Faculty of Chemical Engineering, Iran University of Science and Technology (IUST), Narmak, Tehran, 16846, Iran.
Nanotechnology Department, School of Advanced Technologies, Iran University of Science and Technology (IUST), Narmak, Tehran, 16846, Iran.
Sci Rep. 2023 Mar 18;13(1):4515. doi: 10.1038/s41598-023-31770-x.
In the present study, fabrications of two eco-friendly superhydrophobic/superoleophilic recyclable foamy-based adsorbents for oil/water mixture separation were developed. Hierarchically biomass (celery)-derived porous carbon (PC) and multi-walled carbon nanotube (MWCNT) were firstly synthesized and loaded on pristine melamine foam (MF) by the simple dip-coating approach by combining silicone adhesive to create superhydrophobic/superoleophilic, recyclable, and reusable three-dimensional porous structure. The prepared samples have a large specific surface area of 240 m/g (MWCNT), 1126 m/g (PC), and good micro-mesoporous frameworks. The water contact angle (WCA) values of the as-prepared foams, PC/MF and MWCNT/MF, not only were 159.34° ± 1.9° and 156.42° ± 1.6°, respectively but also had oil contact angle (OCA) of equal to 0° for a wide range of oils and organic solvents. Therefore, PC/MF and MWCNT/MF exhibited superhydrophobicity and superoleophilicity properties, which can be considered effective adsorbents in oil/water mixture separations. In this context, superhydrophobic/superoleophilic prepared foams for kind of different oils and organic solvents were shown to have superior separation performance ranges of 54-143 g/g and 46-137 g/g for PC/MF and MWCNT/MF, respectively, suggesting a new effective porous material for separating oil spills. Also, outstanding recyclability and reusability of these structures in the ten adsorption-squeezing cycles indicated that the WCA and sorption capacity has not appreciably changed after soaking into acidic (pH = 2) and alkaline (pH = 12) as well as saline (3.5% NaCl) solutions. More importantly, the reusability and chemical durability of the superhydrophobic samples made them good opportunities for use in different harsh conditions for oil-spill cleanup.
在本研究中,开发了两种环保型超疏水/超亲油可回收泡沫基吸附剂,用于油水混合物的分离。首先通过简单的浸涂方法合成了分层生物质(芹菜)衍生的多孔碳(PC)和多壁碳纳米管(MWCNT),并将其负载在原始三聚氰胺泡沫(MF)上,同时使用硅酮粘合剂来创建超疏水/超亲油、可回收和可重复使用的三维多孔结构。所制备的样品具有 240 m/g(MWCNT)、1126 m/g(PC)的大比表面积和良好的微介孔框架。所制备泡沫、PC/MF 和 MWCNT/MF 的水接触角(WCA)值不仅分别为 159.34°±1.9°和 156.42°±1.6°,而且对各种油和有机溶剂的油接触角(OCA)均等于 0°。因此,PC/MF 和 MWCNT/MF 表现出超疏水性和超亲油性,可被视为油水混合物分离的有效吸附剂。在这种情况下,对不同类型的油和有机溶剂,所制备的超疏水/超亲油性泡沫表现出优异的分离性能,PC/MF 和 MWCNT/MF 的分离性能范围分别为 54-143 g/g 和 46-137 g/g,表明这是一种新的有效的用于分离溢油的多孔材料。此外,这些结构在十次吸附-挤压循环中的出色可回收性和可重复使用性表明,在浸入酸性(pH = 2)和碱性(pH = 12)以及盐水(3.5%NaCl)溶液后,WCA 和吸附容量没有明显变化。更重要的是,超疏水样品的可重复使用性和化学耐久性使它们有机会在不同的恶劣条件下用于溢油清理。