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使用氧化石墨烯/聚醚砜和TiO纳米带/聚醚砜纳滤膜去除油田采出水中的成垢离子和油迹

Removal of Scale-Forming Ions and Oil Traces from Oil Field Produced Water Using Graphene Oxide/Polyethersulfone and TiO Nanoribbons/Polyethersulfone Nanofiltration Membranes.

作者信息

Ashraf Tarek, Alfryyan Nada, Nasr Mervat, Ahmed Sayed A, Shaban Mohamed

机构信息

Chemistry Department, Faculty of Science, Beni-Suef University, Beni-Suef 62514, Egypt.

Nanophotonics and Applications (NPA) Lab, Physics Department, Faculty of Science, Beni-Suef University, Beni-Suef 62514, Egypt.

出版信息

Polymers (Basel). 2022 Jun 24;14(13):2572. doi: 10.3390/polym14132572.

Abstract

Treatment of produced water in oil fields has become a tough challenge for oil producers. Nanofiltration, a promising method for water treatment, has been proposed as a solution. The phase inversion technique was used for the synthesis of nanofiltration membranes of polyethersulfone embedded with graphene oxide nanoparticles and polyethersulfone embedded with titanium nanoribbons. As a realistic situation, water samples taken from the oil field were filtered using synthetic membranes at an operating pressure of 0.3 MPa. Physiochemical properties such as water flux, membrane morphology, flux recovery ratio, pore size and hydrophilicity were investigated. Additionally, filtration efficiency for removal of constituent ions, oil traces in water removal, and fouling tendency were evaluated. The constituent ions of produced water act as the scaling agent which threatens the blocking of the reservoir bores of the disposal wells. Adding graphene oxide (GO) and titanium nanoribbons (TNR) to polyethersulfone (PES) enhanced filtration efficiency, water flux, and anti-fouling properties while also boosting hydrophilicity and porosity. The PES-0.7GO membrane has the best filtering performance, followed by the PES-0.7TNR and pure-PES membranes, with chloride salt rejection rates of 81%, 78%, and 35%; oil rejection rates of 88%, 85%, and 71%; and water fluxes of 85, 82, and 42.5 kg/m h, respectively. Because of its higher hydrophilicity and physicochemical qualities, the PES-0.7GO membrane outperformed the PES-0.7TNR membrane. Nanofiltration membranes embedded with nanomaterial described in this work revealed encouraging long-term performance for oil-in-water trace separation and scaling agent removal.

摘要

油田采出水的处理已成为石油生产商面临的一项严峻挑战。纳滤作为一种很有前景的水处理方法,已被提出作为解决方案。采用相转化技术合成了嵌入氧化石墨烯纳米颗粒的聚醚砜纳滤膜和嵌入钛纳米带的聚醚砜纳滤膜。在实际情况下,使用合成膜在0.3MPa的操作压力下对从油田采集的水样进行过滤。研究了水通量、膜形态、通量回收率、孔径和亲水性等物理化学性质。此外,还评估了去除组成离子的过滤效率、除水中油迹的能力以及污染倾向。采出水中的组成离子充当结垢剂,威胁着处理井储层孔道的堵塞。向聚醚砜(PES)中添加氧化石墨烯(GO)和钛纳米带(TNR)可提高过滤效率、水通量和抗污染性能,同时还能提高亲水性和孔隙率。PES-0.7GO膜具有最佳的过滤性能,其次是PES-0.7TNR膜和纯PES膜,其对氯盐的截留率分别为81%、78%和35%;对油的截留率分别为88%、85%和71%;水通量分别为85、82和42.5kg/m²·h。由于其较高的亲水性和物理化学性质,PES-0.7GO膜的性能优于PES-0.7TNR膜。本文所述的嵌入纳米材料的纳滤膜在油水痕量分离和结垢剂去除方面显示出令人鼓舞的长期性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49a3/9269001/5a099ea8c379/polymers-14-02572-g001.jpg

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