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Pressure retarded osmosis process for power generation: Feasibility, energy balance and controlling parameters

机译:发电用的压力渗透渗透工艺:可行性,能量平衡和控制参数

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The feasibility of pressure-retarded osmosis (PRO) for power generation was evaluated with consideration of the energy inputs and losses in the process. The effects of the concentration polarization, reverse salt diffusion, and external resistance at the membrane porous layer were quantified, for the first time, along the membrane module to determine their contributions to the energy loss in the PRO process. Concentration polarization was responsible for up to 40% of the energy loss during the PRO process. However, increasing the PRO membrane modules from 1 to 4 resulted in a variable increase of the energy output depending on the salinity gradient. The energy requirements for draw and feed solution pretreatment were estimated to be over 38% of the total energy inputs. Results showed that coupling seawater (SW) with river water (RW) was unable to generate sufficient energy to compensate for the energy inputs and losses during the PRO process. With 0.39 kwh/m(3) maximum specific energy in the PRO process, the energy yield of reverse osmosis brine (ROB)-wastewater (WW) salinity gradient was slightly greater than the total energy inputs, although using Dead Sea-SW/ROB salinity gradient was more promising. Overall, the primary current limitation is the lack of suitable PRO membranes that can withstand a high hydraulic pressure.
机译:考虑了过程中的能量输入和损耗,评估了加压渗透法(PRO)用于发电的可行性。首次沿着膜组件量化了膜多孔层上浓度极化,反盐扩散和外部电阻的影响,以确定它们对PRO过程中能量损失的贡献。在PRO过程中,浓度极化导致高达40%的能量损失。但是,将PRO膜组件从1个增加到4个会导致根据盐度梯度而变化的能量输出。提取和进料溶液预处理的能量需求估计占总能量输入的38%以上。结果表明,海水(RW)与河水(RW)耦合不能产生足够的能量来补偿PRO过程中的能量输入和损失。在PRO过程中,最大比能为0.39 kwh / m(3),尽管使用Dead Sea-SW / ROB,反渗透盐水(ROB)-废水(WW)盐度梯度的能量输出略大于总能量输入盐度梯度更有希望。总体而言,主要的电流限制是缺乏合适的PRO膜,它们可以承受较高的液压压力。

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