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首页> 外文期刊>Sustainability >One-Dimensional Analytical Modeling of Pressure- Retarded Osmosis in a Parallel Flow Configuration for the Desalination Industry in the State of Kuwait
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One-Dimensional Analytical Modeling of Pressure- Retarded Osmosis in a Parallel Flow Configuration for the Desalination Industry in the State of Kuwait

机译:科威特州海水淡化行业平行流动配置中的压力滞后渗透的一维分析模型

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The present study deals with the application of one-dimensional (1D) analytical expressions for a parallel flow configuration in pressure-retarded osmosis (PRO) exchangers by using actual brine and feed salinity values from the Kuwait desalination industry. The 1D expressions are inspired by the effectiveness-number of transfer unit (ε-NTU) method used in heat exchanger analysis and has been developed to “size” an osmotically-driven membrane process (ODMP) mass exchanger given the operating conditions and desired performance. The driving potentials in these mass exchangers are the salinity differences between feed and draw solution. These 1D model equations are employed to determine mass transfer units (MTU) as a function of different dimensionless groups such as mass flowrate ratio (MR), recovery ratio (RR), concentration factors (CF) and effectiveness (ε). The introduction of new dimensionless groups such as the dilution rate ratio (DRR) and dilution rate (DR) would be used to relate the actual water permeation to the brine draw stream. The results show that a maximum power of 0.28 and 2.6 kJ can be produced by the PRO system using seawater or treated wastewater effluent (TWE) as the feed solution, respectively, which might be able to reduce the power consumption of the desalination industry in Kuwait.
机译:本研究通过使用科威特海水淡化行业的实际盐水和进料盐度值来处理一维(1D)解析表达式在压力延迟渗透(PRO)交换器中的平行流配置的应用。一维表达式受换热器分析中使用的传递单元的效率数(ε-NTU)方法的启发,并已开发以在给定操作条件和所需性能的情况下“确定”渗透驱动膜工艺(ODMP)质量交换器的尺寸。这些质量交换器的驱动潜力是进料和抽取溶液之间的盐度差异。这些一维模型方程式用于确定传质单位(MTU)作为不同无量纲基团的函数,例如质量流量比(MR),回收率(RR),浓度因子(CF)和有效性(ε)。引入新的无量纲基团,例如稀释率比(DRR)和稀释率(DR),可以将实际的水渗透率与盐水抽取流联系起来。结果表明,使用海水或经处理的废水(TWE)作为进料溶液的PRO系统可以分别产生0.28和2.6 kJ的最大功率,这也许可以减少科威特海水淡化行业的能耗。 。

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