Li Yuqi, Zhang Hui, Fan Mizi, Zhuang Jiandong, Chen Lihui
College of Materials Engineering, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Phys Chem Chem Phys. 2016 Sep 14;18(36):25394-25400. doi: 10.1039/c6cp04284h.
Oil-water separation has recently become an important subject due to the increasing incidence of oil spills. Materials with underwater superoleophobic properties have aroused considerable interest due to their cost-effectiveness, environmental friendliness and anti-fouling properties. This paper presents a robust salt-tolerant superoleophobic aerogel inspired by seaweed used without any further chemical modification for oil-seawater separation. The green aerogel is prepared by freeze-drying of sodium alginate (SA)-nanofibrillated cellulose (NFC) using Ca ions as the crosslinking agent. The three-dimensional (3D) interconnected network structure of the developed aerogel ensures its high mechanical strength and good flexibility. The natural hydrophilicity of the polysaccharides contained in the aerogel ensures its excellent underwater superoleophobicity, antifouling and salt-tolerance properties. More impressively, the as-prepared aerogel can even keep its underwater superoleophobicity and high hydrophilicity after being immersed in seawater for 30 days, indicating its good stability in marine environments. Furthermore, the aerogel could separate oil-seawater mixtures with a high separation efficiency (of up to 99.65%) and good reusability (at least 40 cycles). The facile and green fabrication process combined with the excellent separation performance and good reusability makes it possible to develop engineering materials for oil-water separation in marine environments.
由于石油泄漏事件的不断增加,油水分离最近已成为一个重要课题。具有水下超疏油性能的材料因其成本效益、环境友好性和防污性能而引起了人们的极大兴趣。本文提出了一种受海藻启发的坚固耐盐超疏油气凝胶,无需任何进一步的化学改性即可用于油水分离。这种绿色气凝胶是通过以钙离子为交联剂对海藻酸钠(SA)-纳米原纤化纤维素(NFC)进行冷冻干燥制备而成。所制备气凝胶的三维(3D)互连网络结构确保了其高机械强度和良好的柔韧性。气凝胶中所含多糖的天然亲水性确保了其优异的水下超疏油性、防污性和耐盐性。更令人印象深刻的是,所制备的气凝胶在海水中浸泡30天后仍能保持其水下超疏油性和高亲水性,表明其在海洋环境中具有良好的稳定性。此外,该气凝胶能够以高分离效率(高达99.65%)和良好的可重复使用性(至少40次循环)分离油水混合物。这种简便且绿色的制备工艺,结合优异的分离性能和良好的可重复使用性,使得开发用于海洋环境中油水分离的工程材料成为可能。