4.7 Article

Facile fabrication of superhydrophobic wood aerogel by vapor deposition method for oil-water separation

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SURFACES AND INTERFACES
卷 37, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.surfin.2023.102746

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Superhydrophobic; Wood aerogel; Oil -water separation; Environment -friendly

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A superhydrophobic methyltrimethoxysilane (MTMS) modified wood aerogel (M-WA) was fabricated through a facile vapor deposition method. The M-WA showed high water contact angle, selective oil absorption capacity, and excellent separation efficiency. It is an environmentally friendly material with natural and renewable characteristics.
With the increasing deterioration of natural environment caused by industrial sewage and oil leak, super -hydrophobic materials for oil-water separation have attracted considerable attention. However, most of the superhydrophobic materials are petroleum-based and difficult to be degraded, which will bring secondary pollution for natural environment. Herein, a facile vapor deposition method is reported to fabricate a super -hydrophobic methyltrimethoxysilane (MTMS) modified wood aerogel (M-WA) for oil-water separation from natural renewable balsa wood. Firstly, to construct micro-nano roughness and enough pores, balsa wood was chemically treated to remove lignin and hemicellulose. Secondly, MTMS was vapor-deposited on the skeleton surface of the treated balsa wood to form a crosslinked network and provide low surface energy through hydrolysis-condensation reaction. The obtained superhydrophobic M-WA showed a high water contact angle (WCA) of 151.8 degrees. The M-WA was able to selectively absorb oils from oil-water mixtures and the adsorption capacity for methylene chloride reached 25.1 times of its own weight. Furthermore, the M-WA was utilized as a filter to continuously separate oil-water mixtures and the separation efficiency reached 99.1%. Even after 20 cycles, the separation efficiency still maintained 98.5%, demonstrating excellent recyclability. The method to prepare the superhydrophobic M-WA is facile and highly efficient, no fluorinated chemical is involved, and the M-WA has natural and renewable characteristics, which is very beneficial for environment safety and protection. Our findings conceivably develop a new strategy to prepare environment-friendly superhydrophobic materials for the treatments of spill accidents and industrial sewage emissions.

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