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Osmotic power production from seawater brine by hollow fiber membrane modules: Net power output and optimum operating conditions

机译:中空纤维膜组件从海水盐水中产生渗透功率:净功率输出和最佳运行条件

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This study analyzes the net energy output and optimum operating conditions for osmotic power generation from seawater brine based on the currently available hollow fiber membranes in the module scale. Factors that are influential on membrane performances, such as external concentration polarization, internal concentration polarization, salt reverse diffusion, and dilution have been taken into account. Net power density is defined and applied to characterize the efficiency of the PRO system, in terms of power production minus pumping energy, pretreatment cost and energy consumption by pressure drop in the membranes. When using 1 M NaCl as the draw solution and 10 mM NaCl as the feed, it is found that up to 7 W m(-2) net power density can be harvested by the PRO system depending on the water sources. Coupling with the existing RO plant is highly beneficial in terms of readily available high pressure source, high salinity and less or negligible pretreatment costs for the draw solution. Sources with higher salt concentrations are preferred. The optimum hydraulic pressure, module length, flow rate to membrane area ratio and feed to draw flow rate ratio have also been analyzed to maximize the net power output. In addition, implications on hollow fiber development are discussed. Fibers with high water permeability, lower structural parameter, good mechanical stability, better fouling resistance, and outer-selective configurations are recommended for further studies. (c) 2015 American Institute of Chemical Engineers AIChE J, 62: 1216-1225, 2016
机译:这项研究基于模块规模中当前可用的中空纤维膜,分析了从海水盐水渗透产生的净能量输出和最佳运行条件。已考虑到影响膜性能的因素,例如外部浓度极化,内部浓度极化,盐反向扩散和稀释。定义净功率密度,并将其用于表征PRO系统的效率,以产生的功率减去泵送的能量,预处理成本和膜中压降引起的能耗为依据。当使用1 M NaCl作为汲取溶液并使用10 mM NaCl作为进料时,发现PRO系统可以根据水源获得最高7 W m(-2)的净功率密度。就易于获得的高压源,高盐度以及抽取溶液的预处理成本较低或可忽略不计而言,与现有反渗透装置的耦合非常有益。具有较高盐浓度的来源是优选的。还分析了最佳液压,模块长度,流速与膜面积之比以及进料与抽吸流速之比,以使净功率输出最大化。另外,讨论了对中空纤维发展的影响。建议使用具有高水渗透性,较低的结构参数,良好的机械稳定性,较好的耐污垢性和外部选择性构型的纤维进行进一步研究。 (c)2015美国化学工程师学会AIChE J,62:1216-1225,2016

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