Ma Lan, Wan Yan, Wang Teng, Liu Yaling, Yin Ying, Zhang Liyun
School of Science, Xihua University, Jinzhou Road, Chengdu, Sichuan610039, China.
State Key Lab of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, 8 Xindu Avenue, Chengdu, Sichuan610500, China.
Langmuir. 2022 Oct 18;38(41):12499-12509. doi: 10.1021/acs.langmuir.2c01905. Epub 2022 Oct 4.
Developing the high-anti-fouling membrane has kept continuous attention in oil/water emulsion treatment. However, the majority of works on anti-fouling membranes mainly focused on low-viscosity oils, which greatly limited the development and application of a membrane to face the real crude oil wastewater. Inspired by the hydrophilicity of sodium carboxymethyl cellulose (CMC) and zirconium base metal-organic frame (Zr-MOF), an anti-oil-fouling CMC/UiO-66-NH composite membrane was constructed by a self-assembly method. Profiting from the hydrophilicity and micro-nanostructure of the CMC/UiO-66-NH layer, the obtained CMC/UiO-66-NH membranes displayed underwater superoleophobicity and desired oil resistance. It could display the effective separation capability with 1282 ± 62 to 6160 ± 81 L/(m·h·bar) and above 99.08% toward the different light oil emulsions. More importantly, the CMC/UiO-66-NH membrane displayed ultralow crude oil adhesion behaviors toward the crude oil emulsions, which could achieve a considerably high flux (746 ± 60 to 5224 ± 87 L/(m·h·bar)). Furthermore, electrostatic interaction and physical enwinding-wrapping between CMC and UiO-66-NH also endowed the composite membranes with outstanding stability. After immersing the as-prepared membranes into the harsh environments for 24 h, the membranes still maintained high underwater-oil contact angles (UWOCA > 155°) and separation ability (oil rejection was above 99.0%). Therefore, CMC/UiO-66-NH composite membranes could demonstrate promising prospects in real oily emulsion treatment.
开发高抗污染膜一直是油水乳液处理领域持续关注的焦点。然而,大多数关于抗污染膜的研究主要集中在低粘度油上,这极大地限制了膜在处理实际原油废水方面的发展和应用。受羧甲基纤维素钠(CMC)和锆基金属有机框架(Zr-MOF)亲水性的启发,通过自组装方法构建了一种抗油污染的CMC/UiO-66-NH复合膜。得益于CMC/UiO-66-NH层的亲水性和微纳结构,所制备的CMC/UiO-66-NH膜表现出水下超疏油性和良好的耐油性。对于不同的轻质油乳液,其分离效率为1282±62至6160±81 L/(m·h·bar),脱油率高于99.08%。更重要的是,CMC/UiO-66-NH膜对原油乳液表现出超低的原油粘附行为,通量相当高(746±60至5224±87 L/(m·h·bar))。此外,CMC与UiO-66-NH之间的静电相互作用和物理缠绕包覆也赋予了复合膜出色的稳定性。将制备好的膜浸入恶劣环境24小时后,膜仍保持较高的水下油接触角(UWOCA>155°)和分离能力(脱油率高于99.0%)。因此,CMC/UiO-66-NH复合膜在实际含油乳液处理中具有广阔的应用前景。