首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A closed-loop forward osmosis-nanofiltration hybrid system: Understanding process implications through full-scale simulation
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A closed-loop forward osmosis-nanofiltration hybrid system: Understanding process implications through full-scale simulation

机译:闭环前进渗透 - 纳米过滤混合系统:通过全尺度模拟了解过程含义

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摘要

This study presents simulation of a closed-loop forward osmosis (FO)-nanofiltration (NF) hybrid system using fertiliser draw solution (DS) based on thermodynamic mass balance in a full-scale system neglecting the non-idealities such as finite membrane area that may exist in a real process. The simulation shows that the DS input parameters such as initial concentrations and its flow rates cannot be arbitrarily selected for a plant with defined volume output. For a fixed FO-NF plant capacity and feed concentration, the required initial DS flow rate varies inversely with the initial DS concentration or vice-versa. The net DS mass flow rate, a parameter constant for a fixed plant capacity but that increases linearly with the plant capacity and feed concentration, is the most important operational parameter of a closed-loop system. Increasing either of them or both increases the mass flow rate to the system directly affecting the final concentration of the diluted DS with direct energy implications to the NF process. Besides, the initial DS concentration and flow rates are also limited by the optimum recovery rates at which NF process can be operated which otherwise also have direct implications to the NF energy. This simulation also presents quantitative analysis of the reverse diffusion of fertiliser nutrients towards feed brine and the gradual accumulation of feed solutes within the closed system. (C) 2016 Elsevier B.V. All rights reserved.
机译:本研究介绍了使用肥料绘制溶液(DS)的闭环前渗透(FO) - 锰杂交系统(DS)基于全规模系统中的热力学质量平衡忽略了诸如有限膜区域的非理想状态可能存在于实际过程中。该模拟表明,DS输入参数如初始浓度及其流速不能用于具有定义体积输出的工厂。对于固定的FO-NF植物容量和饲料浓度,所需的初始DS流量与初始DS浓度反相变化,反之亦然。净DS质量流量,固定工厂容量的参数常数,但随着植物容量和饲料浓度线性增加,是闭环系统最重要的操作参数。增加它们或两者的任何一个或两者都会将质量流量增加到直接影响稀释的DS的最终浓度的系统,其具有直接能量对NF过程的影响。此外,初始DS浓度和流速也受到可以操作NF过程的最佳回收率的限制,否则也对NF能量有直接影响。该模拟还呈现了肥料营养效果对饲料盐水的反向扩散的定量分析,以及封闭系统内饲料溶质的逐渐积累。 (c)2016 Elsevier B.v.保留所有权利。

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