Yu Mingguang, Lin Binbin, Chen Shangxian, Deng Qianjun, Liu Guang, Wang Qing
School of Materials Science and Energy Engineering, Foshan University Foshan 528000 China.
Sericultural & Agri-Food Research Institute, Guangdong Academy of Agricultural Sciences, Key Laboratory of Functional Foods, Ministry of Agriculture, Guangdong Key Laboratory of Agricultural Products Processing Guangzhou 510610 China.
RSC Adv. 2018 Jul 5;8(43):24297-24304. doi: 10.1039/c8ra04336a. eCollection 2018 Jul 2.
Oil/water separation has become an increasingly important field due to frequent industrial oily wastewater emission and crude oil spill accidents. Herein, we fabricate a robust superhydrophobic loofah sponge a versatile, environmentally friendly, and low-cost dip coating strategy, which involves the modification of commercial loofah sponge with waterborne polyurea and fused SiO nanoparticles without the modification of any toxic low-surface-energy compound. The as-prepared loofah sponge showed excellent superhydrophobic/superoleophilic properties and exhibited robustness for effective oil-water separation in extremely harsh environments (such as 1 M HCl, 1 M NaOH, saturated NaCl solution and hot water higher than 95 °C) due to the remarkably high chemical stability. In addition, the as-prepared loofah sponge was capable of excellent anti-fouling, has self-cleaning ability and could act as the absorber for effective separation of surfactant-free oil-in-water emulsions. More importantly, the as-prepared loofah sponge demonstrated remarkable robustness against strong sandpaper abrasion and finger wipes, while retaining its superhydrophobicity and efficient oil/water separation efficiency even after more than 50 abrasion cycles. This facile and green synthesis approach presented here has the advantage of large-scale fabrication of a multifunctional biomass-based adsorbent material as a promising candidate in anti-fouling, self-cleaning, and versatile water-oil separation.
由于工业含油废水排放频繁和原油泄漏事故频发,油水分离已成为一个日益重要的领域。在此,我们通过一种通用、环保且低成本的浸涂策略制备了一种坚固的超疏水丝瓜海绵,该策略涉及用聚脲水溶液和熔融二氧化硅纳米颗粒对商用丝瓜海绵进行改性,而无需使用任何有毒的低表面能化合物。所制备的丝瓜海绵表现出优异的超疏水/超亲油性能,并且由于具有极高的化学稳定性,在极其恶劣的环境(如1 M盐酸、1 M氢氧化钠、饱和氯化钠溶液和高于95°C的热水)中对油水分离具有很强的稳定性。此外,所制备的丝瓜海绵具有出色的抗污能力、自清洁能力,并且可以作为吸附剂有效分离不含表面活性剂的水包油乳液。更重要的是,所制备的丝瓜海绵在受到强力砂纸摩擦和手指擦拭后仍表现出显著的坚固性,即使经过50多次摩擦循环后仍能保持其超疏水性和高效的油水分离效率。本文提出的这种简便且绿色的合成方法具有大规模制备多功能生物质基吸附材料的优势,有望成为防污、自清洁和通用油水分离领域的候选材料。