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采用膜蒸馏工艺制备聚砜/蜂蜡组成的超疏水膜用于改进海水淡化

Casting of a superhydrophobic membrane composed of polysulfone/Cera flava for improved desalination using a membrane distillation process.

作者信息

Ray Saikat Sinha, Chen Shiao-Shing, Ngoc Dan Cao Thanh, Hsu Hung-Te, Chang Hau-Ming, Nguyen Nguyen Cong, Nguyen Hau-Thi

机构信息

Institute of Environmental Engineering and Management, National Taipei University of Technology No. 1, Sec. 3, Zhongxiao E. Rd. Taipei-10608 Taiwan

Faculty of Environment and Natural Resources, DaLat University Viet Nam.

出版信息

RSC Adv. 2018 Jan 8;8(4):1808-1819. doi: 10.1039/c7ra12474k. eCollection 2018 Jan 5.

Abstract

Superhydrophobic membranes are necessary for effective membrane-based seawater desalination. This paper presents the successful fabrication of a novel electrospun nanofibrous membrane composed of polysulfone and Cera flava, which represents a novel class of enhanced performance membranes consisting of a superhydrophobic nanofibrous layer and hydrophobic polypropylene (PP). Cera flava, which helps lower the surface energy, was found to be the ideal additive for increasing the hydrophobicity of the polysulfone (PSF) polymeric solution because of its components such as long-chain hydrocarbons, free acids, esters, and internal chain methylene carbons. In the fabricated membrane, consisting of 10 v/v% Cera flava, the top PSF-CF nanofibrous layer is active and the lower PP layer is supportive. The hybrid membrane possesses superhydrophobicity, with an average contact angle of approximately 162°, and showed high performance in terms of rejection and water flux. This work also examined the surface area, pore size distribution, fiber diameter, surface roughness, mechanical strength, water flux, and rejection percentage of the membrane. The salt rejection was above 99.8%, and a high permeate flux of approximately 6.4 LMH was maintained for 16 h of operation.

摘要

超疏水膜对于基于膜的高效海水淡化至关重要。本文介绍了一种由聚砜和蜂蜡成功制备的新型电纺纳米纤维膜,它代表了一类新型的高性能膜,由超疏水纳米纤维层和疏水性聚丙烯(PP)组成。蜂蜡有助于降低表面能,由于其含有长链烃、游离酸、酯和内链亚甲基碳等成分,被发现是增加聚砜(PSF)聚合物溶液疏水性的理想添加剂。在由10 v/v%蜂蜡制成的膜中,顶部的PSF-CF纳米纤维层起活性作用,下部的PP层起支撑作用。该复合膜具有超疏水性,平均接触角约为162°,在截留率和水通量方面表现出高性能。这项工作还研究了膜的表面积、孔径分布、纤维直径、表面粗糙度、机械强度、水通量和截留率。盐截留率高于99.8%,在运行16小时内维持了约6.4 LMH的高通量。

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