译:该项目的目的是独立评估两种新兴的海水淡化技术,这些技术显示出有望在海水淡化过程中节省至少10%至15%的单位能耗(SEC)。 LG-NanoH2O,LLC的薄膜纳米复合(TFN)反渗透(RO)膜和Desalitech,LLC的半间歇RO被选择用于中试规模的评估。进行此类研究的重要性在于,通过最小化广泛测试和应用的时间来独立测试创新技术,并最终加速对最近开发的商业产品的行业适应性。该项目包括两个主要阶段:(1)文献综述和(2) )TFN反渗透膜和半间歇反渗透工艺的中试规模评估。进行了全面的文献综述,以发现新兴的海水淡化技术,尤其侧重于海水淡化过程中的能量最小化。在西盆地市政水区的海洋水示范设施中,使用来自太平洋的海水对TFN RO膜,Qfx400ES,Qfx365ES和Qfx400R进行了试点评估。来自DowFilmtec,SW30ULE和SW30XLE的薄膜复合材料(TFC)RO膜用于基线数据收集并与TFN RO膜进行比较。对模型膜评估了在各种通量和给水回收率下的SEC。在以色列特拉维夫的以色列航空航天工业(IAI)设施中进行了半间歇式反渗透工艺的中试规模评估。来自Ashkelon海水淡化厂的预处理水用作给水,用于中试规模评估。 TFC反渗透膜(SW30HRLE)从完整规模的工厂中收获,并用于半间歇反渗透系统中。此外,TFN反渗透膜(Qfx400ES)也用于半间歇反渗透系统中,并在各种通量和回收率条件下对SEC进行了评估。本标题属于WE&RF研究报告系列ISBN:9781780408460(电子书)

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