Department of Environmental Science , Zhejiang University , Hangzhou , Zhejiang 310058 , China.
Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control, Hangzhou 310058 , China.
Environ Sci Technol. 2019 Feb 5;53(3):1509-1517. doi: 10.1021/acs.est.8b04642. Epub 2019 Jan 22.
One of the most pervasive environmental issues is the frequent oil spills that happen during oil production and transportation processes. This global challenge calls for emerging materials that can effectively separate oil pollutants from water. Here, a facile and feasible method to fabricate a high-performance oil absorbent (ODA-rGO@MF) through the coating of octadecylamine-grafted reduced graphene oxide (ODA-rGO) on the skeleton of commercial melamine foam (MF) is reported. The resultant foam not only possesses the hierarchical pore structure, superior compressibility, and mechanical stability of the original foam but also exhibits high water repellency, superhydrophobicity, and durability under harsh conditions, such as in strongly acidic (alkaline) and salty solutions. The superhydrophobicity of ODA-rGO@MF was created by employing the microarchitecture of MF, forming the rough rGO nanoscale wrinkles on the foam skeletons and further reducing the surface energy by octadecylamine (ODA). These fascinating characteristics make the functionalized foam an excellent oil absorbent with a high absorption capacity (44-111 times its own weight) and extraordinary recyclability. More importantly, the inexpensive materials and low-cost fabrication technique make it possible for large-scale production. Thus, the as-prepared foam has the potential to be used as a promising absorbent for oil-spill cleanups.
其中一个最普遍的环境问题是石油生产和运输过程中频繁发生的石油泄漏。这一全球性挑战需要新兴材料来有效分离水中的油污染物。在这里,报道了一种通过在商业三聚氰胺泡沫(MF)骨架上涂覆十八胺接枝还原氧化石墨烯(ODA-rGO)来制备高性能吸油剂(ODA-rGO@MF)的简便可行的方法。所得泡沫不仅具有原始泡沫的分级孔结构、优异的可压缩性和机械稳定性,而且在强酸(碱性)和含盐溶液等恶劣条件下表现出高憎水性、超疏水性和耐久性。ODA-rGO@MF 的超疏水性是通过 MF 的微结构实现的,在泡沫骨架上形成粗糙的 rGO 纳米级褶皱,并进一步通过十八胺(ODA)降低表面能。这些迷人的特性使功能化泡沫成为一种具有高吸收能力(自身重量的 44-111 倍)和非凡可回收性的优异吸油剂。更重要的是,廉价的材料和低成本的制造技术使其有可能大规模生产。因此,所制备的泡沫有望用作有前途的溢油清理吸收剂。