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具有超疏水和光热性能的非氟化木质素基三聚氰胺海绵,用于多功能应用。

Non-fluorinated lignin-based melamine sponges with superhydrophobic and photothermal properties for multi-functional applications.

机构信息

Anti-Icing Materials (AIM) Laboratory, College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.

Anti-Icing Materials (AIM) Laboratory, College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 1):135168. doi: 10.1016/j.ijbiomac.2024.135168. Epub 2024 Aug 29.

DOI:10.1016/j.ijbiomac.2024.135168
PMID:39214199
Abstract

Frequent oil spills and the discharge of oily wastewaters become a significant threat to the environment and ecosystem. Herein, a non-fluorinated lignin-based melamine sponge with superhydrophobic and photothermal properties (labeled as MS@COF/LPs/PDMS) has been achieved by decorating with covalent organic framework (COF), lignin particles (LPs) and PDMS. The MS@COF/LPs/PDMS shows excellent surface superhydrophobicity with a water contact angle of 152.3° and a sliding angle of 6°. The adsorption capacities of the MS@COF/LPs/PDMS range from 38.4 g/g to 100.3 g/g for various oils and organic solvents, and the separation efficiency of the MS@COF/LPs/PDMS for CCl reaches 99.7 %. Furthermore, the maximum surface temperature of the MS@COF/LPs/PDMS reaches 61.2 °C because of the thermal vibration of LPs and COF under solar irradiation (1.0 kW/m2). Surprisingly, the MS@COF/LPs/PDMS can rapidly adsorb a droplet of crude oils within 32 s due to the superoleophilicity and excellent photothermal effect. Besides, the melting time of the MS@COF/LPs/PDMS (400 s) reduces by 70 % for an ice droplet under solar irradiation than that of pristine melamine sponge (1330 s). Thus, this study provides new insights into the rational design of low-cost lignin-based melamine sponges for the applications of oil/water separation, crude oil recovery, and de-icing.

摘要

频繁的石油泄漏和含油废水的排放对环境和生态系统构成了重大威胁。在此,通过修饰共价有机骨架(COF)、木质素颗粒(LPs)和 PDMS,制备了具有超疏水和光热性能的非氟化木质素基三聚氰胺海绵(标记为 MS@COF/LPs/PDMS)。MS@COF/LPs/PDMS 具有出色的表面超疏水性,水接触角为 152.3°,滑动角为 6°。MS@COF/LPs/PDMS 对各种油和有机溶剂的吸附容量范围为 38.4 g/g 至 100.3 g/g,MS@COF/LPs/PDMS 对 CCl 的分离效率达到 99.7%。此外,由于 LP 和 COF 在太阳照射下(1.0 kW/m2)的热振动,MS@COF/LPs/PDMS 的最大表面温度达到 61.2°C。令人惊讶的是,由于超亲油性和优异的光热效应,MS@COF/LPs/PDMS 可以在 32 s 内快速吸附一滴原油。此外,与原始三聚氰胺海绵(1330 s)相比,MS@COF/LPs/PDMS 中冰滴的融化时间(400 s)在太阳照射下减少了 70%。因此,本研究为合理设计低成本木质素基三聚氰胺海绵在油水分离、原油回收和除冰等方面的应用提供了新的思路。

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