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An optimal design approach of forward osmosis and reverse osmosis hybrid process for seawater desalination

机译:海水淡化前渗透性和反渗透杂交工艺的最优设计方法

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The forward osmosis (FO) and reverse osmosis (RO) hybrid process uses seawater and wastewater treatment plant effluent as the FO draw solution and feed water, respectively, and the diluted seawater by FO is used as the RO feed water resulting in the less energy consumption than the conventional seawater reverse osmosis applications. This work developed an optimal design approach of the hybrid process by finding the optimal RO recovery and FO permeate flow rate. The optimized RO recovery (e.g. 38.5-66.7% according to the FO permeate flow rate) determined by solving an optimization problem based on the mass balance in the FO-RO hybrid process, minimizes the RO energy consumption (1.86-3.49kWh/m(3) at 25 degrees C and 2.41-3.86kWh/m(3) at 5 degrees C). The RO energy consumption decreases as the RO recovery increases until it reaches an optimal value. The optimal FO permeate flow rate can be defined with three different perspectives: (1) to minimize the RO energy consumption, (2) to minimize the RO feed flow rate, and (3) to minimize the environmental impacts of the concentrate discharge. Thus, the optimal FO permeate flow rate should be determined based on the weights of the three perspectives. The energy saving achieved by the optimal design approach in this work ranges from 37.6 to 46.7% according to the temperature.
机译:前渗透(Fo)和反渗透(RO)杂种工艺使用海水和废水处理厂作为FO脱液和饲料水分,并用FO稀释的海水用作RO供水导致的能量较少消耗量比传统的海水反渗透应用。通过找到最佳RO回收和渗透流量,这项工作开发了混合过程的最佳设计方法。通过基于FO-RO杂交工艺中的质量平衡来解决优化问题来确定优化的RO回收(例如,根据FO渗透流量的38.5-66.7%)最小化RO能量消耗(1.86-3.49kwh / m( 3)在25℃和2.41-3.86kWh / m(3)时,5℃)。随着RO恢复的增加,RO能量消耗降低,直到它达到最佳值。最佳的Fo渗透流量可以用三种不同的观点来定义:(1)以最小化RO能量消耗,(2)以最小化RO进给流速,(3)以最小化浓缩物放电的环境影响。因此,应基于三个透视图的重量来确定最佳的Fo渗透流量。根据该工作的最佳设计方法实现的节能范围根据温度为37.6至46.7%。

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