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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Analysis of enhancing water flux and reducing reverse solute flux in pressure assisted forward osmosis process
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Analysis of enhancing water flux and reducing reverse solute flux in pressure assisted forward osmosis process

机译:增强水通量的分析,减少压力辅助前渗透过程中的逆转溶质通量

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Pressure assisted osmosis (PAO) has been recently suggested as a way to overcome the current limitations of forward osmosis (FO), since water flux can be increased by additional hydraulic driving force. To validate its feasibility more fundamentally, the effect of hydraulic pressure combined with osmotically driven FO process was evaluated experimentally, and compared with theoretical modeling. Four different FO and NF membranes were selected and their performance characteristics were determined by both RO- and FO-based methods, since PAO is a simultaneous osmotic- and pressure-driven membrane process. The degree of enhancing water flux and reducing reverse solute flux (RSF) in the PAO process clearly differed according to the membrane type and their performance parameters. Modeling PAO performance, using the values of A, B, and S determined from both ROand FO-based methods, often failed to exactly match experimental observations, particularly for thin film composite (TFC) FO membranes, suggesting that PAO membrane performance parameters are apparently pressure-dependent. Discernible compaction in the support layer of TFC FO membranes was identified and confirmed by FO tests at different operating modes and SEM analysis, partially explaining large variations in S values under pressurized PAO operation and thus resulting large deviation from theoretical predictions.
机译:最近建议压力辅助渗透(PAO)作为克服前渗透(FO)的当前限制的方法,因为水通量可以通过额外的液压驱动力增加。为了更根本地验证其可行性,通过实验评估液压与渗透驱动FO过程的效果,并与理论建模进行比较。选择四种不同的FO和NF膜,并且通过基于RO和基的方法测定它们的性能特征,因为PAO是一种同时渗透和压力驱动的膜过程。在PAO过程中增强水通量和减少逆转溶质通量(RSF)的程度根据膜式和它们的性能参数明显不同。使用由罗兰Fo的方法确定的A,B和S的值模拟PAO性能通常未能完全匹配实验观察,特别是对于薄膜复合(TFC)FO膜,表明PAO膜性能参数显然是显而易见的压力依赖。通过在不同的操作模式和SEM分析中鉴定并确认了TFC FO膜的支持层中的可辨认并确认,部分地解释了加压PAO操作下的S值的大变化,从而导致理论上的偏差。

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