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一种用于高效油水分离的可缠绕且可拉伸的三维全无机膜。

A windable and stretchable three-dimensional all-inorganic membrane for efficient oil/water separation.

作者信息

Wang Kui, Han Dong Suk, Yiming Wubulikasimu, Ahzi Said, Abdel-Wahab Ahmed, 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.

Key Laboratory of Traffic Safety on Track of Ministry of Education, School of Traffic and Transportation Engineering, Central South University, Changsha, 410075, Hunan, China.

出版信息

Sci Rep. 2017 Nov 22;7(1):16081. doi: 10.1038/s41598-017-16402-5.

Abstract

There is strong interest in windable and stretchable membranes to meet the technological demands of practical water treatments. Oil/water separating membranes of this type is still significantly underdeveloped. Here, we reported a windable and stretchable membrane with three-dimensional structure for efficient oil/water separation. This membrane is made of ZnO nanorods arrays conformally grown on woven carbon microfibers. This three-dimensional architecture endows the fabricated membrane with highly windable and stretchable properties, at the same time ensures ZnO nanorods fully exposed outwards on the membrane surface. Due to its superior hydrophilicity and oleophobicity of ZnO nanorods, this all-inorganic membrane exhibits outstanding antifouling property, with the foulants on membrane surfaces easily removed by simple physical cleaning without chemicals. The membrane can effectively separate both oil/saline-water mixtures and oil-in-water emulsions, solely driven by gravity, with extremely high permeation flux of 20933.4 L m h and high separation efficiency over 99%.

摘要

为满足实际水处理的技术需求,人们对可卷曲且可拉伸的膜有着浓厚兴趣。此类油/水分离膜仍远未得到充分发展。在此,我们报道了一种具有三维结构的可卷曲且可拉伸的膜,用于高效油/水分离。该膜由在编织碳微纤维上共形生长的ZnO纳米棒阵列制成。这种三维结构赋予了所制备的膜高度可卷曲和可拉伸的特性,同时确保ZnO纳米棒在膜表面完全向外暴露。由于ZnO纳米棒具有优异的亲水性和疏油性,这种全无机膜表现出出色的抗污性能,膜表面的污垢通过简单的物理清洗即可轻松去除,无需使用化学药剂。该膜仅在重力作用下就能有效地分离油/盐水混合物和水包油乳液,具有20933.4 L m h的极高渗透通量和超过99%的高分离效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ecd/5700037/5e6680043c39/41598_2017_16402_Fig1_HTML.jpg

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