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用于通过正向渗透更稳定地处理页岩气采出水的孔型间隔物

Hole-Type Spacers for More Stable Shale Gas-Produced Water Treatment by Forward Osmosis.

作者信息

AlQattan Jawad, Kim Youngjin, Kerdi Sarah, Qamar Adnan, Ghaffour Noreddine

机构信息

Water Desalination and Reuse Center (WDRC), King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.

Department of Environmental Engineering, Sejong Campus, Korea University, 2511, Sejong-ro, Jochiwon-eup, Sejong-si 30019, Korea.

出版信息

Membranes (Basel). 2021 Jan 3;11(1):34. doi: 10.3390/membranes11010034.

Abstract

An appropriate spacer design helps in minimizing membrane fouling which remains the major obstacle in forward osmosis (FO) systems. In the present study, the performance of a hole-type spacer (having holes at the filament intersections) was evaluated in a FO system and compared to a standard spacer design (without holes). The hole-type spacer exhibited slightly higher water flux and reverse solute flux (RSF) when Milli-Q water was used as feed solution and varied sodium chloride concentrations as draw solution. During shale gas produced water treatment, a severe flux decline was observed for both spacer designs due to the formation of barium sulfate scaling. SEM imaging revealed that the high shear force induced by the creation of holes led to the formation of scales on the entire membrane surface, causing a slightly higher flux decline than the standard spacer. Simultaneously, the presence of holes aided to mitigate the accumulation of foulants on spacer surface, resulting in no increase in pressure drop. Furthermore, a full cleaning efficiency was achieved by hole-type spacer attributed to the micro-jets effect induced by the holes, which aided to destroy the foulants and then sweep them away from the membrane surface.

摘要

合适的间隔物设计有助于将膜污染降至最低,而膜污染仍是正向渗透(FO)系统中的主要障碍。在本研究中,对一种孔型间隔物(在长丝交叉处有孔)在FO系统中的性能进行了评估,并与标准间隔物设计(无孔)进行了比较。当使用超纯水作为进料溶液,不同氯化钠浓度作为汲取溶液时,孔型间隔物表现出略高的水通量和反向溶质通量(RSF)。在页岩气采出水处理过程中,由于硫酸钡结垢的形成,两种间隔物设计均出现了严重的通量下降。扫描电子显微镜成像显示,孔的产生所诱导的高剪切力导致整个膜表面形成结垢,通量下降幅度略高于标准间隔物。同时,孔的存在有助于减轻间隔物表面污垢的积累,导致压降没有增加。此外,孔型间隔物由于孔所诱导的微射流效应实现了完全的清洗效率,这有助于破坏污垢并将其从膜表面冲走。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3de/7824311/f25cdd5edab1/membranes-11-00034-g001.jpg

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