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采用具有交替过滤和原位自清洁功能的新型阴极膜的电混合臭氧化-混凝系统处理聚合物驱采出水。

Polymer-flooding produced water treatment using an electro-hybrid ozonation-coagulation system with novel cathode membranes targeting alternating filtration and in situ self-cleaning.

作者信息

Jin Xin, Li Keqian, Wei Yixiong, Shang Yabo, Xu Lanzhou, Liu Mengwen, Xu Lu, Bai Xue, Shi Xuan, Jin Pengkang, Song Jina, Wang Xiaochang C

机构信息

School of Human Settlements and Civil Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi Province 710049, China.

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi Province 710055, China.

出版信息

Water Res. 2023 Apr 15;233:119749. doi: 10.1016/j.watres.2023.119749. Epub 2023 Feb 15.

Abstract

Polymer-flooding produced water is more difficult to treat for reinjection compared with normal produced water because of the presence of residual hydrolyzed polyacrylamide (HPAM). A novel cathode membrane integrated electro-hybrid ozonation-coagulation (CM-E-HOC) process was proposed for the treatment of polymer-flooding produced water. This process achieved in situ self-cleaning by generated microbubbles in the cathode membrane. The CM-E-HOC process achieved a higher suspended solid (SS), turbidity and PAM removal efficiency than the CM-EC process. The SS in the CM-E-HOC effluent was ≤ 20 mg/L SS, which met the reinjection requirements of Longdong, Changqing Oilfield, China (Q/SYCQ 08,011-2019) at different current densities (3, 5 and 10 mA/cm). The CM-E-HOC process greatly mitigated both reversible and irreversible membrane fouling. Therefore, excellent flux recovery was obtained at different in situ self-cleaning intervals during the CM-E-HOC process. Furthermore, alternating filtration achieved continuous water production during the CM-E-HOC process. On one hand, the effective removal of aromatic protein-like substances and an increase in oxygen-containing functional groups were achieved due to the enhanced oxidation ability of the CM-E-HOC process, which decreased membrane fouling. On the other hand, the CM-E-HOC process showed improved coagulation performance because of the increased oxygen-containing functional groups and polymeric Fe species. Therefore, larger flocs with higher fractal dimensions were generated, and a looser and more porous cake layer was formed on the membrane surface during the CM-E-HOC process. Consequently, the CM-E-HOC process exhibited better in situ self-cleaning performance and lower filtration resistance than the CM-EC process.

摘要

由于存在残留的水解聚丙烯酰胺(HPAM),聚合物驱采出水比普通采出水更难处理以进行回注。提出了一种新型的阴极膜集成电混合臭氧化-混凝(CM-E-HOC)工艺来处理聚合物驱采出水。该工艺通过在阴极膜中产生微气泡实现原位自清洁。CM-E-HOC工艺比CM-EC工艺具有更高的悬浮固体(SS)、浊度和PAM去除效率。CM-E-HOC工艺出水的SS≤20mg/L SS,在不同电流密度(3、5和10mA/cm)下满足中国长庆油田陇东地区的回注要求(Q/SYCQ 08,011-2019)。CM-E-HOC工艺极大地减轻了可逆和不可逆的膜污染。因此,在CM-E-HOC工艺的不同原位自清洁间隔期间获得了优异的通量恢复。此外,交替过滤在CM-E-HOC工艺期间实现了连续产水。一方面,由于CM-E-HOC工艺增强的氧化能力,有效去除了类芳香族蛋白质物质并增加了含氧官能团,从而减少了膜污染。另一方面,由于含氧官能团和聚合铁物种的增加,CM-E-HOC工艺表现出改善的混凝性能。因此,在CM-E-HOC工艺期间生成了具有更高分形维数的更大絮凝物,并在膜表面形成了更松散、更多孔的滤饼层。因此,CM-E-HOC工艺比CM-EC工艺表现出更好的原位自清洁性能和更低的过滤阻力。

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