Sosa-Fernández Paulina A, Post Jan W, Nabaala Harrison L, Bruning Harry, Rijnaarts Huub
European Centre of Excellence for Sustainable Water Technology, Wetsus, P.O. Box 1113, 8911CC Leeuwarden, The Netherlands.
Department of Environmental Technology, Wageningen University, P.O. Box 8129, 6700EV Wageningen, The Netherlands.
Membranes (Basel). 2020 Nov 18;10(11):352. doi: 10.3390/membranes10110352.
Electrodialysis (ED) has been recently proposed to desalinate polymer-flooding produced water (PFPW), a byproduct stream from the oil and gas industry rich in charged polymers. However, process performance is limited by fouling occurring on the ion-exchange membranes, particularly on the anionic ones (AEMs). Thus, this study aimed to correlate the properties of different AEMs with their performance while desalinating PFPW, ultimately evaluating their significance when fouling is to be minimized and operation improved. Six stacks containing different homogeneous and commercially available AEMs were employed to desalinate synthetic PFPW during 8-days ED experiments operated in reversal mode. AEMs recovered from the stacks were analyzed in terms of water uptake, ion-exchange capacity, permselectivity, and area resistance, and compared with virgin AEMs. Relatively small changes were measured for most of the parameters evaluated. For most AEMs, the water uptake and resistance increased, while the ion-exchange capacity (IEC) and permselectivity decreased during operation. Ultimately, AEMs with high area resistance were linked to the fast development of limiting current conditions in the stack, so this property turned out to be the most relevant when desalinating PFPW.
最近有人提出用电渗析(ED)法对聚合物驱采出水(PFPW)进行脱盐处理,PFPW是石油和天然气行业富含带电聚合物的一种副产品流。然而,该工艺性能受到离子交换膜上污垢的限制,特别是阴离子交换膜(AEMs)。因此,本研究旨在将不同AEMs的性能与其在PFPW脱盐过程中的性能相关联,最终评估在尽量减少污垢和改善运行时它们的重要性。在以反向模式运行的8天电渗析实验中,使用了六个包含不同均质和市售AEMs的电渗析堆来对合成PFPW进行脱盐。对从电渗析堆中回收的AEMs进行了吸水率、离子交换容量、选择透过性和面积电阻分析,并与原始AEMs进行了比较。所评估的大多数参数变化相对较小。对于大多数AEMs,运行期间吸水率和电阻增加,而离子交换容量(IEC)和选择透过性降低。最终,具有高面积电阻的AEMs与电渗析堆中极限电流条件的快速发展有关,因此在PFPW脱盐时,这一特性被证明是最相关的。