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Outer-selective thin film composite (TFC) hollow fiber membranes for osmotic power generation

机译:用于渗透发电的外选择性薄膜复合(TFC)中空纤维膜

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摘要

The pressure-retarded osmosis (PRO) process is a green technique for power generation to respond the world's need of energy sustainability. In this study, we have developed the vital component of the process, i.e. membrane, in the configuration of the outer-selective thin-film composite (TFC) hollow fiber, which is more practical than other configurations in the real applications. The support layer morphology and the formation of the selective polyamide layer have been optimized for a good PRO performance. The results show that the bore fluid with higher amount of the solvent N-methyl-2-pyrrolidone leads to full finger-like hollow fibers, which provide higher flux but lower pressure tolerance. The addition of higher amount of diethylene glycol into the dope solution, improves the pore formation and suppresses the macrovoid formation, while properly lowering the take-up speed increases their wall thickness and pressure tolerance. A simple alcohol-pre-wetting approach on the fiber support leads to a smooth and thin polyamide layer, which is favorable for a high water flux and power density. Its efficiency follows this order: n-propanol>ethanol>methanol>water. The n-propanol pre-wetted TFC membrane can tolerate 17 bar with a peak power density of 9.59 W/m2 at room temperature, using 1 M NaCl solution as the draw solution and DI water as feed. This work demonstrates the potential of outer-selective TFC hollow fiber membranes for energy conversion via PRO process, provides useful database to fabricate suitable support morphology and raise a simple technique to practically form a thin and smooth polyamide layer.
机译:压力迟钝的渗透(Pro)过程是一种用于发电的绿色技术,以应对世界能源可持续性需求。在这项研究中,我们开发了该方法的重要组成部分,即膜,在外选择性薄膜复合(TFC)中空纤维的构造中,其比真实应用中的其他配置更实用。用于良好的Pro性能已经优化了支持层形态和选择性聚酰胺层的形成。结果表明,具有较高量的溶剂N-甲基-2-吡咯烷酮的孔流体导致全指状中空纤维,其提供更高的助焊剂但较低的压力。将较高量的二甘醇加入掺杂溶液中,改善孔形成并抑制宏体形成,同时适当降低卷取速度增加它们的壁厚和压力容差。纤维支撑件上的简单醇预润湿方法导致光滑且薄的聚酰胺层,其有利于高水通量和功率密度。其效率遵循以下顺序:正丙醇>乙醇>甲醇>水。使用1M NaCl溶液作为进料,N-丙醇预湿润的TFC膜可以耐受峰值功率密度为9.59W / m 2的峰值功率密度。该工作证明了外部选择性TFC中空纤维膜的电位,用于通过Pro工艺提供能量转换,提供有用的数据库,用于制造合适的支持形态,并提高一种简单的技术,实际形成薄且光滑的聚酰胺层。

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