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基于木材的多孔氧化锌表面工程制备的取向互穿毛细管网络用于膜乳化

Oriented Interpenetrating Capillary Network with Surface Engineering by Porous ZnO from Wood for Membrane Emulsification.

作者信息

Chen Yaodong, Liu Xiaolin, Liu Gonggang, Chang Shanshan, Hu Jinbo

机构信息

Hunan Province Key Laboratory of Materials Surface & Interface Science and Technology, College of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China.

Hunan Lintec Co., Ltd., Changsha 410600, China.

出版信息

Materials (Basel). 2024 Apr 30;17(9):2113. doi: 10.3390/ma17092113.

Abstract

Membrane emulsification technology has garnered increasing interest in emulsion preparation due to controllable droplet size, narrower droplet size distribution, low energy consumption, simple process design and excellent reproducibility. Nevertheless, the pore structure and surface engineering in membrane materials design play a crucial role in achieving high-quality emulsions with high throughput simultaneously. In this work, an oriented interpenetrating capillary network composed of highly aligned and interconnected wood cell lumens has been utilized to fabricate an emulsion membrane. A novel honeycomb porous ZnO layer obtained by a seed prefabrication-hydrothermal growth method was designed to reconstruct wood channel surfaces for enhanced microfluid mixing. The results show that through the unique capillary mesh microstructure of wood, the emulsion droplets were smaller in size, had narrower pore-size distribution, and were easy to obtain under high throughput conditions. Meanwhile, a well-designed ZnO layer could further improve the emulsion quality of a wood membrane, while the emulsifying throughput is still maintained at a higher level. This demonstrates that the convection process of the microfluid in these wood capillary channels was intensified markedly. This study not only develops advanced membrane materials in emulsion preparation, but also introduces a brand-new field for functional applications of wood.

摘要

膜乳化技术因其可控制液滴大小、更窄的液滴尺寸分布、低能耗、简单的工艺设计和出色的重现性,在乳液制备方面引起了越来越多的关注。然而,膜材料设计中的孔结构和表面工程在同时实现高通量的高质量乳液方面起着至关重要的作用。在这项工作中,由高度排列和相互连接的木材细胞腔组成的定向互穿毛细管网络已被用于制造乳液膜。通过种子预制 - 水热生长法获得的新型蜂窝状多孔ZnO层被设计用于重构木材通道表面,以增强微流体混合。结果表明,通过木材独特的毛细管网状微观结构,乳液液滴尺寸更小,孔径分布更窄,并且在高通量条件下易于获得。同时,精心设计的ZnO层可以进一步提高木材膜的乳液质量,同时乳化通量仍保持在较高水平。这表明这些木材毛细管通道中的微流体对流过程明显增强。这项研究不仅在乳液制备中开发了先进的膜材料,而且还为木材的功能应用引入了一个全新的领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2248/11084715/18f58a20545d/materials-17-02113-g001.jpg

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