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通过大气压冷等离子体制备的具有拮抗功能的膜实现同时、高效和连续的油水分离。

Simultaneous, efficient and continuous oil-water separation via antagonistically functionalized membranes prepared by atmospheric-pressure cold plasma.

作者信息

Kim Dong-Hyun, Mauchauffé Rodolphe, Kim Jongwoon, Moon Se Youn

机构信息

Department of Applied Plasma and Quantum Beam Engineering, Jeonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeollabuk-do, 54869, Republic of Korea.

Department of Quantum System Engineering, Jeonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeollabuk-do, 54869, Republic of Korea.

出版信息

Sci Rep. 2021 Feb 4;11(1):3169. doi: 10.1038/s41598-021-82761-9.

Abstract

For decades, oil and water separation has remained a challenge. Not only oil spills but also industrial oily wastewaters are threatening our environment. Over the years, oil-water separation methods have been developed, however, there are still considerable hurdles to overcome to provide a low cost and efficient process able to treat a large amount of liquid. In this work, we suggest a continuous, simultaneous and effective oil-water separation method based on the antagonistic functionalization of meshes using atmospheric pressure cold plasmas. Using this robust plasma method, superhydrophobic/underwater-superoleophilic or superhydrophilic/underwater-superoleophobic functionalized meshes are obtained. Antagonistically functionalized meshes can simultaneously separate oil and water and show continuous separation flow rates of water (900 L m h) and oil (400 L m h) with high purities (> 99.9% v/v). This fast, low-cost and continuous plasma-based process can be readily and widely adopted for the selective functionalization of membranes at large scale for oil-spill cleanup and water purification.

摘要

几十年来,油水分离一直是一项挑战。不仅石油泄漏,工业含油废水也在威胁着我们的环境。多年来,虽然已经开发出了油水分离方法,但要提供一种低成本且高效的、能够处理大量液体的工艺,仍有相当多的障碍需要克服。在这项工作中,我们提出了一种基于大气压冷等离子体对滤网进行拮抗功能化的连续、同步且有效的油水分离方法。使用这种强大的等离子体方法,可以获得超疏水/水下超亲油或超亲水/水下超疏油功能化滤网。经过拮抗功能化的滤网能够同时分离油和水,水的连续分离流速为900 L m h,油的连续分离流速为400 L m h,纯度很高(> 99.9% v/v)。这种快速、低成本且连续的基于等离子体的工艺可以很容易地被广泛应用于大规模膜的选择性功能化,用于溢油清理和水净化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fec/7862374/4954a26e4102/41598_2021_82761_Fig1_HTML.jpg

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