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一种用于快速高效油水分离的新型碳纳米管膜结构。

A Novel Architecture for Carbon Nanotube Membranes towards Fast and Efficient Oil/water Separation.

作者信息

Saththasivam Jayaprakash, Yiming Wubulikasimu, Wang Kui, Jin Jian, Liu Zhaoyang

机构信息

Qatar Environment and Energy Research Institute (QEERI), Hamad Bin Khalifa University (HBKU), Qatar Foundation, PO Box, 5825, Doha, Qatar.

Chemical Engineering Program, Texas A&M University at Qatar, Education City, Doha, 23874, Qatar.

出版信息

Sci Rep. 2018 May 9;8(1):7418. doi: 10.1038/s41598-018-25788-9.

Abstract

Carbon nanotubes (CNT) are robust and proven as promising building blocks for oil/water separating membranes. However, according to classic fluid dynamic theory, achieving high permeation flux without sacrificing other membrane properties is a formidable challenge for CNT membranes, because of the trade-off nature among key membrane parameters. Herein, to relieve the trade-off between permeation fluxes, oil rejection rate, and membrane thickness, we present a new concept to engineer CNT membranes with a three-dimensional (3D) architecture. Apart from achieving high oil separation efficiency (>99.9%), these new oil/water separating membranes can achieve water flux as high as 5,500 L/m.h.bar, which is one order of magnitude higher than pristine CNT membranes. Most importantly, these outstanding properties can be achieved without drastically slashing membrane thickness down to nanoscale. The present study sheds a new light for the adoption of CNT-based membranes in oil/water separation industry.

摘要

碳纳米管(CNT)性能稳定,已被证明是用于油水分离膜的理想构建材料。然而,根据经典流体动力学理论,由于关键膜参数之间的权衡特性,在不牺牲其他膜性能的情况下实现高渗透通量对碳纳米管膜来说是一项艰巨的挑战。在此,为了缓解渗透通量、拒油率和膜厚度之间的权衡,我们提出了一种构建具有三维(3D)结构的碳纳米管膜的新概念。除了实现高油分离效率(>99.9%)外,这些新型油水分离膜的水通量可达5500 L/m·h·bar,比原始碳纳米管膜高出一个数量级。最重要的是,无需将膜厚度大幅削减至纳米尺度就能实现这些优异性能。本研究为碳纳米管基膜在油水分离行业的应用提供了新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a33/5943308/b88dd00c4a8f/41598_2018_25788_Fig1_HTML.jpg

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